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N.N. Vorozhtsov Novosibirsk Institute of Organic Chemistry
Siberian Branch of Russian Academy of Science

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Personal publicalions (DB NIOCh)


2020

Reviews, articles

  1. M. Yu. Ivanov, A. S. Poryvaev, D. M. Polyukhov, S. A. Prikhod'ko, N.Yu. Adonin, M. V. Fedin
    Nanoconfinement effects on structural anomalies in imidazolium ionic liquids
    Nanoscale, 2020, First published 19 Oct 2020 doi:10.1039/D0NR06961B, IF=6.894
  2. M. Yu. Ivanov, A. S. Poryvaev, D. M. Polyukhov, S. A. Prikhod'ko, N.Yu. Adonin, M. V. Fedin
    Nanoconfinement effects on structural anomalies in imidazolium ionic liquids
    Nanoscale, 2020, First published 19 Oct 2020 doi:10.1039/D0NR06961B, IF=6.894
  3. M. Yu. Ivanov, A. S. Poryvaev, D. M. Polyukhov, S. A. Prikhod'ko, N.Yu. Adonin, M. V. Fedin
    Nanoconfinement effects on structural anomalies in imidazolium ionic liquids
    Nanoscale, 2020, First published 19 Oct 2020 doi:10.1039/D0NR06961B, IF=6.894
  4. M. Yu. Ivanov, A. S. Poryvaev, D. M. Polyukhov, S. A. Prikhod'ko, N.Yu. Adonin, M. V. Fedin
    Nanoconfinement effects on structural anomalies in imidazolium ionic liquids
    Nanoscale, 2020, First published 19 Oct 2020 doi:10.1039/D0NR06961B, IF=6.894
  5. M. Yu. Ivanov, A. S. Poryvaev, D. M. Polyukhov, S. A. Prikhod'ko, N.Yu. Adonin, M. V. Fedin
    Nanoconfinement effects on structural anomalies in imidazolium ionic liquids
    Nanoscale, 2020, First published 19 Oct 2020 doi:10.1039/D0NR06961B, IF=6.894
  6. T.Yu. Dranova, A.Yu. Vorobev, E.V. Pisarev, A.E. Moskalensky
    Diaminorhodamine and Light-Activatable NO Donors: Photorelease Quantification and Potential Pitfalls
    Journal of Fluorescence, First published 06 Nov 2020 doi:10.1007/s10895-020-02643-7, IF=2.92
  7. T.Yu. Dranova, A.Yu. Vorobev, E.V. Pisarev, A.E. Moskalensky
    Diaminorhodamine and Light-Activatable NO Donors: Photorelease Quantification and Potential Pitfalls
    Journal of Fluorescence, First published 06 Nov 2020 doi:10.1007/s10895-020-02643-7, IF=2.92
  8. T.Yu. Dranova, A.Yu. Vorobev, E.V. Pisarev, A.E. Moskalensky
    Diaminorhodamine and Light-Activatable NO Donors: Photorelease Quantification and Potential Pitfalls
    Journal of Fluorescence, First published 06 Nov 2020 doi:10.1007/s10895-020-02643-7, IF=2.92
  9. E. S.Permyakova, P. V.Kiryukhantsev-Korneev,.A. Ponomarev, A. N.Sheveyko, S. A.Dobrynin, J. Polcak, P. V.Slukin, S.G.Ignatov, A.Manakhov, S.A.Kulinich, D. V.Shtansky
    Antibacterial activity of therapeutic agent-immobilized nanostructured TiCaPCON films against antibiotic-sensitive and antibiotic-resistant Escherichia coli strains
    Surface and Coatings Technology, Available online 23 October 2020, 126538 doi:10.1016/j.surfcoat.2020.126538, IF=3.763
  10. E. S.Permyakova, P. V.Kiryukhantsev-Korneev,.A. Ponomarev, A. N.Sheveyko, S. A.Dobrynin, J. Polcak, P. V.Slukin, S.G.Ignatov, A.Manakhov, S.A.Kulinich, D. V.Shtansky
    Antibacterial activity of therapeutic agent-immobilized nanostructured TiCaPCON films against antibiotic-sensitive and antibiotic-resistant Escherichia coli strains
    Surface and Coatings Technology, Available online 23 October 2020, 126538 doi:10.1016/j.surfcoat.2020.126538, IF=3.763
  11. E. S.Permyakova, P. V.Kiryukhantsev-Korneev,.A. Ponomarev, A. N.Sheveyko, S. A.Dobrynin, J. Polcak, P. V.Slukin, S.G.Ignatov, A.Manakhov, S.A.Kulinich, D. V.Shtansky
    Antibacterial activity of therapeutic agent-immobilized nanostructured TiCaPCON films against antibiotic-sensitive and antibiotic-resistant Escherichia coli strains
    Surface and Coatings Technology, Available online 23 October 2020, 126538 doi:10.1016/j.surfcoat.2020.126538, IF=3.763
  12. E. S.Permyakova, P. V.Kiryukhantsev-Korneev,.A. Ponomarev, A. N.Sheveyko, S. A.Dobrynin, J. Polcak, P. V.Slukin, S.G.Ignatov, A.Manakhov, S.A.Kulinich, D. V.Shtansky
    Antibacterial activity of therapeutic agent-immobilized nanostructured TiCaPCON films against antibiotic-sensitive and antibiotic-resistant Escherichia coli strains
    Surface and Coatings Technology, Available online 23 October 2020, 126538 doi:10.1016/j.surfcoat.2020.126538, IF=3.763
  13. E. S.Permyakova, P. V.Kiryukhantsev-Korneev,.A. Ponomarev, A. N.Sheveyko, S. A.Dobrynin, J. Polcak, P. V.Slukin, S.G.Ignatov, A.Manakhov, S.A.Kulinich, D. V.Shtansky
    Antibacterial activity of therapeutic agent-immobilized nanostructured TiCaPCON films against antibiotic-sensitive and antibiotic-resistant Escherichia coli strains
    Surface and Coatings Technology, Available online 23 October 2020, 126538 doi:10.1016/j.surfcoat.2020.126538, IF=3.763
  14. E. S.Permyakova, P. V.Kiryukhantsev-Korneev,.A. Ponomarev, A. N.Sheveyko, S. A.Dobrynin, J. Polcak, P. V.Slukin, S.G.Ignatov, A.Manakhov, S.A.Kulinich, D. V.Shtansky
    Antibacterial activity of therapeutic agent-immobilized nanostructured TiCaPCON films against antibiotic-sensitive and antibiotic-resistant Escherichia coli strains
    Surface and Coatings Technology, Available online 23 October 2020, 126538 doi:10.1016/j.surfcoat.2020.126538, IF=3.763
  15. E. S.Permyakova, P. V.Kiryukhantsev-Korneev,.A. Ponomarev, A. N.Sheveyko, S. A.Dobrynin, J. Polcak, P. V.Slukin, S.G.Ignatov, A.Manakhov, S.A.Kulinich, D. V.Shtansky
    Antibacterial activity of therapeutic agent-immobilized nanostructured TiCaPCON films against antibiotic-sensitive and antibiotic-resistant Escherichia coli strains
    Surface and Coatings Technology, Available online 23 October 2020, 126538 doi:10.1016/j.surfcoat.2020.126538, IF=3.763
  16. E. S.Permyakova, P. V.Kiryukhantsev-Korneev,.A. Ponomarev, A. N.Sheveyko, S. A.Dobrynin, J. Polcak, P. V.Slukin, S.G.Ignatov, A.Manakhov, S.A.Kulinich, D. V.Shtansky
    Antibacterial activity of therapeutic agent-immobilized nanostructured TiCaPCON films against antibiotic-sensitive and antibiotic-resistant Escherichia coli strains
    Surface and Coatings Technology, Available online 23 October 2020, 126538 doi:10.1016/j.surfcoat.2020.126538, IF=3.763
  17. E. S.Permyakova, P. V.Kiryukhantsev-Korneev,.A. Ponomarev, A. N.Sheveyko, S. A.Dobrynin, J. Polcak, P. V.Slukin, S.G.Ignatov, A.Manakhov, S.A.Kulinich, D. V.Shtansky
    Antibacterial activity of therapeutic agent-immobilized nanostructured TiCaPCON films against antibiotic-sensitive and antibiotic-resistant Escherichia coli strains
    Surface and Coatings Technology, Available online 23 October 2020, 126538 doi:10.1016/j.surfcoat.2020.126538, IF=3.763
  18. K. Kovaleva, E. Mamontova, O. Yarovaya, O. Zakharova, A. Zakharenko, O. Lavrik, N. Salakhutdinov
    Dehydroabietylamine-based thiazolidin-4-ones and 2-thioxoimidazolidin-4-ones as novel tyrosyl-DNA phosphodiesterase 1 inhibitors
    Molecular Diversity (2020), Published: 24 August 2020 doi:10.1007/s11030-020-10132-z, IF=2.13
  19. K. Kovaleva, E. Mamontova, O. Yarovaya, O. Zakharova, A. Zakharenko, O. Lavrik, N. Salakhutdinov
    Dehydroabietylamine-based thiazolidin-4-ones and 2-thioxoimidazolidin-4-ones as novel tyrosyl-DNA phosphodiesterase 1 inhibitors
    Molecular Diversity (2020), Published: 24 August 2020 doi:10.1007/s11030-020-10132-z, IF=2.13
  20. K. Kovaleva, E. Mamontova, O. Yarovaya, O. Zakharova, A. Zakharenko, O. Lavrik, N. Salakhutdinov
    Dehydroabietylamine-based thiazolidin-4-ones and 2-thioxoimidazolidin-4-ones as novel tyrosyl-DNA phosphodiesterase 1 inhibitors
    Molecular Diversity (2020), Published: 24 August 2020 doi:10.1007/s11030-020-10132-z, IF=2.13
  21. K. Kovaleva, E. Mamontova, O. Yarovaya, O. Zakharova, A. Zakharenko, O. Lavrik, N. Salakhutdinov
    Dehydroabietylamine-based thiazolidin-4-ones and 2-thioxoimidazolidin-4-ones as novel tyrosyl-DNA phosphodiesterase 1 inhibitors
    Molecular Diversity (2020), Published: 24 August 2020 doi:10.1007/s11030-020-10132-z, IF=2.13
  22. O. V.Salomatina, I. I.Popadyuk, A. L.Zakharenko, O. D.Zakharova, A. A.Chepanova, N..S.Dyrkheeva, N.I.Komarova, J.Reynisson, R. O.Anarbaev, N. F.Salakhutdinov, O. I.Lavrik, K. P.Volcho
    Deoxycholic acid as a molecular scaffold for tyrosyl-DNA phosphodiesterase 1 inhibition: a synthesis, structure-activity relationship and molecular modeling study
    Steroids, Available online 19 November 2020, 108771 doi:10.1016/j.steroids.2020.108771, IF=1.947
  23. O. V.Salomatina, I. I.Popadyuk, A. L.Zakharenko, O. D.Zakharova, A. A.Chepanova, N..S.Dyrkheeva, N.I.Komarova, J.Reynisson, R. O.Anarbaev, N. F.Salakhutdinov, O. I.Lavrik, K. P.Volcho
    Deoxycholic acid as a molecular scaffold for tyrosyl-DNA phosphodiesterase 1 inhibition: a synthesis, structure-activity relationship and molecular modeling study
    Steroids, Available online 19 November 2020, 108771 doi:10.1016/j.steroids.2020.108771, IF=1.947
  24. O. V.Salomatina, I. I.Popadyuk, A. L.Zakharenko, O. D.Zakharova, A. A.Chepanova, N..S.Dyrkheeva, N.I.Komarova, J.Reynisson, R. O.Anarbaev, N. F.Salakhutdinov, O. I.Lavrik, K. P.Volcho
    Deoxycholic acid as a molecular scaffold for tyrosyl-DNA phosphodiesterase 1 inhibition: a synthesis, structure-activity relationship and molecular modeling study
    Steroids, Available online 19 November 2020, 108771 doi:10.1016/j.steroids.2020.108771, IF=1.947
  25. O. V.Salomatina, I. I.Popadyuk, A. L.Zakharenko, O. D.Zakharova, A. A.Chepanova, N..S.Dyrkheeva, N.I.Komarova, J.Reynisson, R. O.Anarbaev, N. F.Salakhutdinov, O. I.Lavrik, K. P.Volcho
    Deoxycholic acid as a molecular scaffold for tyrosyl-DNA phosphodiesterase 1 inhibition: a synthesis, structure-activity relationship and molecular modeling study
    Steroids, Available online 19 November 2020, 108771 doi:10.1016/j.steroids.2020.108771, IF=1.947
  26. O. V.Salomatina, I. I.Popadyuk, A. L.Zakharenko, O. D.Zakharova, A. A.Chepanova, N..S.Dyrkheeva, N.I.Komarova, J.Reynisson, R. O.Anarbaev, N. F.Salakhutdinov, O. I.Lavrik, K. P.Volcho
    Deoxycholic acid as a molecular scaffold for tyrosyl-DNA phosphodiesterase 1 inhibition: a synthesis, structure-activity relationship and molecular modeling study
    Steroids, Available online 19 November 2020, 108771 doi:10.1016/j.steroids.2020.108771, IF=1.947
  27. O. V.Salomatina, I. I.Popadyuk, A. L.Zakharenko, O. D.Zakharova, A. A.Chepanova, N..S.Dyrkheeva, N.I.Komarova, J.Reynisson, R. O.Anarbaev, N. F.Salakhutdinov, O. I.Lavrik, K. P.Volcho
    Deoxycholic acid as a molecular scaffold for tyrosyl-DNA phosphodiesterase 1 inhibition: a synthesis, structure-activity relationship and molecular modeling study
    Steroids, Available online 19 November 2020, 108771 doi:10.1016/j.steroids.2020.108771, IF=1.947
  28. O. V.Salomatina, I. I.Popadyuk, A. L.Zakharenko, O. D.Zakharova, A. A.Chepanova, N..S.Dyrkheeva, N.I.Komarova, J.Reynisson, R. O.Anarbaev, N. F.Salakhutdinov, O. I.Lavrik, K. P.Volcho
    Deoxycholic acid as a molecular scaffold for tyrosyl-DNA phosphodiesterase 1 inhibition: a synthesis, structure-activity relationship and molecular modeling study
    Steroids, Available online 19 November 2020, 108771 doi:10.1016/j.steroids.2020.108771, IF=1.947
  29. E.F. Khusnutdinova, A.V. Petrova, A.N. Lobov, O.S. Kukovinets, D.S. Baev, O.B. Kazakova
    Synthesis of C17-[5-methyl-1,3]-oxazoles by N-propargylation of triterpenic acids and evaluation of their cytotoxic activity
    Natural Product Research (Formerly Natural Product ), Published online: 28 Mar 2020 doi:10.1080/14786419.2020.1744139, IF=2.158
  30. E.F. Khusnutdinova, A.V. Petrova, A.N. Lobov, O.S. Kukovinets, D.S. Baev, O.B. Kazakova
    Synthesis of C17-[5-methyl-1,3]-oxazoles by N-propargylation of triterpenic acids and evaluation of their cytotoxic activity
    Natural Product Research (Formerly Natural Product ), Published online: 28 Mar 2020 doi:10.1080/14786419.2020.1744139, IF=2.158
  31. E.F. Khusnutdinova, A.V. Petrova, A.N. Lobov, O.S. Kukovinets, D.S. Baev, O.B. Kazakova
    Synthesis of C17-[5-methyl-1,3]-oxazoles by N-propargylation of triterpenic acids and evaluation of their cytotoxic activity
    Natural Product Research (Formerly Natural Product ), Published online: 28 Mar 2020 doi:10.1080/14786419.2020.1744139, IF=2.158
  32. E.F. Khusnutdinova, A.V. Petrova, A.N. Lobov, O.S. Kukovinets, D.S. Baev, O.B. Kazakova
    Synthesis of C17-[5-methyl-1,3]-oxazoles by N-propargylation of triterpenic acids and evaluation of their cytotoxic activity
    Natural Product Research (Formerly Natural Product ), Published online: 28 Mar 2020 doi:10.1080/14786419.2020.1744139, IF=2.158
  33. E.F. Khusnutdinova, A.V. Petrova, A.N. Lobov, O.S. Kukovinets, D.S. Baev, O.B. Kazakova
    Synthesis of C17-[5-methyl-1,3]-oxazoles by N-propargylation of triterpenic acids and evaluation of their cytotoxic activity
    Natural Product Research (Formerly Natural Product ), Published online: 28 Mar 2020 doi:10.1080/14786419.2020.1744139, IF=2.158
  34. E. Avdeeva, Ya. Reshetov, D. Domrachev, E. Gulina, S. Krivoshchekov, M. Shurupova, K. Brazovskii, M. Belousov
    Constituent composition of the essential oils from some species of the genus Saussurea DC
    Natural Product Research, Published online: 03 Aug 2020 doi:10.1080/14786419.2020.1795655, IF=2.157
  35. E. Avdeeva, Ya. Reshetov, D. Domrachev, E. Gulina, S. Krivoshchekov, M. Shurupova, K. Brazovskii, M. Belousov
    Constituent composition of the essential oils from some species of the genus Saussurea DC
    Natural Product Research, Published online: 03 Aug 2020 doi:10.1080/14786419.2020.1795655, IF=2.157
  36. E. Avdeeva, Ya. Reshetov, D. Domrachev, E. Gulina, S. Krivoshchekov, M. Shurupova, K. Brazovskii, M. Belousov
    Constituent composition of the essential oils from some species of the genus Saussurea DC
    Natural Product Research, Published online: 03 Aug 2020 doi:10.1080/14786419.2020.1795655, IF=2.157
  37. E. Avdeeva, Ya. Reshetov, D. Domrachev, E. Gulina, S. Krivoshchekov, M. Shurupova, K. Brazovskii, M. Belousov
    Constituent composition of the essential oils from some species of the genus Saussurea DC
    Natural Product Research, Published online: 03 Aug 2020 doi:10.1080/14786419.2020.1795655, IF=2.157
  38. E. Avdeeva, Ya. Reshetov, D. Domrachev, E. Gulina, S. Krivoshchekov, M. Shurupova, K. Brazovskii, M. Belousov
    Constituent composition of the essential oils from some species of the genus Saussurea DC
    Natural Product Research, Published online: 03 Aug 2020 doi:10.1080/14786419.2020.1795655, IF=2.157
  39. E. Avdeeva, Ya. Reshetov, D. Domrachev, E. Gulina, S. Krivoshchekov, M. Shurupova, K. Brazovskii, M. Belousov
    Constituent composition of the essential oils from some species of the genus Saussurea DC
    Natural Product Research, Published online: 03 Aug 2020 doi:10.1080/14786419.2020.1795655, IF=2.157
  40. E. Avdeeva, Ya. Reshetov, D. Domrachev, E. Gulina, S. Krivoshchekov, M. Shurupova, K. Brazovskii, M. Belousov
    Constituent composition of the essential oils from some species of the genus Saussurea DC
    Natural Product Research, Published online: 03 Aug 2020 doi:10.1080/14786419.2020.1795655, IF=2.157
  41. A.Yu. Makarov, Yu.M. Volkova, L.A. Shundrin, A.A. Dmitriev, I.G. Irtegova, I.Yu. Bagryanskaya, I.K. Shundrina, N.P. Gritsan, J. Beckmann, A.V. Zibarev
    Chemistry of Herz radicals: a new way to near-IR dyes with multiple long-lived and differently-coloured redox states
    Chem. Commun., 2020, 2020,56(5), 727-730 doi:10.1039/C9CC08557B, IF=5.996
  42. A.Yu. Makarov, Yu.M. Volkova, L.A. Shundrin, A.A. Dmitriev, I.G. Irtegova, I.Yu. Bagryanskaya, I.K. Shundrina, N.P. Gritsan, J. Beckmann, A.V. Zibarev
    Chemistry of Herz radicals: a new way to near-IR dyes with multiple long-lived and differently-coloured redox states
    Chem. Commun., 2020, 2020,56(5), 727-730 doi:10.1039/C9CC08557B, IF=5.996
  43. A.Yu. Makarov, Yu.M. Volkova, L.A. Shundrin, A.A. Dmitriev, I.G. Irtegova, I.Yu. Bagryanskaya, I.K. Shundrina, N.P. Gritsan, J. Beckmann, A.V. Zibarev
    Chemistry of Herz radicals: a new way to near-IR dyes with multiple long-lived and differently-coloured redox states
    Chem. Commun., 2020, 2020,56(5), 727-730 doi:10.1039/C9CC08557B, IF=5.996
  44. N.A. Shekhovtsov, K.A. Vinogradova, A.S. Berezin, T.S. Sukhikh, V.P. Krivopalov, E.B. Nikolaenkova, M. B. Bushuev
    Excitation wavelength dependent emission of silver(i) complexes with a pyrimidine ligand†
    Inorg. Chem. Front., 2020, Advance Article doi:10.1039/D0QI00254B, IF=5.958
  45. N.A. Shekhovtsov, K.A. Vinogradova, A.S. Berezin, T.S. Sukhikh, V.P. Krivopalov, E.B. Nikolaenkova, M. B. Bushuev
    Excitation wavelength dependent emission of silver(i) complexes with a pyrimidine ligand†
    Inorg. Chem. Front., 2020, Advance Article doi:10.1039/D0QI00254B, IF=5.958
  46. N.A. Shekhovtsov, K.A. Vinogradova, A.S. Berezin, T.S. Sukhikh, V.P. Krivopalov, E.B. Nikolaenkova, M. B. Bushuev
    Excitation wavelength dependent emission of silver(i) complexes with a pyrimidine ligand†
    Inorg. Chem. Front., 2020, Advance Article doi:10.1039/D0QI00254B, IF=5.958
  47. N.A. Shekhovtsov, K.A. Vinogradova, A.S. Berezin, T.S. Sukhikh, V.P. Krivopalov, E.B. Nikolaenkova, M. B. Bushuev
    Excitation wavelength dependent emission of silver(i) complexes with a pyrimidine ligand†
    Inorg. Chem. Front., 2020, Advance Article doi:10.1039/D0QI00254B, IF=5.958
  48. N.A. Shekhovtsov, K.A. Vinogradova, A.S. Berezin, T.S. Sukhikh, V.P. Krivopalov, E.B. Nikolaenkova, M. B. Bushuev
    Excitation wavelength dependent emission of silver(i) complexes with a pyrimidine ligand†
    Inorg. Chem. Front., 2020, Advance Article doi:10.1039/D0QI00254B, IF=5.958
  49. M.A. Gromova, Yu.V. Kharitonov, T.V. Rybalova, E.E. Shults
    Synthetic studies on tricyclic diterpenoids: convenient synthesis of 16-arylisopimaranes
    Monatshefte fur Chemie - Chemical Monthly, First Published Nov 20, 2020 doi:10.1007/s00706-020-02713-3, IF=1.348
  50. E.M. Kadilenko, N.P. Gritsan, E.V. Tretyakov, S.V. Fokin, G.V. Romanenko, A.S. Bogomyakov, D.E. Gorbunov, D. Schollmeyer, M. Baumgarten, V.I. Ovcharenko
    A black-box approach to the construction of metal-radical multispin systems and analysis of their magnetic properties
    Dalton Trans., 2020, Advance Article, First published 09 Nov 2020 doi:10.1039/D0DT03184D, IF=4.173
  51. E.M. Kadilenko, N.P. Gritsan, E.V. Tretyakov, S.V. Fokin, G.V. Romanenko, A.S. Bogomyakov, D.E. Gorbunov, D. Schollmeyer, M. Baumgarten, V.I. Ovcharenko
    A black-box approach to the construction of metal-radical multispin systems and analysis of their magnetic properties
    Dalton Trans., 2020, Advance Article, First published 09 Nov 2020 doi:10.1039/D0DT03184D, IF=4.173
  52. E.M. Kadilenko, N.P. Gritsan, E.V. Tretyakov, S.V. Fokin, G.V. Romanenko, A.S. Bogomyakov, D.E. Gorbunov, D. Schollmeyer, M. Baumgarten, V.I. Ovcharenko
    A black-box approach to the construction of metal-radical multispin systems and analysis of their magnetic properties
    Dalton Trans., 2020, Advance Article, First published 09 Nov 2020 doi:10.1039/D0DT03184D, IF=4.173
  53. E.M. Kadilenko, N.P. Gritsan, E.V. Tretyakov, S.V. Fokin, G.V. Romanenko, A.S. Bogomyakov, D.E. Gorbunov, D. Schollmeyer, M. Baumgarten, V.I. Ovcharenko
    A black-box approach to the construction of metal-radical multispin systems and analysis of their magnetic properties
    Dalton Trans., 2020, Advance Article, First published 09 Nov 2020 doi:10.1039/D0DT03184D, IF=4.173
  54. E.M. Kadilenko, N.P. Gritsan, E.V. Tretyakov, S.V. Fokin, G.V. Romanenko, A.S. Bogomyakov, D.E. Gorbunov, D. Schollmeyer, M. Baumgarten, V.I. Ovcharenko
    A black-box approach to the construction of metal-radical multispin systems and analysis of their magnetic properties
    Dalton Trans., 2020, Advance Article, First published 09 Nov 2020 doi:10.1039/D0DT03184D, IF=4.173
  55. E.M. Kadilenko, N.P. Gritsan, E.V. Tretyakov, S.V. Fokin, G.V. Romanenko, A.S. Bogomyakov, D.E. Gorbunov, D. Schollmeyer, M. Baumgarten, V.I. Ovcharenko
    A black-box approach to the construction of metal-radical multispin systems and analysis of their magnetic properties
    Dalton Trans., 2020, Advance Article, First published 09 Nov 2020 doi:10.1039/D0DT03184D, IF=4.173
  56. E.M. Kadilenko, N.P. Gritsan, E.V. Tretyakov, S.V. Fokin, G.V. Romanenko, A.S. Bogomyakov, D.E. Gorbunov, D. Schollmeyer, M. Baumgarten, V.I. Ovcharenko
    A black-box approach to the construction of metal-radical multispin systems and analysis of their magnetic properties
    Dalton Trans., 2020, Advance Article, First published 09 Nov 2020 doi:10.1039/D0DT03184D, IF=4.173
  57. E.M. Kadilenko, N.P. Gritsan, E.V. Tretyakov, S.V. Fokin, G.V. Romanenko, A.S. Bogomyakov, D.E. Gorbunov, D. Schollmeyer, M. Baumgarten, V.I. Ovcharenko
    A black-box approach to the construction of metal-radical multispin systems and analysis of their magnetic properties
    Dalton Trans., 2020, Advance Article, First published 09 Nov 2020 doi:10.1039/D0DT03184D, IF=4.173
  58. E.M. Kadilenko, N.P. Gritsan, E.V. Tretyakov, S.V. Fokin, G.V. Romanenko, A.S. Bogomyakov, D.E. Gorbunov, D. Schollmeyer, M. Baumgarten, V.I. Ovcharenko
    A black-box approach to the construction of metal-radical multispin systems and analysis of their magnetic properties
    Dalton Trans., 2020, Advance Article, First published 09 Nov 2020 doi:10.1039/D0DT03184D, IF=4.173
  59. M. Yu.Petyuk, A. S.Berezin, A. L.Gushchin, I. Yu.Bagryanskaya, A. Yu.Baranov, A. V.Artem'ev
    Luminescent Re(I) scorpionates supported by tris(2-pyridyl)phosphine and its derivatives
    Inorganica Chimica Acta, Available online 13 November 2020, 120136 doi:10.1016/j.ica.2020.120136, IF=2.303
  60. M. Yu.Petyuk, A. S.Berezin, A. L.Gushchin, I. Yu.Bagryanskaya, A. Yu.Baranov, A. V.Artem'ev
    Luminescent Re(I) scorpionates supported by tris(2-pyridyl)phosphine and its derivatives
    Inorganica Chimica Acta, Available online 13 November 2020, 120136 doi:10.1016/j.ica.2020.120136, IF=2.303
  61. M. Yu.Petyuk, A. S.Berezin, A. L.Gushchin, I. Yu.Bagryanskaya, A. Yu.Baranov, A. V.Artem'ev
    Luminescent Re(I) scorpionates supported by tris(2-pyridyl)phosphine and its derivatives
    Inorganica Chimica Acta, Available online 13 November 2020, 120136 doi:10.1016/j.ica.2020.120136, IF=2.303
  62. M. Yu.Petyuk, A. S.Berezin, A. L.Gushchin, I. Yu.Bagryanskaya, A. Yu.Baranov, A. V.Artem'ev
    Luminescent Re(I) scorpionates supported by tris(2-pyridyl)phosphine and its derivatives
    Inorganica Chimica Acta, Available online 13 November 2020, 120136 doi:10.1016/j.ica.2020.120136, IF=2.303
  63. M. Yu.Petyuk, A. S.Berezin, A. L.Gushchin, I. Yu.Bagryanskaya, A. Yu.Baranov, A. V.Artem'ev
    Luminescent Re(I) scorpionates supported by tris(2-pyridyl)phosphine and its derivatives
    Inorganica Chimica Acta, Available online 13 November 2020, 120136 doi:10.1016/j.ica.2020.120136, IF=2.303
  64. B. Joseph, S. Ketter, A. Gopinath, O. Rogozhnikova, D. Trukhin, V.M. Tormyshev, E.G. Bagryanskaya
    In situ labeling and distance measurements of membrane proteins in E coli using Finland and OX063 trityl labels
    Chemistry - A European Journal, Accepted manuscript online: 16 November 2020 doi:10.1002/chem.202004606, IF=4.857
  65. B. Joseph, S. Ketter, A. Gopinath, O. Rogozhnikova, D. Trukhin, V.M. Tormyshev, E.G. Bagryanskaya
    In situ labeling and distance measurements of membrane proteins in E coli using Finland and OX063 trityl labels
    Chemistry - A European Journal, Accepted manuscript online: 16 November 2020 doi:10.1002/chem.202004606, IF=4.857
  66. B. Joseph, S. Ketter, A. Gopinath, O. Rogozhnikova, D. Trukhin, V.M. Tormyshev, E.G. Bagryanskaya
    In situ labeling and distance measurements of membrane proteins in E coli using Finland and OX063 trityl labels
    Chemistry - A European Journal, Accepted manuscript online: 16 November 2020 doi:10.1002/chem.202004606, IF=4.857
  67. V.V. Chernyshov, O.I. Yarovaya, S.Z. Vatsadze, S.S. Borisevich, S.N. Trukhan, Yu.V. Gatilov, R.Yu. Peshkov, I.V. Eltsov, O.N. Martyanov, N.F. Salakhutdinov
    Unexpected ring opening during the imination of camphor-type bicyclic ketones
    European Journal of Organic Chemistry, First online 19 November 2020 doi:10.1002/ejoc.202001397, IF=2.888
  68. V.V. Chernyshov, O.I. Yarovaya, S.Z. Vatsadze, S.S. Borisevich, S.N. Trukhan, Yu.V. Gatilov, R.Yu. Peshkov, I.V. Eltsov, O.N. Martyanov, N.F. Salakhutdinov
    Unexpected ring opening during the imination of camphor-type bicyclic ketones
    European Journal of Organic Chemistry, First online 19 November 2020 doi:10.1002/ejoc.202001397, IF=2.888
  69. V.V. Chernyshov, O.I. Yarovaya, S.Z. Vatsadze, S.S. Borisevich, S.N. Trukhan, Yu.V. Gatilov, R.Yu. Peshkov, I.V. Eltsov, O.N. Martyanov, N.F. Salakhutdinov
    Unexpected ring opening during the imination of camphor-type bicyclic ketones
    European Journal of Organic Chemistry, First online 19 November 2020 doi:10.1002/ejoc.202001397, IF=2.888
  70. V.V. Chernyshov, O.I. Yarovaya, S.Z. Vatsadze, S.S. Borisevich, S.N. Trukhan, Yu.V. Gatilov, R.Yu. Peshkov, I.V. Eltsov, O.N. Martyanov, N.F. Salakhutdinov
    Unexpected ring opening during the imination of camphor-type bicyclic ketones
    European Journal of Organic Chemistry, First online 19 November 2020 doi:10.1002/ejoc.202001397, IF=2.888
  71. V.V. Chernyshov, O.I. Yarovaya, S.Z. Vatsadze, S.S. Borisevich, S.N. Trukhan, Yu.V. Gatilov, R.Yu. Peshkov, I.V. Eltsov, O.N. Martyanov, N.F. Salakhutdinov
    Unexpected ring opening during the imination of camphor-type bicyclic ketones
    European Journal of Organic Chemistry, First online 19 November 2020 doi:10.1002/ejoc.202001397, IF=2.888
  72. V.V. Chernyshov, O.I. Yarovaya, S.Z. Vatsadze, S.S. Borisevich, S.N. Trukhan, Yu.V. Gatilov, R.Yu. Peshkov, I.V. Eltsov, O.N. Martyanov, N.F. Salakhutdinov
    Unexpected ring opening during the imination of camphor-type bicyclic ketones
    European Journal of Organic Chemistry, First online 19 November 2020 doi:10.1002/ejoc.202001397, IF=2.888
  73. I.V. Ilyina, O.S. Patrusheva, V.V. Zarubaev, M.A. Misiurina, A.V. Slita, Ia.L. Esaulkova, D.V. Korchagina, Yu.V. Gatilov, S.S. Borisevich, K.P. Volcho, N.F. Salakhutdinov
    Influenza antiviral activity of F- and OH-containing isopulegol-derived octahydro-2H-chromenes
    Bioorganic & Medicinal Chemistry Letters, Available online 7 November 2020, 127677 doi:10.1016/j.bmcl.2020.127677, IF=2.572
  74. I.V. Ilyina, O.S. Patrusheva, V.V. Zarubaev, M.A. Misiurina, A.V. Slita, Ia.L. Esaulkova, D.V. Korchagina, Yu.V. Gatilov, S.S. Borisevich, K.P. Volcho, N.F. Salakhutdinov
    Influenza antiviral activity of F- and OH-containing isopulegol-derived octahydro-2H-chromenes
    Bioorganic & Medicinal Chemistry Letters, Available online 7 November 2020, 127677 doi:10.1016/j.bmcl.2020.127677, IF=2.572
  75. I.V. Ilyina, O.S. Patrusheva, V.V. Zarubaev, M.A. Misiurina, A.V. Slita, Ia.L. Esaulkova, D.V. Korchagina, Yu.V. Gatilov, S.S. Borisevich, K.P. Volcho, N.F. Salakhutdinov
    Influenza antiviral activity of F- and OH-containing isopulegol-derived octahydro-2H-chromenes
    Bioorganic & Medicinal Chemistry Letters, Available online 7 November 2020, 127677 doi:10.1016/j.bmcl.2020.127677, IF=2.572
  76. I.V. Ilyina, O.S. Patrusheva, V.V. Zarubaev, M.A. Misiurina, A.V. Slita, Ia.L. Esaulkova, D.V. Korchagina, Yu.V. Gatilov, S.S. Borisevich, K.P. Volcho, N.F. Salakhutdinov
    Influenza antiviral activity of F- and OH-containing isopulegol-derived octahydro-2H-chromenes
    Bioorganic & Medicinal Chemistry Letters, Available online 7 November 2020, 127677 doi:10.1016/j.bmcl.2020.127677, IF=2.572
  77. I.V. Ilyina, O.S. Patrusheva, V.V. Zarubaev, M.A. Misiurina, A.V. Slita, Ia.L. Esaulkova, D.V. Korchagina, Yu.V. Gatilov, S.S. Borisevich, K.P. Volcho, N.F. Salakhutdinov
    Influenza antiviral activity of F- and OH-containing isopulegol-derived octahydro-2H-chromenes
    Bioorganic & Medicinal Chemistry Letters, Available online 7 November 2020, 127677 doi:10.1016/j.bmcl.2020.127677, IF=2.572
  78. T.M. Khomenko, V.V. Zarubaev, M.V. Kireeva, A.S. Volobueva, A.V. Slita, S.S. Borisevich, D.V. Korchagina, N.I. Komarova, K.P. Volcho, N.F. Salakhutdinov
    New type of anti-influenza agents based on benzo[d][1,3]dithiol core
    Bioorganic & Medicinal Chemistry Letters, 2020, V. 30, N 24, Art. Num. 127653 doi:10.1016/j.bmcl.2020.127653, IF=2.572
  79. T.M. Khomenko, V.V. Zarubaev, M.V. Kireeva, A.S. Volobueva, A.V. Slita, S.S. Borisevich, D.V. Korchagina, N.I. Komarova, K.P. Volcho, N.F. Salakhutdinov
    New type of anti-influenza agents based on benzo[d][1,3]dithiol core
    Bioorganic & Medicinal Chemistry Letters, 2020, V. 30, N 24, Art. Num. 127653 doi:10.1016/j.bmcl.2020.127653, IF=2.572
  80. T.M. Khomenko, V.V. Zarubaev, M.V. Kireeva, A.S. Volobueva, A.V. Slita, S.S. Borisevich, D.V. Korchagina, N.I. Komarova, K.P. Volcho, N.F. Salakhutdinov
    New type of anti-influenza agents based on benzo[d][1,3]dithiol core
    Bioorganic & Medicinal Chemistry Letters, 2020, V. 30, N 24, Art. Num. 127653 doi:10.1016/j.bmcl.2020.127653, IF=2.572
  81. T.M. Khomenko, V.V. Zarubaev, M.V. Kireeva, A.S. Volobueva, A.V. Slita, S.S. Borisevich, D.V. Korchagina, N.I. Komarova, K.P. Volcho, N.F. Salakhutdinov
    New type of anti-influenza agents based on benzo[d][1,3]dithiol core
    Bioorganic & Medicinal Chemistry Letters, 2020, V. 30, N 24, Art. Num. 127653 doi:10.1016/j.bmcl.2020.127653, IF=2.572
  82. T.M. Khomenko, V.V. Zarubaev, M.V. Kireeva, A.S. Volobueva, A.V. Slita, S.S. Borisevich, D.V. Korchagina, N.I. Komarova, K.P. Volcho, N.F. Salakhutdinov
    New type of anti-influenza agents based on benzo[d][1,3]dithiol core
    Bioorganic & Medicinal Chemistry Letters, 2020, V. 30, N 24, Art. Num. 127653 doi:10.1016/j.bmcl.2020.127653, IF=2.572
  83. A.S. Sokolova, O.I. Yarovaya, A.V. Zybkina, E.D. Mordvinova, N.S. Shcherbakova, A.V. Zaykovskaya, D.S. Baev, T.G. Tolstikova, D.N. Shcherbakov, O.V. Pyankov, R.A. Maksyutov, N.F. Salakhutdinov
    Monoterpenoid-based inhibitors of filoviruses targeting the glycoprotein-mediated entry process
    European Journal of Medicinal Chemistry, 2020, V. 207, 112726 doi:10.1016/j.ejmech.2020.112726, IF=5.572
  84. A.S. Sokolova, O.I. Yarovaya, A.V. Zybkina, E.D. Mordvinova, N.S. Shcherbakova, A.V. Zaykovskaya, D.S. Baev, T.G. Tolstikova, D.N. Shcherbakov, O.V. Pyankov, R.A. Maksyutov, N.F. Salakhutdinov
    Monoterpenoid-based inhibitors of filoviruses targeting the glycoprotein-mediated entry process
    European Journal of Medicinal Chemistry, 2020, V. 207, 112726 doi:10.1016/j.ejmech.2020.112726, IF=5.572
  85. A.S. Sokolova, O.I. Yarovaya, A.V. Zybkina, E.D. Mordvinova, N.S. Shcherbakova, A.V. Zaykovskaya, D.S. Baev, T.G. Tolstikova, D.N. Shcherbakov, O.V. Pyankov, R.A. Maksyutov, N.F. Salakhutdinov
    Monoterpenoid-based inhibitors of filoviruses targeting the glycoprotein-mediated entry process
    European Journal of Medicinal Chemistry, 2020, V. 207, 112726 doi:10.1016/j.ejmech.2020.112726, IF=5.572
  86. A.S. Sokolova, O.I. Yarovaya, A.V. Zybkina, E.D. Mordvinova, N.S. Shcherbakova, A.V. Zaykovskaya, D.S. Baev, T.G. Tolstikova, D.N. Shcherbakov, O.V. Pyankov, R.A. Maksyutov, N.F. Salakhutdinov
    Monoterpenoid-based inhibitors of filoviruses targeting the glycoprotein-mediated entry process
    European Journal of Medicinal Chemistry, 2020, V. 207, 112726 doi:10.1016/j.ejmech.2020.112726, IF=5.572
  87. A.S. Sokolova, O.I. Yarovaya, A.V. Zybkina, E.D. Mordvinova, N.S. Shcherbakova, A.V. Zaykovskaya, D.S. Baev, T.G. Tolstikova, D.N. Shcherbakov, O.V. Pyankov, R.A. Maksyutov, N.F. Salakhutdinov
    Monoterpenoid-based inhibitors of filoviruses targeting the glycoprotein-mediated entry process
    European Journal of Medicinal Chemistry, 2020, V. 207, 112726 doi:10.1016/j.ejmech.2020.112726, IF=5.572
  88. A.S. Sokolova, O.I. Yarovaya, A.V. Zybkina, E.D. Mordvinova, N.S. Shcherbakova, A.V. Zaykovskaya, D.S. Baev, T.G. Tolstikova, D.N. Shcherbakov, O.V. Pyankov, R.A. Maksyutov, N.F. Salakhutdinov
    Monoterpenoid-based inhibitors of filoviruses targeting the glycoprotein-mediated entry process
    European Journal of Medicinal Chemistry, 2020, V. 207, 112726 doi:10.1016/j.ejmech.2020.112726, IF=5.572
  89. A.M. Cheplakova, K.A. Kovalenko, A.S. Vinogradov, V.M. Karpov, V.E. Platonov, V.P. Fedin
    A comparative study of perfluorinated and non-fluorinated UiO-67 in gas adsorption
    Journal of Porous Materials, 2020, V. 27, N 12, Pp 1773-1782 doi:10.1007/s10934-020-00941-w
  90. A.M. Cheplakova, K.A. Kovalenko, A.S. Vinogradov, V.M. Karpov, V.E. Platonov, V.P. Fedin
    A comparative study of perfluorinated and non-fluorinated UiO-67 in gas adsorption
    Journal of Porous Materials, 2020, V. 27, N 12, Pp 1773-1782 doi:10.1007/s10934-020-00941-w
  91. A.M. Cheplakova, K.A. Kovalenko, A.S. Vinogradov, V.M. Karpov, V.E. Platonov, V.P. Fedin
    A comparative study of perfluorinated and non-fluorinated UiO-67 in gas adsorption
    Journal of Porous Materials, 2020, V. 27, N 12, Pp 1773-1782 doi:10.1007/s10934-020-00941-w
  92. S. Kuranov, O. Luzina, M. Khvostov, D. Baev, D. Kuznetsova, N. Zhukova, P. Vassiliev, A. Kochetkov, T. Tolstikova, N. Salakhutdinov
    Bornyl Derivatives of p-(Benzyloxy)Phenylpropionic Acid: In Vivo Evaluation of Antidiabetic Activity
    Pharmaceuticals 2020, 13(11), 404 doi:10.3390/ph13110404, IF=4.285
  93. S. Kuranov, O. Luzina, M. Khvostov, D. Baev, D. Kuznetsova, N. Zhukova, P. Vassiliev, A. Kochetkov, T. Tolstikova, N. Salakhutdinov
    Bornyl Derivatives of p-(Benzyloxy)Phenylpropionic Acid: In Vivo Evaluation of Antidiabetic Activity
    Pharmaceuticals 2020, 13(11), 404 doi:10.3390/ph13110404, IF=4.285
  94. L.V. Politanskaya, P.A. Fedyushin, T.V. Rybalova, A.S. Bogomyakov, N.B. Asanbaeva, E.V. Tretyakov
    Fluorinated Organic Paramagnetic Building Blocks for Cross-Coupling Reactions
    Molecules 2020, 25(22), 5427 doi:10.3390/molecules25225427, IF=3.266
  95. V.V. Krisyuk, S. Urkasymkyzy, T.V. Rybalova, I.V. Korolkov, S.V. Sysoev, T.P. Koretskaya, B.M. Kuchumov, A.E. Turgambaeva
    Volatile trinuclear heterometallic beta-diketonates: structure and thermal properties related to the chemical vapor deposition of composite thin films
    Polyhedron, V. 191, 15 November 2020, 114806 doi:10.1016/j.poly.2020.114806, IF=2.342
  96. V.V. Krisyuk, S. Urkasymkyzy, T.V. Rybalova, I.V. Korolkov, S.V. Sysoev, T.P. Koretskaya, B.M. Kuchumov, A.E. Turgambaeva
    Volatile trinuclear heterometallic beta-diketonates: structure and thermal properties related to the chemical vapor deposition of composite thin films
    Polyhedron, V. 191, 15 November 2020, 114806 doi:10.1016/j.poly.2020.114806, IF=2.342
  97. V.V. Krisyuk, S. Urkasymkyzy, T.V. Rybalova, I.V. Korolkov, S.V. Sysoev, T.P. Koretskaya, B.M. Kuchumov, A.E. Turgambaeva
    Volatile trinuclear heterometallic beta-diketonates: structure and thermal properties related to the chemical vapor deposition of composite thin films
    Polyhedron, V. 191, 15 November 2020, 114806 doi:10.1016/j.poly.2020.114806, IF=2.342
  98. V.V. Krisyuk, S. Urkasymkyzy, T.V. Rybalova, I.V. Korolkov, S.V. Sysoev, T.P. Koretskaya, B.M. Kuchumov, A.E. Turgambaeva
    Volatile trinuclear heterometallic beta-diketonates: structure and thermal properties related to the chemical vapor deposition of composite thin films
    Polyhedron, V. 191, 15 November 2020, 114806 doi:10.1016/j.poly.2020.114806, IF=2.342
  99. V.V. Krisyuk, S. Urkasymkyzy, T.V. Rybalova, I.V. Korolkov, S.V. Sysoev, T.P. Koretskaya, B.M. Kuchumov, A.E. Turgambaeva
    Volatile trinuclear heterometallic beta-diketonates: structure and thermal properties related to the chemical vapor deposition of composite thin films
    Polyhedron, V. 191, 15 November 2020, 114806 doi:10.1016/j.poly.2020.114806, IF=2.342
  100. V.V. Krisyuk, S. Urkasymkyzy, T.V. Rybalova, I.V. Korolkov, S.V. Sysoev, T.P. Koretskaya, B.M. Kuchumov, A.E. Turgambaeva
    Volatile trinuclear heterometallic beta-diketonates: structure and thermal properties related to the chemical vapor deposition of composite thin films
    Polyhedron, V. 191, 15 November 2020, 114806 doi:10.1016/j.poly.2020.114806, IF=2.342
  101. V.V. Krisyuk, S. Urkasymkyzy, T.V. Rybalova, I.V. Korolkov, S.V. Sysoev, T.P. Koretskaya, B.M. Kuchumov, A.E. Turgambaeva
    Volatile trinuclear heterometallic beta-diketonates: structure and thermal properties related to the chemical vapor deposition of composite thin films
    Polyhedron, V. 191, 15 November 2020, 114806 doi:10.1016/j.poly.2020.114806, IF=2.342
  102. E.V. Tretyakov, S.I. Zhivetyeva, P.V. Petunin, D.E. Gorbunov, N.P. Gritsan, I.Yu. Bagryanskaya, A.S. Bogomyakov, P.S. Postnikov, M.S. Kazantsev, M.E. Trusova, I.K. Shundrina, E.V. Zaytseva, D.A. Parkhomenko, E.G. Bagryanskaya, V. Ovcharenko
    Ferromagnetically Coupled S = 1 Chains in Crystals of Verdazyl‐Nitronyl Nitroxide Diradicals
    Angewandte Chemie International Edition, 2020, V. 59, N 46, Pp 20704-20710 doi:10.1002/anie.202010041, IF=12.959
  103. E.V. Tretyakov, S.I. Zhivetyeva, P.V. Petunin, D.E. Gorbunov, N.P. Gritsan, I.Yu. Bagryanskaya, A.S. Bogomyakov, P.S. Postnikov, M.S. Kazantsev, M.E. Trusova, I.K. Shundrina, E.V. Zaytseva, D.A. Parkhomenko, E.G. Bagryanskaya, V. Ovcharenko
    Ferromagnetically Coupled S = 1 Chains in Crystals of Verdazyl‐Nitronyl Nitroxide Diradicals
    Angewandte Chemie International Edition, 2020, V. 59, N 46, Pp 20704-20710 doi:10.1002/anie.202010041, IF=12.959
  104. E.V. Tretyakov, S.I. Zhivetyeva, P.V. Petunin, D.E. Gorbunov, N.P. Gritsan, I.Yu. Bagryanskaya, A.S. Bogomyakov, P.S. Postnikov, M.S. Kazantsev, M.E. Trusova, I.K. Shundrina, E.V. Zaytseva, D.A. Parkhomenko, E.G. Bagryanskaya, V. Ovcharenko
    Ferromagnetically Coupled S = 1 Chains in Crystals of Verdazyl‐Nitronyl Nitroxide Diradicals
    Angewandte Chemie International Edition, 2020, V. 59, N 46, Pp 20704-20710 doi:10.1002/anie.202010041, IF=12.959
  105. E.V. Tretyakov, S.I. Zhivetyeva, P.V. Petunin, D.E. Gorbunov, N.P. Gritsan, I.Yu. Bagryanskaya, A.S. Bogomyakov, P.S. Postnikov, M.S. Kazantsev, M.E. Trusova, I.K. Shundrina, E.V. Zaytseva, D.A. Parkhomenko, E.G. Bagryanskaya, V. Ovcharenko
    Ferromagnetically Coupled S = 1 Chains in Crystals of Verdazyl‐Nitronyl Nitroxide Diradicals
    Angewandte Chemie International Edition, 2020, V. 59, N 46, Pp 20704-20710 doi:10.1002/anie.202010041, IF=12.959
  106. E.V. Tretyakov, S.I. Zhivetyeva, P.V. Petunin, D.E. Gorbunov, N.P. Gritsan, I.Yu. Bagryanskaya, A.S. Bogomyakov, P.S. Postnikov, M.S. Kazantsev, M.E. Trusova, I.K. Shundrina, E.V. Zaytseva, D.A. Parkhomenko, E.G. Bagryanskaya, V. Ovcharenko
    Ferromagnetically Coupled S = 1 Chains in Crystals of Verdazyl‐Nitronyl Nitroxide Diradicals
    Angewandte Chemie International Edition, 2020, V. 59, N 46, Pp 20704-20710 doi:10.1002/anie.202010041, IF=12.959
  107. E.V. Tretyakov, S.I. Zhivetyeva, P.V. Petunin, D.E. Gorbunov, N.P. Gritsan, I.Yu. Bagryanskaya, A.S. Bogomyakov, P.S. Postnikov, M.S. Kazantsev, M.E. Trusova, I.K. Shundrina, E.V. Zaytseva, D.A. Parkhomenko, E.G. Bagryanskaya, V. Ovcharenko
    Ferromagnetically Coupled S = 1 Chains in Crystals of Verdazyl‐Nitronyl Nitroxide Diradicals
    Angewandte Chemie International Edition, 2020, V. 59, N 46, Pp 20704-20710 doi:10.1002/anie.202010041, IF=12.959
  108. E.V. Tretyakov, S.I. Zhivetyeva, P.V. Petunin, D.E. Gorbunov, N.P. Gritsan, I.Yu. Bagryanskaya, A.S. Bogomyakov, P.S. Postnikov, M.S. Kazantsev, M.E. Trusova, I.K. Shundrina, E.V. Zaytseva, D.A. Parkhomenko, E.G. Bagryanskaya, V. Ovcharenko
    Ferromagnetically Coupled S = 1 Chains in Crystals of Verdazyl‐Nitronyl Nitroxide Diradicals
    Angewandte Chemie International Edition, 2020, V. 59, N 46, Pp 20704-20710 doi:10.1002/anie.202010041, IF=12.959
  109. E.V. Vasilyev, V.V. Shelkovnikov, N.A. Orlova, I.Sh. Steinberg, V.A. Loskutov
    Single- and two-photon recording of holograms at combined cationic and free-radical polymerization photoinitiated by thioxanthenone derivatives
    Polymer Journal, 2020, V. 52, N 11, Pp 1279-1287 doi:10.1038/s41428-020-0381-2, IF=2.825
  110. H. Suo, Z. Li, I.V. Oleynik, Z. Wang, I.I. Oleynik, Y. Ma, Qi. Liu, W. Sun
    Achieving strictly linear polyethylenes by the NNN-Fe precatalysts finely tuned with different sizes of ortho-cycloalkyl substituents
    Applied Organometalic Chemistry, 2020, V. 34, N 11 , e5937 doi:10.1002/aoc.5937, IF=3.14
  111. H. Suo, Z. Li, I.V. Oleynik, Z. Wang, I.I. Oleynik, Y. Ma, Qi. Liu, W. Sun
    Achieving strictly linear polyethylenes by the NNN-Fe precatalysts finely tuned with different sizes of ortho-cycloalkyl substituents
    Applied Organometalic Chemistry, 2020, V. 34, N 11 , e5937 doi:10.1002/aoc.5937, IF=3.14
  112. H. Suo, Z. Li, I.V. Oleynik, Z. Wang, I.I. Oleynik, Y. Ma, Qi. Liu, W. Sun
    Achieving strictly linear polyethylenes by the NNN-Fe precatalysts finely tuned with different sizes of ortho-cycloalkyl substituents
    Applied Organometalic Chemistry, 2020, V. 34, N 11 , e5937 doi:10.1002/aoc.5937, IF=3.14
  113. H. Suo, Z. Li, I.V. Oleynik, Z. Wang, I.I. Oleynik, Y. Ma, Qi. Liu, W. Sun
    Achieving strictly linear polyethylenes by the NNN-Fe precatalysts finely tuned with different sizes of ortho-cycloalkyl substituents
    Applied Organometalic Chemistry, 2020, V. 34, N 11 , e5937 doi:10.1002/aoc.5937, IF=3.14
  114. H. Suo, Z. Li, I.V. Oleynik, Z. Wang, I.I. Oleynik, Y. Ma, Qi. Liu, W. Sun
    Achieving strictly linear polyethylenes by the NNN-Fe precatalysts finely tuned with different sizes of ortho-cycloalkyl substituents
    Applied Organometalic Chemistry, 2020, V. 34, N 11 , e5937 doi:10.1002/aoc.5937, IF=3.14
  115. H. Suo, Z. Li, I.V. Oleynik, Z. Wang, I.I. Oleynik, Y. Ma, Qi. Liu, W. Sun
    Achieving strictly linear polyethylenes by the NNN-Fe precatalysts finely tuned with different sizes of ortho-cycloalkyl substituents
    Applied Organometalic Chemistry, 2020, V. 34, N 11 , e5937 doi:10.1002/aoc.5937, IF=3.14
  116. T.V. Popova, O.A. Krumkacheva, A.S. Burmakova, A.S. Spitsyna, O.D. Zakharova, V.Al. Lisitskiy, I.A. Kirilyuk, V.N. Silnikov, M. Bowman, E. Bagryanskaya, T. Godovikova
    Protein modification by thiolactone homocysteine chemistry: a multifunctionalized human serum albumin theranostic
    RSC Med. Chem., 2020,11, 1314-1325 doi:10.1039/C9MD00516A
  117. T.V. Popova, O.A. Krumkacheva, A.S. Burmakova, A.S. Spitsyna, O.D. Zakharova, V.Al. Lisitskiy, I.A. Kirilyuk, V.N. Silnikov, M. Bowman, E. Bagryanskaya, T. Godovikova
    Protein modification by thiolactone homocysteine chemistry: a multifunctionalized human serum albumin theranostic
    RSC Med. Chem., 2020,11, 1314-1325 doi:10.1039/C9MD00516A
  118. T.V. Popova, O.A. Krumkacheva, A.S. Burmakova, A.S. Spitsyna, O.D. Zakharova, V.Al. Lisitskiy, I.A. Kirilyuk, V.N. Silnikov, M. Bowman, E. Bagryanskaya, T. Godovikova
    Protein modification by thiolactone homocysteine chemistry: a multifunctionalized human serum albumin theranostic
    RSC Med. Chem., 2020,11, 1314-1325 doi:10.1039/C9MD00516A
  119. T.V. Popova, O.A. Krumkacheva, A.S. Burmakova, A.S. Spitsyna, O.D. Zakharova, V.Al. Lisitskiy, I.A. Kirilyuk, V.N. Silnikov, M. Bowman, E. Bagryanskaya, T. Godovikova
    Protein modification by thiolactone homocysteine chemistry: a multifunctionalized human serum albumin theranostic
    RSC Med. Chem., 2020,11, 1314-1325 doi:10.1039/C9MD00516A
  120. T.V. Popova, O.A. Krumkacheva, A.S. Burmakova, A.S. Spitsyna, O.D. Zakharova, V.Al. Lisitskiy, I.A. Kirilyuk, V.N. Silnikov, M. Bowman, E. Bagryanskaya, T. Godovikova
    Protein modification by thiolactone homocysteine chemistry: a multifunctionalized human serum albumin theranostic
    RSC Med. Chem., 2020,11, 1314-1325 doi:10.1039/C9MD00516A
  121. T.V. Popova, O.A. Krumkacheva, A.S. Burmakova, A.S. Spitsyna, O.D. Zakharova, V.Al. Lisitskiy, I.A. Kirilyuk, V.N. Silnikov, M. Bowman, E. Bagryanskaya, T. Godovikova
    Protein modification by thiolactone homocysteine chemistry: a multifunctionalized human serum albumin theranostic
    RSC Med. Chem., 2020,11, 1314-1325 doi:10.1039/C9MD00516A
  122. T.V. Popova, O.A. Krumkacheva, A.S. Burmakova, A.S. Spitsyna, O.D. Zakharova, V.Al. Lisitskiy, I.A. Kirilyuk, V.N. Silnikov, M. Bowman, E. Bagryanskaya, T. Godovikova
    Protein modification by thiolactone homocysteine chemistry: a multifunctionalized human serum albumin theranostic
    RSC Med. Chem., 2020,11, 1314-1325 doi:10.1039/C9MD00516A
  123. T.V. Popova, O.A. Krumkacheva, A.S. Burmakova, A.S. Spitsyna, O.D. Zakharova, V.Al. Lisitskiy, I.A. Kirilyuk, V.N. Silnikov, M. Bowman, E. Bagryanskaya, T. Godovikova
    Protein modification by thiolactone homocysteine chemistry: a multifunctionalized human serum albumin theranostic
    RSC Med. Chem., 2020,11, 1314-1325 doi:10.1039/C9MD00516A
  124. S. Cherkasov, D. Parkhomenko, A. Genaev, G. Salnikov, M. Edeleva, D. Morozov, T. Rybalova, I. Kirilyuk, S.R-A. Marque, E. Bagryanskaya
    NMR and EPR Study of Homolysis of Diastereomeric Alkoxyamines
    Molecules 2020, 25(21), 5080 doi:10.3390/molecules25215080, IF=3.266
  125. Е.С. Можайцев, К.Ю. Пономарев, О.С. Патрушева, А.В. Медведько, А.И. Далингер, А.Д. Рогачев, Н.И. Комарова, Д.В. Корчагина, Е.В. Суслов, К.П. Волчо, Н.Ф. Салахутдинов, С.З. Вацадзе
    Конъюгаты биспидина и монотерпеноидов как лиганды металлокомплексных катализаторов реакции Анри
    Журнал органической химии. 2020. Т. 56. № 11. С. 1768-1783. doi:10.31857/S0514749220110129, IF=0.624
  126. Е.С. Можайцев, К.Ю. Пономарев, О.С. Патрушева, А.В. Медведько, А.И. Далингер, А.Д. Рогачев, Н.И. Комарова, Д.В. Корчагина, Е.В. Суслов, К.П. Волчо, Н.Ф. Салахутдинов, С.З. Вацадзе
    Конъюгаты биспидина и монотерпеноидов как лиганды металлокомплексных катализаторов реакции Анри
    Журнал органической химии. 2020. Т. 56. № 11. С. 1768-1783. doi:10.31857/S0514749220110129, IF=0.624
  127. Е.С. Можайцев, К.Ю. Пономарев, О.С. Патрушева, А.В. Медведько, А.И. Далингер, А.Д. Рогачев, Н.И. Комарова, Д.В. Корчагина, Е.В. Суслов, К.П. Волчо, Н.Ф. Салахутдинов, С.З. Вацадзе
    Конъюгаты биспидина и монотерпеноидов как лиганды металлокомплексных катализаторов реакции Анри
    Журнал органической химии. 2020. Т. 56. № 11. С. 1768-1783. doi:10.31857/S0514749220110129, IF=0.624
  128. L. Politanskaya, I. Bagryanskaya, E. Tretyakov, Ch. Xic
    Highly efficient synthesis of novel fluorinated 3-amino-2-mercaptobenzothiazole-2(3H)-thione derivatives
    Journal of Fluorine Chemistry, 2020, V.239, 109628 doi:10.1016/j.jfluchem.2020.109628, IF=2.322
  129. B.M. Urbagarova, E.E. Shults, V.V. Taraskin, L.D. Radnaeva, T.N. Petrova, T.V. Rybalova, T.S. Frolova, A.G. Pokrovskii, Ja. Ganbaatar
    Chromones and coumarins from Saposhnikovia divaricata (Turcz.) Schischk. Growing in Buryatia and Mongolia and their cytotoxicity
    Journal of Ethnopharmacology, 2020, V. 261, 1125170 doi:10.1016/j.jep.2019.112517, IF=3.69
  130. B.M. Urbagarova, E.E. Shults, V.V. Taraskin, L.D. Radnaeva, T.N. Petrova, T.V. Rybalova, T.S. Frolova, A.G. Pokrovskii, Ja. Ganbaatar
    Chromones and coumarins from Saposhnikovia divaricata (Turcz.) Schischk. Growing in Buryatia and Mongolia and their cytotoxicity
    Journal of Ethnopharmacology, 2020, V. 261, 1125170 doi:10.1016/j.jep.2019.112517, IF=3.69
  131. B.M. Urbagarova, E.E. Shults, V.V. Taraskin, L.D. Radnaeva, T.N. Petrova, T.V. Rybalova, T.S. Frolova, A.G. Pokrovskii, Ja. Ganbaatar
    Chromones and coumarins from Saposhnikovia divaricata (Turcz.) Schischk. Growing in Buryatia and Mongolia and their cytotoxicity
    Journal of Ethnopharmacology, 2020, V. 261, 1125170 doi:10.1016/j.jep.2019.112517, IF=3.69
  132. B.M. Urbagarova, E.E. Shults, V.V. Taraskin, L.D. Radnaeva, T.N. Petrova, T.V. Rybalova, T.S. Frolova, A.G. Pokrovskii, Ja. Ganbaatar
    Chromones and coumarins from Saposhnikovia divaricata (Turcz.) Schischk. Growing in Buryatia and Mongolia and their cytotoxicity
    Journal of Ethnopharmacology, 2020, V. 261, 1125170 doi:10.1016/j.jep.2019.112517, IF=3.69
  133. B.M. Urbagarova, E.E. Shults, V.V. Taraskin, L.D. Radnaeva, T.N. Petrova, T.V. Rybalova, T.S. Frolova, A.G. Pokrovskii, Ja. Ganbaatar
    Chromones and coumarins from Saposhnikovia divaricata (Turcz.) Schischk. Growing in Buryatia and Mongolia and their cytotoxicity
    Journal of Ethnopharmacology, 2020, V. 261, 1125170 doi:10.1016/j.jep.2019.112517, IF=3.69
  134. D. I. Derevyanko, V. V. Shelkovnikov, V. Y. Kovalskii, I.L. Zilberberg, S.I. Aliev, N. A. Orlova, V. D. Ugozhaev
    The Charge Transfer Complex Formed between the Components of Photopolymer Material as an Internal Sensitizer of Spectral Sensitivity
    ChemistrySelect, 2020, V. 5, N 38, Pp 11939-11947 doi:10.1002/slct.202002163, IF=1.81
  135. D. I. Derevyanko, V. V. Shelkovnikov, V. Y. Kovalskii, I.L. Zilberberg, S.I. Aliev, N. A. Orlova, V. D. Ugozhaev
    The Charge Transfer Complex Formed between the Components of Photopolymer Material as an Internal Sensitizer of Spectral Sensitivity
    ChemistrySelect, 2020, V. 5, N 38, Pp 11939-11947 doi:10.1002/slct.202002163, IF=1.81
  136. D. I. Derevyanko, V. V. Shelkovnikov, V. Y. Kovalskii, I.L. Zilberberg, S.I. Aliev, N. A. Orlova, V. D. Ugozhaev
    The Charge Transfer Complex Formed between the Components of Photopolymer Material as an Internal Sensitizer of Spectral Sensitivity
    ChemistrySelect, 2020, V. 5, N 38, Pp 11939-11947 doi:10.1002/slct.202002163, IF=1.81
  137. М.В. Кручинина, И.О. Светлова, С.А. Курилович, М.В. Шашков, А.С. Соколова, В.Н. Кручинин
    Различия в жирнокислотных профилях мембран эритроцитов, связанные с локализацией опухоли при колоректальном раке (пилотное исследование)
    Экспериментальная и клиническая гастроэнтерология. 2020. № 10 (182). С. 56-64. doi:10.31146/1682-8658-ecg-182-10-56-64
  138. М.В. Кручинина, И.О. Светлова, С.А. Курилович, М.В. Шашков, А.С. Соколова, В.Н. Кручинин
    Различия в жирнокислотных профилях мембран эритроцитов, связанные с локализацией опухоли при колоректальном раке (пилотное исследование)
    Экспериментальная и клиническая гастроэнтерология. 2020. № 10 (182). С. 56-64. doi:10.31146/1682-8658-ecg-182-10-56-64
  139. М.В. Кручинина, И.О. Светлова, С.А. Курилович, М.В. Шашков, А.С. Соколова, В.Н. Кручинин
    Различия в жирнокислотных профилях мембран эритроцитов, связанные с локализацией опухоли при колоректальном раке (пилотное исследование)
    Экспериментальная и клиническая гастроэнтерология. 2020. № 10 (182). С. 56-64. doi:10.31146/1682-8658-ecg-182-10-56-64
  140. М.В. Кручинина, И.О. Светлова, С.А. Курилович, М.В. Шашков, А.С. Соколова, В.Н. Кручинин
    Различия в жирнокислотных профилях мембран эритроцитов, связанные с локализацией опухоли при колоректальном раке (пилотное исследование)
    Экспериментальная и клиническая гастроэнтерология. 2020. № 10 (182). С. 56-64. doi:10.31146/1682-8658-ecg-182-10-56-64
  141. М.В. Кручинина, И.О. Светлова, С.А. Курилович, М.В. Шашков, А.С. Соколова, В.Н. Кручинин
    Различия в жирнокислотных профилях мембран эритроцитов, связанные с локализацией опухоли при колоректальном раке (пилотное исследование)
    Экспериментальная и клиническая гастроэнтерология. 2020. № 10 (182). С. 56-64. doi:10.31146/1682-8658-ecg-182-10-56-64
  142. М.В. Кручинина, А.В. Азгалдян, И.О. Светлова, М.Ф. Осипенко, М.В. Шашков, А.С. Соколова, В.Н. Кручинин
    Озможности использования жирных кислот мембран эритроцитов и сыворотки крови для диагностики болезни крона
    Экспериментальная и клиническая гастроэнтерология. 2020. № 10 (182). С. 46-55. doi:10.31146/1682-8658-ecg-182-10-46-55
  143. М.В. Кручинина, А.В. Азгалдян, И.О. Светлова, М.Ф. Осипенко, М.В. Шашков, А.С. Соколова, В.Н. Кручинин
    Озможности использования жирных кислот мембран эритроцитов и сыворотки крови для диагностики болезни крона
    Экспериментальная и клиническая гастроэнтерология. 2020. № 10 (182). С. 46-55. doi:10.31146/1682-8658-ecg-182-10-46-55
  144. М.В. Кручинина, А.В. Азгалдян, И.О. Светлова, М.Ф. Осипенко, М.В. Шашков, А.С. Соколова, В.Н. Кручинин
    Озможности использования жирных кислот мембран эритроцитов и сыворотки крови для диагностики болезни крона
    Экспериментальная и клиническая гастроэнтерология. 2020. № 10 (182). С. 46-55. doi:10.31146/1682-8658-ecg-182-10-46-55
  145. М.В. Кручинина, А.В. Азгалдян, И.О. Светлова, М.Ф. Осипенко, М.В. Шашков, А.С. Соколова, В.Н. Кручинин
    Озможности использования жирных кислот мембран эритроцитов и сыворотки крови для диагностики болезни крона
    Экспериментальная и клиническая гастроэнтерология. 2020. № 10 (182). С. 46-55. doi:10.31146/1682-8658-ecg-182-10-46-55
  146. М.В. Кручинина, А.В. Азгалдян, И.О. Светлова, М.Ф. Осипенко, М.В. Шашков, А.С. Соколова, В.Н. Кручинин
    Озможности использования жирных кислот мембран эритроцитов и сыворотки крови для диагностики болезни крона
    Экспериментальная и клиническая гастроэнтерология. 2020. № 10 (182). С. 46-55. doi:10.31146/1682-8658-ecg-182-10-46-55
  147. М.В. Кручинина, А.В. Азгалдян, И.О. Светлова, М.Ф. Осипенко, М.В. Шашков, А.С. Соколова, В.Н. Кручинин
    Озможности использования жирных кислот мембран эритроцитов и сыворотки крови для диагностики болезни крона
    Экспериментальная и клиническая гастроэнтерология. 2020. № 10 (182). С. 46-55. doi:10.31146/1682-8658-ecg-182-10-46-55
  148. E. V. Suslov, E. S. Mozhaytsev, D. V. Korchagina, N.I. Bormotov, O. I. Yarovaya, K. P. Volcho, O. A. Serova,A. P. Agafonov, R. A. Maksyutov, L.N. Shishkinab, N F. Salakhutdinov
    New chemical agents based on adamantane–monoterpene conjugates against orthopoxvirus infections
    RSC Medicinal Chemistry, 2020, V. 11, N. 10, Pp 1185-1195 doi:10.1039/D0MD00108B
  149. E. V. Suslov, E. S. Mozhaytsev, D. V. Korchagina, N.I. Bormotov, O. I. Yarovaya, K. P. Volcho, O. A. Serova,A. P. Agafonov, R. A. Maksyutov, L.N. Shishkinab, N F. Salakhutdinov
    New chemical agents based on adamantane–monoterpene conjugates against orthopoxvirus infections
    RSC Medicinal Chemistry, 2020, V. 11, N. 10, Pp 1185-1195 doi:10.1039/D0MD00108B
  150. E. V. Suslov, E. S. Mozhaytsev, D. V. Korchagina, N.I. Bormotov, O. I. Yarovaya, K. P. Volcho, O. A. Serova,A. P. Agafonov, R. A. Maksyutov, L.N. Shishkinab, N F. Salakhutdinov
    New chemical agents based on adamantane–monoterpene conjugates against orthopoxvirus infections
    RSC Medicinal Chemistry, 2020, V. 11, N. 10, Pp 1185-1195 doi:10.1039/D0MD00108B
  151. E. V. Suslov, E. S. Mozhaytsev, D. V. Korchagina, N.I. Bormotov, O. I. Yarovaya, K. P. Volcho, O. A. Serova,A. P. Agafonov, R. A. Maksyutov, L.N. Shishkinab, N F. Salakhutdinov
    New chemical agents based on adamantane–monoterpene conjugates against orthopoxvirus infections
    RSC Medicinal Chemistry, 2020, V. 11, N. 10, Pp 1185-1195 doi:10.1039/D0MD00108B
  152. E. V. Suslov, E. S. Mozhaytsev, D. V. Korchagina, N.I. Bormotov, O. I. Yarovaya, K. P. Volcho, O. A. Serova,A. P. Agafonov, R. A. Maksyutov, L.N. Shishkinab, N F. Salakhutdinov
    New chemical agents based on adamantane–monoterpene conjugates against orthopoxvirus infections
    RSC Medicinal Chemistry, 2020, V. 11, N. 10, Pp 1185-1195 doi:10.1039/D0MD00108B
  153. E. V. Suslov, E. S. Mozhaytsev, D. V. Korchagina, N.I. Bormotov, O. I. Yarovaya, K. P. Volcho, O. A. Serova,A. P. Agafonov, R. A. Maksyutov, L.N. Shishkinab, N F. Salakhutdinov
    New chemical agents based on adamantane–monoterpene conjugates against orthopoxvirus infections
    RSC Medicinal Chemistry, 2020, V. 11, N. 10, Pp 1185-1195 doi:10.1039/D0MD00108B
  154. T. Schulte, B. M. Sala, J. Nilvebrant, P.-Å. Nygren, A. Achour, A. Shernyukov, T. Agback, P. Agback
    Assigned NMR backbone resonances of the ligand-binding region domain of the pneumococcal serine-rich repeat protein (PsrP-BR) reveal a rigid monomer in solution
    Biomolecular NMR Assignments, 2020, V.14, N 2, Pp 195-200 doi:10.1007/s12104-020-09944-9, IF=0.677
  155. T. Schulte, B. M. Sala, J. Nilvebrant, P.-Å. Nygren, A. Achour, A. Shernyukov, T. Agback, P. Agback
    Assigned NMR backbone resonances of the ligand-binding region domain of the pneumococcal serine-rich repeat protein (PsrP-BR) reveal a rigid monomer in solution
    Biomolecular NMR Assignments, 2020, V.14, N 2, Pp 195-200 doi:10.1007/s12104-020-09944-9, IF=0.677
  156. T. Schulte, B. M. Sala, J. Nilvebrant, P.-Å. Nygren, A. Achour, A. Shernyukov, T. Agback, P. Agback
    Assigned NMR backbone resonances of the ligand-binding region domain of the pneumococcal serine-rich repeat protein (PsrP-BR) reveal a rigid monomer in solution
    Biomolecular NMR Assignments, 2020, V.14, N 2, Pp 195-200 doi:10.1007/s12104-020-09944-9, IF=0.677
  157. T. Schulte, B. M. Sala, J. Nilvebrant, P.-Å. Nygren, A. Achour, A. Shernyukov, T. Agback, P. Agback
    Assigned NMR backbone resonances of the ligand-binding region domain of the pneumococcal serine-rich repeat protein (PsrP-BR) reveal a rigid monomer in solution
    Biomolecular NMR Assignments, 2020, V.14, N 2, Pp 195-200 doi:10.1007/s12104-020-09944-9, IF=0.677
  158. T. Schulte, B. M. Sala, J. Nilvebrant, P.-Å. Nygren, A. Achour, A. Shernyukov, T. Agback, P. Agback
    Assigned NMR backbone resonances of the ligand-binding region domain of the pneumococcal serine-rich repeat protein (PsrP-BR) reveal a rigid monomer in solution
    Biomolecular NMR Assignments, 2020, V.14, N 2, Pp 195-200 doi:10.1007/s12104-020-09944-9, IF=0.677
  159. T. Schulte, B. M. Sala, J. Nilvebrant, P.-Å. Nygren, A. Achour, A. Shernyukov, T. Agback, P. Agback
    Assigned NMR backbone resonances of the ligand-binding region domain of the pneumococcal serine-rich repeat protein (PsrP-BR) reveal a rigid monomer in solution
    Biomolecular NMR Assignments, 2020, V.14, N 2, Pp 195-200 doi:10.1007/s12104-020-09944-9, IF=0.677
  160. T. Schulte, B. M. Sala, J. Nilvebrant, P.-Å. Nygren, A. Achour, A. Shernyukov, T. Agback, P. Agback
    Assigned NMR backbone resonances of the ligand-binding region domain of the pneumococcal serine-rich repeat protein (PsrP-BR) reveal a rigid monomer in solution
    Biomolecular NMR Assignments, 2020, V.14, N 2, Pp 195-200 doi:10.1007/s12104-020-09944-9, IF=0.677
  161. T. Schulte, B. M. Sala, J. Nilvebrant, P.-Å. Nygren, A. Achour, A. Shernyukov, T. Agback, P. Agback
    Assigned NMR backbone resonances of the ligand-binding region domain of the pneumococcal serine-rich repeat protein (PsrP-BR) reveal a rigid monomer in solution
    Biomolecular NMR Assignments, 2020, V.14, N 2, Pp 195-200 doi:10.1007/s12104-020-09944-9, IF=0.677
  162. S.A. Popov, M.D. Semenova, D.S. Baev, T.S. Frolova, M.A. Shestopalov, Ch. Wang, Zh. Qi, E.E. Shults, M. Turks
    Synthesis and cytotoxicity of hybrids of 1,3,4- or 1,2,5-oxadiazoles tethered from ursane and lupane core with 1,2,3-triazole
    Steroids, 2020, V. 162, , 108698 doi:10.1016/j.steroids.2020.108698, IF=1.948
  163. S.A. Popov, M.D. Semenova, D.S. Baev, T.S. Frolova, M.A. Shestopalov, Ch. Wang, Zh. Qi, E.E. Shults, M. Turks
    Synthesis and cytotoxicity of hybrids of 1,3,4- or 1,2,5-oxadiazoles tethered from ursane and lupane core with 1,2,3-triazole
    Steroids, 2020, V. 162, , 108698 doi:10.1016/j.steroids.2020.108698, IF=1.948
  164. S.A. Popov, M.D. Semenova, D.S. Baev, T.S. Frolova, M.A. Shestopalov, Ch. Wang, Zh. Qi, E.E. Shults, M. Turks
    Synthesis and cytotoxicity of hybrids of 1,3,4- or 1,2,5-oxadiazoles tethered from ursane and lupane core with 1,2,3-triazole
    Steroids, 2020, V. 162, , 108698 doi:10.1016/j.steroids.2020.108698, IF=1.948
  165. S.A. Popov, M.D. Semenova, D.S. Baev, T.S. Frolova, M.A. Shestopalov, Ch. Wang, Zh. Qi, E.E. Shults, M. Turks
    Synthesis and cytotoxicity of hybrids of 1,3,4- or 1,2,5-oxadiazoles tethered from ursane and lupane core with 1,2,3-triazole
    Steroids, 2020, V. 162, , 108698 doi:10.1016/j.steroids.2020.108698, IF=1.948
  166. S.A. Popov, M.D. Semenova, D.S. Baev, T.S. Frolova, M.A. Shestopalov, Ch. Wang, Zh. Qi, E.E. Shults, M. Turks
    Synthesis and cytotoxicity of hybrids of 1,3,4- or 1,2,5-oxadiazoles tethered from ursane and lupane core with 1,2,3-triazole
    Steroids, 2020, V. 162, , 108698 doi:10.1016/j.steroids.2020.108698, IF=1.948
  167. S.A. Popov, M. D. Semenova, D. S. Baev, T. S. Frolova, E. E.Shults,Ch.Wang, M.Turks
    Synthesis of cytotoxic urs-12-ene- and 28-nor-urs-12-ene- type conjugates with amino- and mercapto-1,3,4-oxadiazoles and mercapto-1,2,4-triazoles
    Steroids, 2020, V. 153, 108524 doi:10.1016/j.steroids.2019.108524, IF=1.948
  168. S.A. Popov, M. D. Semenova, D. S. Baev, T. S. Frolova, E. E.Shults,Ch.Wang, M.Turks
    Synthesis of cytotoxic urs-12-ene- and 28-nor-urs-12-ene- type conjugates with amino- and mercapto-1,3,4-oxadiazoles and mercapto-1,2,4-triazoles
    Steroids, 2020, V. 153, 108524 doi:10.1016/j.steroids.2019.108524, IF=1.948
  169. N.E. Sannikova, O. Timofeev, A.S. Chubarov, N.Sh. Lebedeva, A.S. Semeikin, I.A. Kirilyuk, Yu.P. Tsentalovich, M.V. Fedin, E.G. Bagryanskaya, O.A. Krumkacheva
    Application of EPR to porphyrin-protein agents for photodynamic therapy
    Journal of Photochemistry and Photobiology B: Biology, 2020, V. 211, 112008 doi:10.1016/j.jphotobiol.2020.112008, IF=4.383
  170. N.E. Sannikova, O. Timofeev, A.S. Chubarov, N.Sh. Lebedeva, A.S. Semeikin, I.A. Kirilyuk, Yu.P. Tsentalovich, M.V. Fedin, E.G. Bagryanskaya, O.A. Krumkacheva
    Application of EPR to porphyrin-protein agents for photodynamic therapy
    Journal of Photochemistry and Photobiology B: Biology, 2020, V. 211, 112008 doi:10.1016/j.jphotobiol.2020.112008, IF=4.383
  171. N.E. Sannikova, O. Timofeev, A.S. Chubarov, N.Sh. Lebedeva, A.S. Semeikin, I.A. Kirilyuk, Yu.P. Tsentalovich, M.V. Fedin, E.G. Bagryanskaya, O.A. Krumkacheva
    Application of EPR to porphyrin-protein agents for photodynamic therapy
    Journal of Photochemistry and Photobiology B: Biology, 2020, V. 211, 112008 doi:10.1016/j.jphotobiol.2020.112008, IF=4.383
  172. N.E. Sannikova, O. Timofeev, A.S. Chubarov, N.Sh. Lebedeva, A.S. Semeikin, I.A. Kirilyuk, Yu.P. Tsentalovich, M.V. Fedin, E.G. Bagryanskaya, O.A. Krumkacheva
    Application of EPR to porphyrin-protein agents for photodynamic therapy
    Journal of Photochemistry and Photobiology B: Biology, 2020, V. 211, 112008 doi:10.1016/j.jphotobiol.2020.112008, IF=4.383
  173. N.E. Sannikova, O. Timofeev, A.S. Chubarov, N.Sh. Lebedeva, A.S. Semeikin, I.A. Kirilyuk, Yu.P. Tsentalovich, M.V. Fedin, E.G. Bagryanskaya, O.A. Krumkacheva
    Application of EPR to porphyrin-protein agents for photodynamic therapy
    Journal of Photochemistry and Photobiology B: Biology, 2020, V. 211, 112008 doi:10.1016/j.jphotobiol.2020.112008, IF=4.383
  174. N.E. Sannikova, O. Timofeev, A.S. Chubarov, N.Sh. Lebedeva, A.S. Semeikin, I.A. Kirilyuk, Yu.P. Tsentalovich, M.V. Fedin, E.G. Bagryanskaya, O.A. Krumkacheva
    Application of EPR to porphyrin-protein agents for photodynamic therapy
    Journal of Photochemistry and Photobiology B: Biology, 2020, V. 211, 112008 doi:10.1016/j.jphotobiol.2020.112008, IF=4.383
  175. N.E. Sannikova, O. Timofeev, A.S. Chubarov, N.Sh. Lebedeva, A.S. Semeikin, I.A. Kirilyuk, Yu.P. Tsentalovich, M.V. Fedin, E.G. Bagryanskaya, O.A. Krumkacheva
    Application of EPR to porphyrin-protein agents for photodynamic therapy
    Journal of Photochemistry and Photobiology B: Biology, 2020, V. 211, 112008 doi:10.1016/j.jphotobiol.2020.112008, IF=4.383
  176. Т.В. Баулина, И.Ю. Кудрявцев, А.В. Артемьев, И.Ю. Багрянская, М.П. Пасечник, В.К. Брель
    Синтез, молекулярная и кристаллическая структура трис[2-(карбамоилметокси)фенил]- фосфиноксида
    Журнал общей химии. 2020. Т. 90. № 10. С. 1506-1511. doi: 10.31857/S0044460X20100054 (Synthesis, Molecular, and Crystal Structure of Tris(2-carbamoylmethoxyphenyl)phosphine Oxide/ T. V. Baulina, I. Yu. Kudryavtsev, A. V. Artem’ev, I. Yu. Bagryanskaya, M. P. Pasechnik, V. K. Brel// Russian Journal of General Chemistry, 2020, V. 90, N 10, Pp 1840-1844 doi:10.1134/S1070363220100059), IF=0.716
  177. Т.В. Баулина, И.Ю. Кудрявцев, А.В. Артемьев, И.Ю. Багрянская, М.П. Пасечник, В.К. Брель
    Синтез, молекулярная и кристаллическая структура трис[2-(карбамоилметокси)фенил]- фосфиноксида
    Журнал общей химии. 2020. Т. 90. № 10. С. 1506-1511. doi: 10.31857/S0044460X20100054 (Synthesis, Molecular, and Crystal Structure of Tris(2-carbamoylmethoxyphenyl)phosphine Oxide/ T. V. Baulina, I. Yu. Kudryavtsev, A. V. Artem’ev, I. Yu. Bagryanskaya, M. P. Pasechnik, V. K. Brel// Russian Journal of General Chemistry, 2020, V. 90, N 10, Pp 1840-1844 doi:10.1134/S1070363220100059), IF=0.716
  178. Т.В. Баулина, И.Ю. Кудрявцев, А.В. Артемьев, И.Ю. Багрянская, М.П. Пасечник, В.К. Брель
    Синтез, молекулярная и кристаллическая структура трис[2-(карбамоилметокси)фенил]- фосфиноксида
    Журнал общей химии. 2020. Т. 90. № 10. С. 1506-1511. doi: 10.31857/S0044460X20100054 (Synthesis, Molecular, and Crystal Structure of Tris(2-carbamoylmethoxyphenyl)phosphine Oxide/ T. V. Baulina, I. Yu. Kudryavtsev, A. V. Artem’ev, I. Yu. Bagryanskaya, M. P. Pasechnik, V. K. Brel// Russian Journal of General Chemistry, 2020, V. 90, N 10, Pp 1840-1844 doi:10.1134/S1070363220100059), IF=0.716
  179. Т.В. Баулина, И.Ю. Кудрявцев, А.В. Артемьев, И.Ю. Багрянская, М.П. Пасечник, В.К. Брель
    Синтез, молекулярная и кристаллическая структура трис[2-(карбамоилметокси)фенил]- фосфиноксида
    Журнал общей химии. 2020. Т. 90. № 10. С. 1506-1511. doi: 10.31857/S0044460X20100054 (Synthesis, Molecular, and Crystal Structure of Tris(2-carbamoylmethoxyphenyl)phosphine Oxide/ T. V. Baulina, I. Yu. Kudryavtsev, A. V. Artem’ev, I. Yu. Bagryanskaya, M. P. Pasechnik, V. K. Brel// Russian Journal of General Chemistry, 2020, V. 90, N 10, Pp 1840-1844 doi:10.1134/S1070363220100059), IF=0.716
  180. Т.В. Баулина, И.Ю. Кудрявцев, А.В. Артемьев, И.Ю. Багрянская, М.П. Пасечник, В.К. Брель
    Синтез, молекулярная и кристаллическая структура трис[2-(карбамоилметокси)фенил]- фосфиноксида
    Журнал общей химии. 2020. Т. 90. № 10. С. 1506-1511. doi: 10.31857/S0044460X20100054 (Synthesis, Molecular, and Crystal Structure of Tris(2-carbamoylmethoxyphenyl)phosphine Oxide/ T. V. Baulina, I. Yu. Kudryavtsev, A. V. Artem’ev, I. Yu. Bagryanskaya, M. P. Pasechnik, V. K. Brel// Russian Journal of General Chemistry, 2020, V. 90, N 10, Pp 1840-1844 doi:10.1134/S1070363220100059), IF=0.716
  181. A. D. Kuimov,Ch.S.Becker,I.P.Koskin, D. E.Zhaguparov,A.A.Sonina,I.K.Shundrina,P.S.Sherin,M. S.Kazantsev
    2-((9H-fluoren-9-ylidene)methyl)pyridine as a new functional block for aggregation induced emissive and stimuli-responsive materials
    Dyes and Pigments, 2020, V. 181, 108595 doi:10.1016/j.dyepig.2020.108595, IF=4.613
  182. A. D. Kuimov,Ch.S.Becker,I.P.Koskin, D. E.Zhaguparov,A.A.Sonina,I.K.Shundrina,P.S.Sherin,M. S.Kazantsev
    2-((9H-fluoren-9-ylidene)methyl)pyridine as a new functional block for aggregation induced emissive and stimuli-responsive materials
    Dyes and Pigments, 2020, V. 181, 108595 doi:10.1016/j.dyepig.2020.108595, IF=4.613
  183. Т.Е. Кокина, Л.А. Глинская, Д.А. Пирязев, Е.С. Васильев, Л.А. Шелудякова, М.И. Рахманова, А.В. Ткачев
    Комплекс Zn(ii) с хиральным нопинан-аннелированным 9,9-би-4,5-диазафлуоренилиденом: синтез, структура, свойства
    Журнал структурной химии. 2020. Т. 61. № 10. С. 1690-1699. doi:10.26902/JSC_id61853, IF=0.745
  184. Т.Е. Кокина, Л.А. Глинская, Д.А. Пирязев, Е.С. Васильев, Л.А. Шелудякова, М.И. Рахманова, А.В. Ткачев
    Комплекс Zn(ii) с хиральным нопинан-аннелированным 9,9-би-4,5-диазафлуоренилиденом: синтез, структура, свойства
    Журнал структурной химии. 2020. Т. 61. № 10. С. 1690-1699. doi:10.26902/JSC_id61853, IF=0.745
  185. Т.Е. Кокина, Л.А. Глинская, Д.А. Пирязев, Е.С. Васильев, Л.А. Шелудякова, М.И. Рахманова, А.В. Ткачев
    Комплекс Zn(ii) с хиральным нопинан-аннелированным 9,9-би-4,5-диазафлуоренилиденом: синтез, структура, свойства
    Журнал структурной химии. 2020. Т. 61. № 10. С. 1690-1699. doi:10.26902/JSC_id61853, IF=0.745
  186. Т.Е. Кокина, Л.А. Глинская, Д.А. Пирязев, Е.С. Васильев, Л.А. Шелудякова, М.И. Рахманова, А.В. Ткачев
    Комплекс Zn(ii) с хиральным нопинан-аннелированным 9,9-би-4,5-диазафлуоренилиденом: синтез, структура, свойства
    Журнал структурной химии. 2020. Т. 61. № 10. С. 1690-1699. doi:10.26902/JSC_id61853, IF=0.745
  187. Т.Е. Кокина, Л.А. Глинская, Д.А. Пирязев, Е.С. Васильев, Л.А. Шелудякова, М.И. Рахманова, А.В. Ткачев
    Комплекс Zn(ii) с хиральным нопинан-аннелированным 9,9-би-4,5-диазафлуоренилиденом: синтез, структура, свойства
    Журнал структурной химии. 2020. Т. 61. № 10. С. 1690-1699. doi:10.26902/JSC_id61853, IF=0.745
  188. Н.А. Шеховцов, К.А. Виноградова, Е.Б. Николаенкова, В.П. Кривопалов, М.Б. Бушуев
    Двойная эмиссия 2-амино-4-метилпиримидина: теоретическое исследование
    Журнал структурной химии. 2020. Т. 61. № 10. С. 1605-1613. doi:10.26902/JSC_id61806, IF=0.745
  189. Н.А. Шеховцов, К.А. Виноградова, Е.Б. Николаенкова, В.П. Кривопалов, М.Б. Бушуев
    Двойная эмиссия 2-амино-4-метилпиримидина: теоретическое исследование
    Журнал структурной химии. 2020. Т. 61. № 10. С. 1605-1613. doi:10.26902/JSC_id61806, IF=0.745
  190. Н.А. Шеховцов, К.А. Виноградова, Е.Б. Николаенкова, В.П. Кривопалов, М.Б. Бушуев
    Двойная эмиссия 2-амино-4-метилпиримидина: теоретическое исследование
    Журнал структурной химии. 2020. Т. 61. № 10. С. 1605-1613. doi:10.26902/JSC_id61806, IF=0.745
  191. Н.Ф. Салахутдинов, С.С. Лаев, Д.С. Сергеевичев
    Модуляторы нарушения гемопоэза (обзор)
    Химия в интересах устойчивого развития. 2020. Т. 28. № 4. С. 343-365. (Modulators of hematopoiesis disorders (a review)/ Salakhutdinov N. F., Laev S. S., Sergeevichev D. S.// Chemistry for Sustainable Development, 2020, V. 28, N 4, Pp. 343-365 doi:10.15372/KhUR2020239)
  192. E.D. Gladkova, I.V. Nechepurenko, R.A. Bredikhin, A.A. Chepanova, A.L. Zakharenko, O.A. Luzina, E.S. Ilina, N.S. Dyrkheeva, E.M. Mamontova, R.O. Anarbaev, J. Reynisson, K.P. Volcho, N.F. Salakhutdinov, O.I. Lavrik
    The First Berberine-Based Inhibitors of Tyrosyl-DNA Phosphodiesterase 1 (Tdp1), an Important DNA Repair Enzyme
    Int. J. Mol. Sci. 2020, 21(19), 7162 doi:10.3390/ijms21197162, IF=4.556
  193. E.D. Gladkova, I.V. Nechepurenko, R.A. Bredikhin, A.A. Chepanova, A.L. Zakharenko, O.A. Luzina, E.S. Ilina, N.S. Dyrkheeva, E.M. Mamontova, R.O. Anarbaev, J. Reynisson, K.P. Volcho, N.F. Salakhutdinov, O.I. Lavrik
    The First Berberine-Based Inhibitors of Tyrosyl-DNA Phosphodiesterase 1 (Tdp1), an Important DNA Repair Enzyme
    Int. J. Mol. Sci. 2020, 21(19), 7162 doi:10.3390/ijms21197162, IF=4.556
  194. E.D. Gladkova, I.V. Nechepurenko, R.A. Bredikhin, A.A. Chepanova, A.L. Zakharenko, O.A. Luzina, E.S. Ilina, N.S. Dyrkheeva, E.M. Mamontova, R.O. Anarbaev, J. Reynisson, K.P. Volcho, N.F. Salakhutdinov, O.I. Lavrik
    The First Berberine-Based Inhibitors of Tyrosyl-DNA Phosphodiesterase 1 (Tdp1), an Important DNA Repair Enzyme
    Int. J. Mol. Sci. 2020, 21(19), 7162 doi:10.3390/ijms21197162, IF=4.556
  195. E.D. Gladkova, I.V. Nechepurenko, R.A. Bredikhin, A.A. Chepanova, A.L. Zakharenko, O.A. Luzina, E.S. Ilina, N.S. Dyrkheeva, E.M. Mamontova, R.O. Anarbaev, J. Reynisson, K.P. Volcho, N.F. Salakhutdinov, O.I. Lavrik
    The First Berberine-Based Inhibitors of Tyrosyl-DNA Phosphodiesterase 1 (Tdp1), an Important DNA Repair Enzyme
    Int. J. Mol. Sci. 2020, 21(19), 7162 doi:10.3390/ijms21197162, IF=4.556
  196. E.D. Gladkova, I.V. Nechepurenko, R.A. Bredikhin, A.A. Chepanova, A.L. Zakharenko, O.A. Luzina, E.S. Ilina, N.S. Dyrkheeva, E.M. Mamontova, R.O. Anarbaev, J. Reynisson, K.P. Volcho, N.F. Salakhutdinov, O.I. Lavrik
    The First Berberine-Based Inhibitors of Tyrosyl-DNA Phosphodiesterase 1 (Tdp1), an Important DNA Repair Enzyme
    Int. J. Mol. Sci. 2020, 21(19), 7162 doi:10.3390/ijms21197162, IF=4.556
  197. E.D. Gladkova, I.V. Nechepurenko, R.A. Bredikhin, A.A. Chepanova, A.L. Zakharenko, O.A. Luzina, E.S. Ilina, N.S. Dyrkheeva, E.M. Mamontova, R.O. Anarbaev, J. Reynisson, K.P. Volcho, N.F. Salakhutdinov, O.I. Lavrik
    The First Berberine-Based Inhibitors of Tyrosyl-DNA Phosphodiesterase 1 (Tdp1), an Important DNA Repair Enzyme
    Int. J. Mol. Sci. 2020, 21(19), 7162 doi:10.3390/ijms21197162, IF=4.556
  198. E.D. Gladkova, I.V. Nechepurenko, R.A. Bredikhin, A.A. Chepanova, A.L. Zakharenko, O.A. Luzina, E.S. Ilina, N.S. Dyrkheeva, E.M. Mamontova, R.O. Anarbaev, J. Reynisson, K.P. Volcho, N.F. Salakhutdinov, O.I. Lavrik
    The First Berberine-Based Inhibitors of Tyrosyl-DNA Phosphodiesterase 1 (Tdp1), an Important DNA Repair Enzyme
    Int. J. Mol. Sci. 2020, 21(19), 7162 doi:10.3390/ijms21197162, IF=4.556
  199. E.D. Gladkova, I.V. Nechepurenko, R.A. Bredikhin, A.A. Chepanova, A.L. Zakharenko, O.A. Luzina, E.S. Ilina, N.S. Dyrkheeva, E.M. Mamontova, R.O. Anarbaev, J. Reynisson, K.P. Volcho, N.F. Salakhutdinov, O.I. Lavrik
    The First Berberine-Based Inhibitors of Tyrosyl-DNA Phosphodiesterase 1 (Tdp1), an Important DNA Repair Enzyme
    Int. J. Mol. Sci. 2020, 21(19), 7162 doi:10.3390/ijms21197162, IF=4.556
  200. M.P. Davydova, I.Yu. Bagryanskaya, I.A. Bauer, M.I. Rakhmanova, V.P. Morgalyuk, V.K. Brel, A.V. Artem'ev
    Green- and red-phosphorescent Mn(II) iodide complexes derived from 1,3-bis(diphenylphosphinyl)propane
    Polyhedron, 2020, V. 188, 114706 doi:10.1016/j.poly.2020.114706, IF=2.343
  201. M.P. Davydova, I.Yu. Bagryanskaya, I.A. Bauer, M.I. Rakhmanova, V.P. Morgalyuk, V.K. Brel, A.V. Artem'ev
    Green- and red-phosphorescent Mn(II) iodide complexes derived from 1,3-bis(diphenylphosphinyl)propane
    Polyhedron, 2020, V. 188, 114706 doi:10.1016/j.poly.2020.114706, IF=2.343
  202. M.P. Davydova, I.Yu. Bagryanskaya, I.A. Bauer, M.I. Rakhmanova, V.P. Morgalyuk, V.K. Brel, A.V. Artem'ev
    Green- and red-phosphorescent Mn(II) iodide complexes derived from 1,3-bis(diphenylphosphinyl)propane
    Polyhedron, 2020, V. 188, 114706 doi:10.1016/j.poly.2020.114706, IF=2.343
  203. M.P. Davydova, I.Yu. Bagryanskaya, I.A. Bauer, M.I. Rakhmanova, V.P. Morgalyuk, V.K. Brel, A.V. Artem'ev
    Green- and red-phosphorescent Mn(II) iodide complexes derived from 1,3-bis(diphenylphosphinyl)propane
    Polyhedron, 2020, V. 188, 114706 doi:10.1016/j.poly.2020.114706, IF=2.343
  204. M.P. Davydova, I.Yu. Bagryanskaya, I.A. Bauer, M.I. Rakhmanova, V.P. Morgalyuk, V.K. Brel, A.V. Artem'ev
    Green- and red-phosphorescent Mn(II) iodide complexes derived from 1,3-bis(diphenylphosphinyl)propane
    Polyhedron, 2020, V. 188, 114706 doi:10.1016/j.poly.2020.114706, IF=2.343
  205. M.P. Davydova, I.Yu. Bagryanskaya, I.A. Bauer, M.I. Rakhmanova, V.P. Morgalyuk, V.K. Brel, A.V. Artem'ev
    Green- and red-phosphorescent Mn(II) iodide complexes derived from 1,3-bis(diphenylphosphinyl)propane
    Polyhedron, 2020, V. 188, 114706 doi:10.1016/j.poly.2020.114706, IF=2.343
  206. Yu.S. Demidova, E.S. Mozhaitsev, E.V. Suslov, A.A. Nefedov, A.A. Saraeva, K.P. Volcho, N.F. Salakhutdinov, A. Simakov, I.L. Simakova, D.Yu. Murzin
    Menthylamine synthesis via gold-catalyzed hydrogenation of menthone oxime
    Applied Catalysis A: General, 2020, V. 605, 117799 doi:10.1016/j.apcata.2020.117799, IF=5.6
  207. Yu.S. Demidova, E.S. Mozhaitsev, E.V. Suslov, A.A. Nefedov, A.A. Saraeva, K.P. Volcho, N.F. Salakhutdinov, A. Simakov, I.L. Simakova, D.Yu. Murzin
    Menthylamine synthesis via gold-catalyzed hydrogenation of menthone oxime
    Applied Catalysis A: General, 2020, V. 605, 117799 doi:10.1016/j.apcata.2020.117799, IF=5.6
  208. Yu.S. Demidova, E.S. Mozhaitsev, E.V. Suslov, A.A. Nefedov, A.A. Saraeva, K.P. Volcho, N.F. Salakhutdinov, A. Simakov, I.L. Simakova, D.Yu. Murzin
    Menthylamine synthesis via gold-catalyzed hydrogenation of menthone oxime
    Applied Catalysis A: General, 2020, V. 605, 117799 doi:10.1016/j.apcata.2020.117799, IF=5.6
  209. Yu.S. Demidova, E.S. Mozhaitsev, E.V. Suslov, A.A. Nefedov, A.A. Saraeva, K.P. Volcho, N.F. Salakhutdinov, A. Simakov, I.L. Simakova, D.Yu. Murzin
    Menthylamine synthesis via gold-catalyzed hydrogenation of menthone oxime
    Applied Catalysis A: General, 2020, V. 605, 117799 doi:10.1016/j.apcata.2020.117799, IF=5.6
  210. Yu.S. Demidova, E.S. Mozhaitsev, E.V. Suslov, A.A. Nefedov, A.A. Saraeva, K.P. Volcho, N.F. Salakhutdinov, A. Simakov, I.L. Simakova, D.Yu. Murzin
    Menthylamine synthesis via gold-catalyzed hydrogenation of menthone oxime
    Applied Catalysis A: General, 2020, V. 605, 117799 doi:10.1016/j.apcata.2020.117799, IF=5.6
  211. V. Romanov, E. Tretyakov, G. Selivanova, J. Li, I. Bagryanskaya, A. Makarov, D. Luneau
    Synthesis and Structure of Fluorinated (Benzo[d]imidazol-2-yl)methanols: Bench Compounds for Diverse Applications
    Crystals 2020, 10(9), 786 doi:10.3390/cryst10090786, IF=2.404
  212. V. Romanov, E. Tretyakov, G. Selivanova, J. Li, I. Bagryanskaya, A. Makarov, D. Luneau
    Synthesis and Structure of Fluorinated (Benzo[d]imidazol-2-yl)methanols: Bench Compounds for Diverse Applications
    Crystals 2020, 10(9), 786 doi:10.3390/cryst10090786, IF=2.404
  213. V.N. Davydova, I.V. Sorokina, A.V. Volod’ko, E.V. Sokolova, M.S. Borisova, I.M. Yermak
    The Comparative Immunotropic Activity of Carrageenan, Chitosan and Their Complexes
    Mar. Drugs 2020, 18(9), 458 doi:10.3390/md18090458, IF=4.72
  214. V.N. Davydova, I.V. Sorokina, A.V. Volod’ko, E.V. Sokolova, M.S. Borisova, I.M. Yermak
    The Comparative Immunotropic Activity of Carrageenan, Chitosan and Their Complexes
    Mar. Drugs 2020, 18(9), 458 doi:10.3390/md18090458, IF=4.72
  215. V.N. Davydova, I.V. Sorokina, A.V. Volod’ko, E.V. Sokolova, M.S. Borisova, I.M. Yermak
    The Comparative Immunotropic Activity of Carrageenan, Chitosan and Their Complexes
    Mar. Drugs 2020, 18(9), 458 doi:10.3390/md18090458, IF=4.72
  216. V.N. Davydova, I.V. Sorokina, A.V. Volod’ko, E.V. Sokolova, M.S. Borisova, I.M. Yermak
    The Comparative Immunotropic Activity of Carrageenan, Chitosan and Their Complexes
    Mar. Drugs 2020, 18(9), 458 doi:10.3390/md18090458, IF=4.72
  217. M. Han, Q. Zhang, I.I. Oleynik, H. Suo, I.V. Oleynik, G.A. Solan, Ya. Ma, T. Liang, Wen-Hua. Sun
    Adjusting Ortho-Cycloalkyl Ring Size in a Cycloheptyl-Fused N,N,N-Iron Catalyst as Means to Control Catalytic Activity and Polyethylene Properties
    Catalysts 2020, 10(9), 1002 doi:10.3390/catal10091002, IF=3.519
  218. M. Han, Q. Zhang, I.I. Oleynik, H. Suo, I.V. Oleynik, G.A. Solan, Ya. Ma, T. Liang, Wen-Hua. Sun
    Adjusting Ortho-Cycloalkyl Ring Size in a Cycloheptyl-Fused N,N,N-Iron Catalyst as Means to Control Catalytic Activity and Polyethylene Properties
    Catalysts 2020, 10(9), 1002 doi:10.3390/catal10091002, IF=3.519
  219. M. Han, Q. Zhang, I.I. Oleynik, H. Suo, I.V. Oleynik, G.A. Solan, Ya. Ma, T. Liang, Wen-Hua. Sun
    Adjusting Ortho-Cycloalkyl Ring Size in a Cycloheptyl-Fused N,N,N-Iron Catalyst as Means to Control Catalytic Activity and Polyethylene Properties
    Catalysts 2020, 10(9), 1002 doi:10.3390/catal10091002, IF=3.519
  220. M. Han, Q. Zhang, I.I. Oleynik, H. Suo, I.V. Oleynik, G.A. Solan, Ya. Ma, T. Liang, Wen-Hua. Sun
    Adjusting Ortho-Cycloalkyl Ring Size in a Cycloheptyl-Fused N,N,N-Iron Catalyst as Means to Control Catalytic Activity and Polyethylene Properties
    Catalysts 2020, 10(9), 1002 doi:10.3390/catal10091002, IF=3.519
  221. M. Han, Q. Zhang, I.I. Oleynik, H. Suo, I.V. Oleynik, G.A. Solan, Ya. Ma, T. Liang, Wen-Hua. Sun
    Adjusting Ortho-Cycloalkyl Ring Size in a Cycloheptyl-Fused N,N,N-Iron Catalyst as Means to Control Catalytic Activity and Polyethylene Properties
    Catalysts 2020, 10(9), 1002 doi:10.3390/catal10091002, IF=3.519
  222. M. Han, Q. Zhang, I.I. Oleynik, H. Suo, I.V. Oleynik, G.A. Solan, Ya. Ma, T. Liang, Wen-Hua. Sun
    Adjusting Ortho-Cycloalkyl Ring Size in a Cycloheptyl-Fused N,N,N-Iron Catalyst as Means to Control Catalytic Activity and Polyethylene Properties
    Catalysts 2020, 10(9), 1002 doi:10.3390/catal10091002, IF=3.519
  223. M. Han, Q. Zhang, I.I. Oleynik, H. Suo, I.V. Oleynik, G.A. Solan, Ya. Ma, T. Liang, Wen-Hua. Sun
    Adjusting Ortho-Cycloalkyl Ring Size in a Cycloheptyl-Fused N,N,N-Iron Catalyst as Means to Control Catalytic Activity and Polyethylene Properties
    Catalysts 2020, 10(9), 1002 doi:10.3390/catal10091002, IF=3.519
  224. A.A. Bogush, C. Dabu, V.D. Tikhova, J.K. Kim, L.C. Campos
    Biomass Ashes for Acid Mine Drainage Remediation
    Waste and Biomass Valorization, 2020, V. 11, N 7, Pp 4977-4989 doi:10.1007/s12649-019-00804-9, IF=2.851
  225. A.A. Bogush, C. Dabu, V.D. Tikhova, J.K. Kim, L.C. Campos
    Biomass Ashes for Acid Mine Drainage Remediation
    Waste and Biomass Valorization, 2020, V. 11, N 7, Pp 4977-4989 doi:10.1007/s12649-019-00804-9, IF=2.851
  226. A.A. Bogush, C. Dabu, V.D. Tikhova, J.K. Kim, L.C. Campos
    Biomass Ashes for Acid Mine Drainage Remediation
    Waste and Biomass Valorization, 2020, V. 11, N 7, Pp 4977-4989 doi:10.1007/s12649-019-00804-9, IF=2.851
  227. A.A. Bogush, C. Dabu, V.D. Tikhova, J.K. Kim, L.C. Campos
    Biomass Ashes for Acid Mine Drainage Remediation
    Waste and Biomass Valorization, 2020, V. 11, N 7, Pp 4977-4989 doi:10.1007/s12649-019-00804-9, IF=2.851
  228. M.Yu. Petyuk, A.S. Berezin, I.Yu. Bagryanskaya, O.I. Artyushin, V.K. Brel, A.V. Artem'ev
    A dinuclear Re(I) tricarbonyl complex showing thermochromic luminescence
    Inorganic Chemistry Communications, 2020, V.119, 108058 doi:10.1016/j.inoche.2020.108058, IF=1.943
  229. M.Yu. Petyuk, A.S. Berezin, I.Yu. Bagryanskaya, O.I. Artyushin, V.K. Brel, A.V. Artem'ev
    A dinuclear Re(I) tricarbonyl complex showing thermochromic luminescence
    Inorganic Chemistry Communications, 2020, V.119, 108058 doi:10.1016/j.inoche.2020.108058, IF=1.943
  230. M.Yu. Petyuk, A.S. Berezin, I.Yu. Bagryanskaya, O.I. Artyushin, V.K. Brel, A.V. Artem'ev
    A dinuclear Re(I) tricarbonyl complex showing thermochromic luminescence
    Inorganic Chemistry Communications, 2020, V.119, 108058 doi:10.1016/j.inoche.2020.108058, IF=1.943
  231. M.Yu. Petyuk, A.S. Berezin, I.Yu. Bagryanskaya, O.I. Artyushin, V.K. Brel, A.V. Artem'ev
    A dinuclear Re(I) tricarbonyl complex showing thermochromic luminescence
    Inorganic Chemistry Communications, 2020, V.119, 108058 doi:10.1016/j.inoche.2020.108058, IF=1.943
  232. M.Yu. Petyuk, A.S. Berezin, I.Yu. Bagryanskaya, O.I. Artyushin, V.K. Brel, A.V. Artem'ev
    A dinuclear Re(I) tricarbonyl complex showing thermochromic luminescence
    Inorganic Chemistry Communications, 2020, V.119, 108058 doi:10.1016/j.inoche.2020.108058, IF=1.943
  233. E.A. Chulanova, E.A. Radiush, I.K. Shundrina, I.Yu. Bagryanskaya, N.A. Semenov, J. Beckmann, N.P. Gritsan, A.V. Zibarev
    Lewis Ambiphilicity of 1,2,5-Chalcogenadiazoles for Crystal Engineering: Complexes with Crown Ethers
    Crystal Growth & Design, 2020, V. 20, N 9, Pp 5868-5879 doi:10.1021/acs.cgd.0c00536, IF=4.089
  234. E.A. Chulanova, E.A. Radiush, I.K. Shundrina, I.Yu. Bagryanskaya, N.A. Semenov, J. Beckmann, N.P. Gritsan, A.V. Zibarev
    Lewis Ambiphilicity of 1,2,5-Chalcogenadiazoles for Crystal Engineering: Complexes with Crown Ethers
    Crystal Growth & Design, 2020, V. 20, N 9, Pp 5868-5879 doi:10.1021/acs.cgd.0c00536, IF=4.089
  235. E.A. Chulanova, E.A. Radiush, I.K. Shundrina, I.Yu. Bagryanskaya, N.A. Semenov, J. Beckmann, N.P. Gritsan, A.V. Zibarev
    Lewis Ambiphilicity of 1,2,5-Chalcogenadiazoles for Crystal Engineering: Complexes with Crown Ethers
    Crystal Growth & Design, 2020, V. 20, N 9, Pp 5868-5879 doi:10.1021/acs.cgd.0c00536, IF=4.089
  236. S. M. Adekenov, A. S. Kishkentayeva, M. M. Zhakanov, I. Y. Bagryanskaya
    3-Methoxy-4,5-Methylenedioxypropiophenone and Ferocinin from Ferula kelleri
    Chemistry of Natural Compounds, 2020, V. 56, N 10, Pp 896-898 doi:10.1007/s10600-020-03178-w, IF=0.652
  237. S. M. Adekenov, A. S. Kishkentayeva, M. M. Zhakanov, I. Y. Bagryanskaya
    3-Methoxy-4,5-Methylenedioxypropiophenone and Ferocinin from Ferula kelleri
    Chemistry of Natural Compounds, 2020, V. 56, N 10, Pp 896-898 doi:10.1007/s10600-020-03178-w, IF=0.652
  238. S. M. Adekenov, A. S. Kishkentayeva, M. M. Zhakanov, I. Y. Bagryanskaya
    3-Methoxy-4,5-Methylenedioxypropiophenone and Ferocinin from Ferula kelleri
    Chemistry of Natural Compounds, 2020, V. 56, N 10, Pp 896-898 doi:10.1007/s10600-020-03178-w, IF=0.652
  239. I. Zayakin, I. Bagryanskaya, D. Stass, M. Kazantsev, E. Tretyakov
    Synthesis and Structure of (Nitronyl Nitroxide-2-ido)(tert-butyldiphenylphosphine)gold(I) and -(Di(tert-butyl)phenylphosphine)gold(I) Derivatives; Their Comparative Study in the Cross-Coupling Reaction
    Crystals 2020, 10(9), 770 doi:10.3390/cryst10090770, IF=2.404
  240. O. Luzina, A. Filimonov, A. Zakharenko, A. Chepanova, O. Zakharova, E. Ilina, N. Dyrkheeva, G. Likhatskaya, N. Salakhutdinov, O. Lavrik
    Usnic Acid Conjugates with Monoterpenoids as Potent Tyrosyl-DNA Phosphodiesterase 1 Inhibitors
    Journal of Natural Products, 2020, 83, 8, 2320–2329 doi:10.1021/acs.jnatprod.9b01089, IF=3.779
  241. O. Luzina, A. Filimonov, A. Zakharenko, A. Chepanova, O. Zakharova, E. Ilina, N. Dyrkheeva, G. Likhatskaya, N. Salakhutdinov, O. Lavrik
    Usnic Acid Conjugates with Monoterpenoids as Potent Tyrosyl-DNA Phosphodiesterase 1 Inhibitors
    Journal of Natural Products, 2020, 83, 8, 2320–2329 doi:10.1021/acs.jnatprod.9b01089, IF=3.779
  242. O. Luzina, A. Filimonov, A. Zakharenko, A. Chepanova, O. Zakharova, E. Ilina, N. Dyrkheeva, G. Likhatskaya, N. Salakhutdinov, O. Lavrik
    Usnic Acid Conjugates with Monoterpenoids as Potent Tyrosyl-DNA Phosphodiesterase 1 Inhibitors
    Journal of Natural Products, 2020, 83, 8, 2320–2329 doi:10.1021/acs.jnatprod.9b01089, IF=3.779
  243. O. Luzina, A. Filimonov, A. Zakharenko, A. Chepanova, O. Zakharova, E. Ilina, N. Dyrkheeva, G. Likhatskaya, N. Salakhutdinov, O. Lavrik
    Usnic Acid Conjugates with Monoterpenoids as Potent Tyrosyl-DNA Phosphodiesterase 1 Inhibitors
    Journal of Natural Products, 2020, 83, 8, 2320–2329 doi:10.1021/acs.jnatprod.9b01089, IF=3.779
  244. O. Luzina, A. Filimonov, A. Zakharenko, A. Chepanova, O. Zakharova, E. Ilina, N. Dyrkheeva, G. Likhatskaya, N. Salakhutdinov, O. Lavrik
    Usnic Acid Conjugates with Monoterpenoids as Potent Tyrosyl-DNA Phosphodiesterase 1 Inhibitors
    Journal of Natural Products, 2020, 83, 8, 2320–2329 doi:10.1021/acs.jnatprod.9b01089, IF=3.779
  245. O. Luzina, A. Filimonov, A. Zakharenko, A. Chepanova, O. Zakharova, E. Ilina, N. Dyrkheeva, G. Likhatskaya, N. Salakhutdinov, O. Lavrik
    Usnic Acid Conjugates with Monoterpenoids as Potent Tyrosyl-DNA Phosphodiesterase 1 Inhibitors
    Journal of Natural Products, 2020, 83, 8, 2320–2329 doi:10.1021/acs.jnatprod.9b01089, IF=3.779
  246. O. Luzina, A. Filimonov, A. Zakharenko, A. Chepanova, O. Zakharova, E. Ilina, N. Dyrkheeva, G. Likhatskaya, N. Salakhutdinov, O. Lavrik
    Usnic Acid Conjugates with Monoterpenoids as Potent Tyrosyl-DNA Phosphodiesterase 1 Inhibitors
    Journal of Natural Products, 2020, 83, 8, 2320–2329 doi:10.1021/acs.jnatprod.9b01089, IF=3.779
  247. D.P. Lubov, O.Yu. Lyakin, D.G. Samsonenko, T.V. Rybalova, E.P. Talsi, K.P. Bryliakov
    Palladium aminopyridine complexes catalyzed selective benzylic C–H oxidations with peracetic acid
    Dalton Trans., 2020, V.49, N 32, Pp 11150-11156 doi:10.1039/D0DT02247K, IF=4.174
  248. D.P. Lubov, O.Yu. Lyakin, D.G. Samsonenko, T.V. Rybalova, E.P. Talsi, K.P. Bryliakov
    Palladium aminopyridine complexes catalyzed selective benzylic C–H oxidations with peracetic acid
    Dalton Trans., 2020, V.49, N 32, Pp 11150-11156 doi:10.1039/D0DT02247K, IF=4.174
  249. D.P. Lubov, O.Yu. Lyakin, D.G. Samsonenko, T.V. Rybalova, E.P. Talsi, K.P. Bryliakov
    Palladium aminopyridine complexes catalyzed selective benzylic C–H oxidations with peracetic acid
    Dalton Trans., 2020, V.49, N 32, Pp 11150-11156 doi:10.1039/D0DT02247K, IF=4.174
  250. D.P. Lubov, O.Yu. Lyakin, D.G. Samsonenko, T.V. Rybalova, E.P. Talsi, K.P. Bryliakov
    Palladium aminopyridine complexes catalyzed selective benzylic C–H oxidations with peracetic acid
    Dalton Trans., 2020, V.49, N 32, Pp 11150-11156 doi:10.1039/D0DT02247K, IF=4.174
  251. D.P. Lubov, O.Yu. Lyakin, D.G. Samsonenko, T.V. Rybalova, E.P. Talsi, K.P. Bryliakov
    Palladium aminopyridine complexes catalyzed selective benzylic C–H oxidations with peracetic acid
    Dalton Trans., 2020, V.49, N 32, Pp 11150-11156 doi:10.1039/D0DT02247K, IF=4.174
  252. A.M. Agafontsev, T.A. Shumilova, A.S. Oshchepkov, F. Hampel, E. A. Kataev
    Ratiometric detection of ATP by fluorescent cyclophanes with bellows-type sensing mechanism
    Chemistry - A European Journal, 2020, V. 26, N 44, Special Issue: Young Chemists 2020, Pp. 9991-9997 doi:10.1002/chem.202001523, IF=4.857
  253. A.M. Agafontsev, T.A. Shumilova, A.S. Oshchepkov, F. Hampel, E. A. Kataev
    Ratiometric detection of ATP by fluorescent cyclophanes with bellows-type sensing mechanism
    Chemistry - A European Journal, 2020, V. 26, N 44, Special Issue: Young Chemists 2020, Pp. 9991-9997 doi:10.1002/chem.202001523, IF=4.857
  254. A.M. Agafontsev, T.A. Shumilova, A.S. Oshchepkov, F. Hampel, E. A. Kataev
    Ratiometric detection of ATP by fluorescent cyclophanes with bellows-type sensing mechanism
    Chemistry - A European Journal, 2020, V. 26, N 44, Special Issue: Young Chemists 2020, Pp. 9991-9997 doi:10.1002/chem.202001523, IF=4.857
  255. A.M. Agafontsev, T.A. Shumilova, A.S. Oshchepkov, F. Hampel, E. A. Kataev
    Ratiometric detection of ATP by fluorescent cyclophanes with bellows-type sensing mechanism
    Chemistry - A European Journal, 2020, V. 26, N 44, Special Issue: Young Chemists 2020, Pp. 9991-9997 doi:10.1002/chem.202001523, IF=4.857
  256. Yu.I. Glazachev, A.A. Schlotgauer, V.A. Timoshnikov, P.A. Kononova, O.Yu. Selyutina, E.A. Shelepova, M.V. Zelikman, M.V. Khvostov, N.E. Polyakov
    Effect of Glycyrrhizic Acid and Arabinogalactan on the Membrane Potential of Rat Thymocytes Studied by Potential-Sensitive Fluorescent Probe
    The Journal of Membrane Biology, 2020, V. 253, Pp 343-356 doi:10.1007/s00232-020-00132-3, IF=1.876
  257. Yu.I. Glazachev, A.A. Schlotgauer, V.A. Timoshnikov, P.A. Kononova, O.Yu. Selyutina, E.A. Shelepova, M.V. Zelikman, M.V. Khvostov, N.E. Polyakov
    Effect of Glycyrrhizic Acid and Arabinogalactan on the Membrane Potential of Rat Thymocytes Studied by Potential-Sensitive Fluorescent Probe
    The Journal of Membrane Biology, 2020, V. 253, Pp 343-356 doi:10.1007/s00232-020-00132-3, IF=1.876
  258. Yu.I. Glazachev, A.A. Schlotgauer, V.A. Timoshnikov, P.A. Kononova, O.Yu. Selyutina, E.A. Shelepova, M.V. Zelikman, M.V. Khvostov, N.E. Polyakov
    Effect of Glycyrrhizic Acid and Arabinogalactan on the Membrane Potential of Rat Thymocytes Studied by Potential-Sensitive Fluorescent Probe
    The Journal of Membrane Biology, 2020, V. 253, Pp 343-356 doi:10.1007/s00232-020-00132-3, IF=1.876
  259. Yu.I. Glazachev, A.A. Schlotgauer, V.A. Timoshnikov, P.A. Kononova, O.Yu. Selyutina, E.A. Shelepova, M.V. Zelikman, M.V. Khvostov, N.E. Polyakov
    Effect of Glycyrrhizic Acid and Arabinogalactan on the Membrane Potential of Rat Thymocytes Studied by Potential-Sensitive Fluorescent Probe
    The Journal of Membrane Biology, 2020, V. 253, Pp 343-356 doi:10.1007/s00232-020-00132-3, IF=1.876
  260. Yu.I. Glazachev, A.A. Schlotgauer, V.A. Timoshnikov, P.A. Kononova, O.Yu. Selyutina, E.A. Shelepova, M.V. Zelikman, M.V. Khvostov, N.E. Polyakov
    Effect of Glycyrrhizic Acid and Arabinogalactan on the Membrane Potential of Rat Thymocytes Studied by Potential-Sensitive Fluorescent Probe
    The Journal of Membrane Biology, 2020, V. 253, Pp 343-356 doi:10.1007/s00232-020-00132-3, IF=1.876
  261. Yu.I. Glazachev, A.A. Schlotgauer, V.A. Timoshnikov, P.A. Kononova, O.Yu. Selyutina, E.A. Shelepova, M.V. Zelikman, M.V. Khvostov, N.E. Polyakov
    Effect of Glycyrrhizic Acid and Arabinogalactan on the Membrane Potential of Rat Thymocytes Studied by Potential-Sensitive Fluorescent Probe
    The Journal of Membrane Biology, 2020, V. 253, Pp 343-356 doi:10.1007/s00232-020-00132-3, IF=1.876
  262. Yu.I. Glazachev, A.A. Schlotgauer, V.A. Timoshnikov, P.A. Kononova, O.Yu. Selyutina, E.A. Shelepova, M.V. Zelikman, M.V. Khvostov, N.E. Polyakov
    Effect of Glycyrrhizic Acid and Arabinogalactan on the Membrane Potential of Rat Thymocytes Studied by Potential-Sensitive Fluorescent Probe
    The Journal of Membrane Biology, 2020, V. 253, Pp 343-356 doi:10.1007/s00232-020-00132-3, IF=1.876
  263. Yu.I. Glazachev, A.A. Schlotgauer, V.A. Timoshnikov, P.A. Kononova, O.Yu. Selyutina, E.A. Shelepova, M.V. Zelikman, M.V. Khvostov, N.E. Polyakov
    Effect of Glycyrrhizic Acid and Arabinogalactan on the Membrane Potential of Rat Thymocytes Studied by Potential-Sensitive Fluorescent Probe
    The Journal of Membrane Biology, 2020, V. 253, Pp 343-356 doi:10.1007/s00232-020-00132-3, IF=1.876
  264. A.P. Koskin, R.V. Andreev, O.N. Primachenko, E.I. Shuvarakova, A.F. Bedilo
    Perfluorosulfonic acid polymer composites: Effect of the support and synthesis method on the acid and catalytic properties
    Molecular Catalysis, 2020, V. 492, 111006 doi:10.1016/j.mcat.2020.111006, IF=3.687
  265. A.P. Koskin, R.V. Andreev, O.N. Primachenko, E.I. Shuvarakova, A.F. Bedilo
    Perfluorosulfonic acid polymer composites: Effect of the support and synthesis method on the acid and catalytic properties
    Molecular Catalysis, 2020, V. 492, 111006 doi:10.1016/j.mcat.2020.111006, IF=3.687
  266. A.P. Koskin, R.V. Andreev, O.N. Primachenko, E.I. Shuvarakova, A.F. Bedilo
    Perfluorosulfonic acid polymer composites: Effect of the support and synthesis method on the acid and catalytic properties
    Molecular Catalysis, 2020, V. 492, 111006 doi:10.1016/j.mcat.2020.111006, IF=3.687
  267. A.P. Koskin, R.V. Andreev, O.N. Primachenko, E.I. Shuvarakova, A.F. Bedilo
    Perfluorosulfonic acid polymer composites: Effect of the support and synthesis method on the acid and catalytic properties
    Molecular Catalysis, 2020, V. 492, 111006 doi:10.1016/j.mcat.2020.111006, IF=3.687
  268. M. Bretschneider, P. E Spindler, O.Yu. Rogozhnikova, D.V. Trukhin, B. Endeward, A.A. Kuzhelev, E.G. Bagryanskaya, V.M. Tormyshev, T.F. Prisner
    Multi-Quantum Counting of Trityl Radicals
    The Journal of Physical Chemistry Letters, 2020, 11, 15, 6286-6290 doi:10.1021/acs.jpclett.0c01615, IF=6.71
  269. M. Bretschneider, P. E Spindler, O.Yu. Rogozhnikova, D.V. Trukhin, B. Endeward, A.A. Kuzhelev, E.G. Bagryanskaya, V.M. Tormyshev, T.F. Prisner
    Multi-Quantum Counting of Trityl Radicals
    The Journal of Physical Chemistry Letters, 2020, 11, 15, 6286-6290 doi:10.1021/acs.jpclett.0c01615, IF=6.71
  270. M. Bretschneider, P. E Spindler, O.Yu. Rogozhnikova, D.V. Trukhin, B. Endeward, A.A. Kuzhelev, E.G. Bagryanskaya, V.M. Tormyshev, T.F. Prisner
    Multi-Quantum Counting of Trityl Radicals
    The Journal of Physical Chemistry Letters, 2020, 11, 15, 6286-6290 doi:10.1021/acs.jpclett.0c01615, IF=6.71
  271. M. Bretschneider, P. E Spindler, O.Yu. Rogozhnikova, D.V. Trukhin, B. Endeward, A.A. Kuzhelev, E.G. Bagryanskaya, V.M. Tormyshev, T.F. Prisner
    Multi-Quantum Counting of Trityl Radicals
    The Journal of Physical Chemistry Letters, 2020, 11, 15, 6286-6290 doi:10.1021/acs.jpclett.0c01615, IF=6.71
  272. A.O. Zaykovskaya, N. Kumar, E.A. Kholkina, N.S. Li-Zhulanov, P. Maki-Arvela, A. Aho, J. Peltonen, M. Peurla, I. Heinma, B.T. Kusema, S. Streiff, D.Yu. Murzi
    Synthesis and physico-chemical characterization of Beta zeolite catalysts: Evaluation of catalytic properties in Prins cyclization of (–)-isopulegol
    Microporous and Mesoporous Materials, 2020, V. 302, 110236 doi:10.1016/j.micromeso.2020.110236, IF=4.157
  273. A.O. Zaykovskaya, N. Kumar, E.A. Kholkina, N.S. Li-Zhulanov, P. Maki-Arvela, A. Aho, J. Peltonen, M. Peurla, I. Heinma, B.T. Kusema, S. Streiff, D.Yu. Murzi
    Synthesis and physico-chemical characterization of Beta zeolite catalysts: Evaluation of catalytic properties in Prins cyclization of (–)-isopulegol
    Microporous and Mesoporous Materials, 2020, V. 302, 110236 doi:10.1016/j.micromeso.2020.110236, IF=4.157
  274. A.O. Zaykovskaya, N. Kumar, E.A. Kholkina, N.S. Li-Zhulanov, P. Maki-Arvela, A. Aho, J. Peltonen, M. Peurla, I. Heinma, B.T. Kusema, S. Streiff, D.Yu. Murzi
    Synthesis and physico-chemical characterization of Beta zeolite catalysts: Evaluation of catalytic properties in Prins cyclization of (–)-isopulegol
    Microporous and Mesoporous Materials, 2020, V. 302, 110236 doi:10.1016/j.micromeso.2020.110236, IF=4.157
  275. A.O. Zaykovskaya, N. Kumar, E.A. Kholkina, N.S. Li-Zhulanov, P. Maki-Arvela, A. Aho, J. Peltonen, M. Peurla, I. Heinma, B.T. Kusema, S. Streiff, D.Yu. Murzi
    Synthesis and physico-chemical characterization of Beta zeolite catalysts: Evaluation of catalytic properties in Prins cyclization of (–)-isopulegol
    Microporous and Mesoporous Materials, 2020, V. 302, 110236 doi:10.1016/j.micromeso.2020.110236, IF=4.157
  276. A.O. Zaykovskaya, N. Kumar, E.A. Kholkina, N.S. Li-Zhulanov, P. Maki-Arvela, A. Aho, J. Peltonen, M. Peurla, I. Heinma, B.T. Kusema, S. Streiff, D.Yu. Murzi
    Synthesis and physico-chemical characterization of Beta zeolite catalysts: Evaluation of catalytic properties in Prins cyclization of (–)-isopulegol
    Microporous and Mesoporous Materials, 2020, V. 302, 110236 doi:10.1016/j.micromeso.2020.110236, IF=4.157
  277. A.O. Zaykovskaya, N. Kumar, E.A. Kholkina, N.S. Li-Zhulanov, P. Maki-Arvela, A. Aho, J. Peltonen, M. Peurla, I. Heinma, B.T. Kusema, S. Streiff, D.Yu. Murzi
    Synthesis and physico-chemical characterization of Beta zeolite catalysts: Evaluation of catalytic properties in Prins cyclization of (–)-isopulegol
    Microporous and Mesoporous Materials, 2020, V. 302, 110236 doi:10.1016/j.micromeso.2020.110236, IF=4.157
  278. A.O. Zaykovskaya, N. Kumar, E.A. Kholkina, N.S. Li-Zhulanov, P. Maki-Arvela, A. Aho, J. Peltonen, M. Peurla, I. Heinma, B.T. Kusema, S. Streiff, D.Yu. Murzi
    Synthesis and physico-chemical characterization of Beta zeolite catalysts: Evaluation of catalytic properties in Prins cyclization of (–)-isopulegol
    Microporous and Mesoporous Materials, 2020, V. 302, 110236 doi:10.1016/j.micromeso.2020.110236, IF=4.157
  279. A.O. Zaykovskaya, N. Kumar, E.A. Kholkina, N.S. Li-Zhulanov, P. Maki-Arvela, A. Aho, J. Peltonen, M. Peurla, I. Heinma, B.T. Kusema, S. Streiff, D.Yu. Murzi
    Synthesis and physico-chemical characterization of Beta zeolite catalysts: Evaluation of catalytic properties in Prins cyclization of (–)-isopulegol
    Microporous and Mesoporous Materials, 2020, V. 302, 110236 doi:10.1016/j.micromeso.2020.110236, IF=4.157
  280. A.O. Zaykovskaya, N. Kumar, E.A. Kholkina, N.S. Li-Zhulanov, P. Maki-Arvela, A. Aho, J. Peltonen, M. Peurla, I. Heinma, B.T. Kusema, S. Streiff, D.Yu. Murzi
    Synthesis and physico-chemical characterization of Beta zeolite catalysts: Evaluation of catalytic properties in Prins cyclization of (–)-isopulegol
    Microporous and Mesoporous Materials, 2020, V. 302, 110236 doi:10.1016/j.micromeso.2020.110236, IF=4.157
  281. A.O. Zaykovskaya, N. Kumar, E.A. Kholkina, N.S. Li-Zhulanov, P. Maki-Arvela, A. Aho, J. Peltonen, M. Peurla, I. Heinma, B.T. Kusema, S. Streiff, D.Yu. Murzi
    Synthesis and physico-chemical characterization of Beta zeolite catalysts: Evaluation of catalytic properties in Prins cyclization of (–)-isopulegol
    Microporous and Mesoporous Materials, 2020, V. 302, 110236 doi:10.1016/j.micromeso.2020.110236, IF=4.157
  282. A.O. Zaykovskaya, N. Kumar, E.A. Kholkina, N.S. Li-Zhulanov, P. Maki-Arvela, A. Aho, J. Peltonen, M. Peurla, I. Heinma, B.T. Kusema, S. Streiff, D.Yu. Murzi
    Synthesis and physico-chemical characterization of Beta zeolite catalysts: Evaluation of catalytic properties in Prins cyclization of (–)-isopulegol
    Microporous and Mesoporous Materials, 2020, V. 302, 110236 doi:10.1016/j.micromeso.2020.110236, IF=4.157
  283. A.V. Shpatov, T.S. Frolova, S.A. Popov, O.I. Sinitsyna, O.I. Salnikova, G. Zheng, L. Yan, N.V. Sinelnikova, L.M. Pshennikova, A.V. Kochetov
    Lipophilic Metabolites from Five-needle Pines, Pinus armandii and Pinus kwangtungensis, Exhibiting Antibacterial Activity.
    Chemistry & Biodiversity, 2020, V.17, N 8, e2000201 doi:10.1002/cbdv.202000201, IF=2.039
  284. A.V. Shpatov, T.S. Frolova, S.A. Popov, O.I. Sinitsyna, O.I. Salnikova, G. Zheng, L. Yan, N.V. Sinelnikova, L.M. Pshennikova, A.V. Kochetov
    Lipophilic Metabolites from Five-needle Pines, Pinus armandii and Pinus kwangtungensis, Exhibiting Antibacterial Activity.
    Chemistry & Biodiversity, 2020, V.17, N 8, e2000201 doi:10.1002/cbdv.202000201, IF=2.039
  285. A.V. Shpatov, T.S. Frolova, S.A. Popov, O.I. Sinitsyna, O.I. Salnikova, G. Zheng, L. Yan, N.V. Sinelnikova, L.M. Pshennikova, A.V. Kochetov
    Lipophilic Metabolites from Five-needle Pines, Pinus armandii and Pinus kwangtungensis, Exhibiting Antibacterial Activity.
    Chemistry & Biodiversity, 2020, V.17, N 8, e2000201 doi:10.1002/cbdv.202000201, IF=2.039
  286. A.V. Shpatov, T.S. Frolova, S.A. Popov, O.I. Sinitsyna, O.I. Salnikova, G. Zheng, L. Yan, N.V. Sinelnikova, L.M. Pshennikova, A.V. Kochetov
    Lipophilic Metabolites from Five-needle Pines, Pinus armandii and Pinus kwangtungensis, Exhibiting Antibacterial Activity.
    Chemistry & Biodiversity, 2020, V.17, N 8, e2000201 doi:10.1002/cbdv.202000201, IF=2.039
  287. A.V. Shpatov, T.S. Frolova, S.A. Popov, O.I. Sinitsyna, O.I. Salnikova, G. Zheng, L. Yan, N.V. Sinelnikova, L.M. Pshennikova, A.V. Kochetov
    Lipophilic Metabolites from Five-needle Pines, Pinus armandii and Pinus kwangtungensis, Exhibiting Antibacterial Activity.
    Chemistry & Biodiversity, 2020, V.17, N 8, e2000201 doi:10.1002/cbdv.202000201, IF=2.039
  288. A.V. Shpatov, T.S. Frolova, S.A. Popov, O.I. Sinitsyna, O.I. Salnikova, G. Zheng, L. Yan, N.V. Sinelnikova, L.M. Pshennikova, A.V. Kochetov
    Lipophilic Metabolites from Five-needle Pines, Pinus armandii and Pinus kwangtungensis, Exhibiting Antibacterial Activity.
    Chemistry & Biodiversity, 2020, V.17, N 8, e2000201 doi:10.1002/cbdv.202000201, IF=2.039
  289. A.V. Shpatov, T.S. Frolova, S.A. Popov, O.I. Sinitsyna, O.I. Salnikova, G. Zheng, L. Yan, N.V. Sinelnikova, L.M. Pshennikova, A.V. Kochetov
    Lipophilic Metabolites from Five-needle Pines, Pinus armandii and Pinus kwangtungensis, Exhibiting Antibacterial Activity.
    Chemistry & Biodiversity, 2020, V.17, N 8, e2000201 doi:10.1002/cbdv.202000201, IF=2.039
  290. Деревянко Д.И., Басистый В.С., Шелковников В.В., Шундрина И.К., Бухтоярова А.Д., Сальников Г.Е., Бережная В.Н., Черноносов А.А.
    Гибридный фотополимерный материал на основе (8-акрилоил-1,4-дитиа-8-азаспиро[4.5]декан-2-ил)метил акрилата и тиол-силоксанового компонента для записи микроструктур: синтез, оптические и термомеханические свойства
    Высокомолекулярные соединения. Серия Б. 2020. Т. 62. № 5. С. 382-394. doi:10.31857/S2308113920050046 (Hybrid Photopolymer Material Based on (8-Acryloyl-1,4-dithia-8-azaspiro[4.5]decan-2-yl)methyl Acrylate and Thiol-Siloxane Component for Recording Microstructures: Synthesis and Optical and Thermomechanical Properties/ D. I. Derevyanko, V. S. Basistyi, V. V. Shelkovnikov, I. K. Shundrina, A. D. Bukhtoyarova, G. E. Sal’nikov, V. N. Berezhnaya & A. A. Chernonosov// Polymer Science, Series B, 2020, V.62, N 5, Pp 509521 doi:10.1134/S1560090420050048), IF=0.976
  291. Н.А. Анисимова, Е.К. Слободчикова, М.Е. Иванова, Т.В. Рыбалова
    Взаимодействие 1-нитро-3,3,3-трибром- и 1-нитро-1,3,3,3-тетрабромпроп-1-енов с алифатическими диенами
    Журнал общей химии. 2020. Т. 90. № 8. С. 1173-1183.DOI: 10.31857/S0044460X2008003X (Reactions of 1-nitro-3,3,3-tribromomethyland 1-nitro-1,3,3,3-tetrabromomethylpropenes with aliphatic dienes/ N. A. Anisimova, E. K. Slobodchikova, M. E. Ivanova, T. V. Rybalova// Russian Journal of General Chemistry, 2020, V. 90, N 8, Pp1388-1397 doi:10.1134/S1070363220080022), IF=0.716
  292. Н.А. Анисимова, Е.К. Слободчикова, М.Е. Иванова, Т.В. Рыбалова
    Взаимодействие 1-нитро-3,3,3-трибром- и 1-нитро-1,3,3,3-тетрабромпроп-1-енов с алифатическими диенами
    Журнал общей химии. 2020. Т. 90. № 8. С. 1173-1183.DOI: 10.31857/S0044460X2008003X (Reactions of 1-nitro-3,3,3-tribromomethyland 1-nitro-1,3,3,3-tetrabromomethylpropenes with aliphatic dienes/ N. A. Anisimova, E. K. Slobodchikova, M. E. Ivanova, T. V. Rybalova// Russian Journal of General Chemistry, 2020, V. 90, N 8, Pp1388-1397 doi:10.1134/S1070363220080022), IF=0.716
  293. Н.А. Анисимова, Е.К. Слободчикова, М.Е. Иванова, Т.В. Рыбалова
    Взаимодействие 1-нитро-3,3,3-трибром- и 1-нитро-1,3,3,3-тетрабромпроп-1-енов с алифатическими диенами
    Журнал общей химии. 2020. Т. 90. № 8. С. 1173-1183.DOI: 10.31857/S0044460X2008003X (Reactions of 1-nitro-3,3,3-tribromomethyland 1-nitro-1,3,3,3-tetrabromomethylpropenes with aliphatic dienes/ N. A. Anisimova, E. K. Slobodchikova, M. E. Ivanova, T. V. Rybalova// Russian Journal of General Chemistry, 2020, V. 90, N 8, Pp1388-1397 doi:10.1134/S1070363220080022), IF=0.716
  294. T.A. Vaganova, Yu.V. Gatilov, D.P. Pishchur, E.V. Malykhin
    Polyfluorinated hydroxy and carboxy benzenes as a new type of H-donors for self-assembly with 18-crown-6 ether: synthesis, supramolecular structure and stability of co-crystals
    Journal of Fluorine Chemistry, 2020, V. 236, 109577 doi:10.1016/j.jfluchem.2020.109577, IF=2.332
  295. Yu.M. Volkova, A.Yu. Makarov, E.A. Pritchina, N.P. Gritsan, A.V. Zibarev
    Herz radicals: chemistry and materials science
    Mendeleev Commun., 2020, V. 30, N 4, Pp 385-394 doi:10.1016/j.mencom.2020.07.001, IF=1.694
  296. Yu.M. Volkova, A.Yu. Makarov, E.A. Pritchina, N.P. Gritsan, A.V. Zibarev
    Herz radicals: chemistry and materials science
    Mendeleev Commun., 2020, V. 30, N 4, Pp 385-394 doi:10.1016/j.mencom.2020.07.001, IF=1.694
  297. I.V. Il'ina, N.S. Dyrkheeva, A.L. Zakharenko, A.Yu. Sidorenko, N.S. Li-Zhulanov, D.V. Korchagina, R. Chand, D.M. Ayine-Tora, A.A. Chepanova, O.D. Zakharova, E.S. Ilina, J. Reynisson, A.A. Malakhova, S.P. Medvedev, S.M. Zakian, K.P. Volcho, N.F. Salakhutdinov, O.I. Lavrik
    Design, Synthesis, and Biological Investigation of Novel Classes of 3-Carene-Derived Potent Inhibitors of TDP1
    Molecules 2020, 25(15), 3496 doi:10.3390/molecules25153496, IF=3.267
  298. I.V. Il'ina, N.S. Dyrkheeva, A.L. Zakharenko, A.Yu. Sidorenko, N.S. Li-Zhulanov, D.V. Korchagina, R. Chand, D.M. Ayine-Tora, A.A. Chepanova, O.D. Zakharova, E.S. Ilina, J. Reynisson, A.A. Malakhova, S.P. Medvedev, S.M. Zakian, K.P. Volcho, N.F. Salakhutdinov, O.I. Lavrik
    Design, Synthesis, and Biological Investigation of Novel Classes of 3-Carene-Derived Potent Inhibitors of TDP1
    Molecules 2020, 25(15), 3496 doi:10.3390/molecules25153496, IF=3.267
  299. I.V. Il'ina, N.S. Dyrkheeva, A.L. Zakharenko, A.Yu. Sidorenko, N.S. Li-Zhulanov, D.V. Korchagina, R. Chand, D.M. Ayine-Tora, A.A. Chepanova, O.D. Zakharova, E.S. Ilina, J. Reynisson, A.A. Malakhova, S.P. Medvedev, S.M. Zakian, K.P. Volcho, N.F. Salakhutdinov, O.I. Lavrik
    Design, Synthesis, and Biological Investigation of Novel Classes of 3-Carene-Derived Potent Inhibitors of TDP1
    Molecules 2020, 25(15), 3496 doi:10.3390/molecules25153496, IF=3.267
  300. I.V. Il'ina, N.S. Dyrkheeva, A.L. Zakharenko, A.Yu. Sidorenko, N.S. Li-Zhulanov, D.V. Korchagina, R. Chand, D.M. Ayine-Tora, A.A. Chepanova, O.D. Zakharova, E.S. Ilina, J. Reynisson, A.A. Malakhova, S.P. Medvedev, S.M. Zakian, K.P. Volcho, N.F. Salakhutdinov, O.I. Lavrik
    Design, Synthesis, and Biological Investigation of Novel Classes of 3-Carene-Derived Potent Inhibitors of TDP1
    Molecules 2020, 25(15), 3496 doi:10.3390/molecules25153496, IF=3.267
  301. I.V. Il'ina, N.S. Dyrkheeva, A.L. Zakharenko, A.Yu. Sidorenko, N.S. Li-Zhulanov, D.V. Korchagina, R. Chand, D.M. Ayine-Tora, A.A. Chepanova, O.D. Zakharova, E.S. Ilina, J. Reynisson, A.A. Malakhova, S.P. Medvedev, S.M. Zakian, K.P. Volcho, N.F. Salakhutdinov, O.I. Lavrik
    Design, Synthesis, and Biological Investigation of Novel Classes of 3-Carene-Derived Potent Inhibitors of TDP1
    Molecules 2020, 25(15), 3496 doi:10.3390/molecules25153496, IF=3.267
  302. I.V. Il'ina, N.S. Dyrkheeva, A.L. Zakharenko, A.Yu. Sidorenko, N.S. Li-Zhulanov, D.V. Korchagina, R. Chand, D.M. Ayine-Tora, A.A. Chepanova, O.D. Zakharova, E.S. Ilina, J. Reynisson, A.A. Malakhova, S.P. Medvedev, S.M. Zakian, K.P. Volcho, N.F. Salakhutdinov, O.I. Lavrik
    Design, Synthesis, and Biological Investigation of Novel Classes of 3-Carene-Derived Potent Inhibitors of TDP1
    Molecules 2020, 25(15), 3496 doi:10.3390/molecules25153496, IF=3.267
  303. I.V. Il'ina, N.S. Dyrkheeva, A.L. Zakharenko, A.Yu. Sidorenko, N.S. Li-Zhulanov, D.V. Korchagina, R. Chand, D.M. Ayine-Tora, A.A. Chepanova, O.D. Zakharova, E.S. Ilina, J. Reynisson, A.A. Malakhova, S.P. Medvedev, S.M. Zakian, K.P. Volcho, N.F. Salakhutdinov, O.I. Lavrik
    Design, Synthesis, and Biological Investigation of Novel Classes of 3-Carene-Derived Potent Inhibitors of TDP1
    Molecules 2020, 25(15), 3496 doi:10.3390/molecules25153496, IF=3.267
  304. I.V. Il'ina, N.S. Dyrkheeva, A.L. Zakharenko, A.Yu. Sidorenko, N.S. Li-Zhulanov, D.V. Korchagina, R. Chand, D.M. Ayine-Tora, A.A. Chepanova, O.D. Zakharova, E.S. Ilina, J. Reynisson, A.A. Malakhova, S.P. Medvedev, S.M. Zakian, K.P. Volcho, N.F. Salakhutdinov, O.I. Lavrik
    Design, Synthesis, and Biological Investigation of Novel Classes of 3-Carene-Derived Potent Inhibitors of TDP1
    Molecules 2020, 25(15), 3496 doi:10.3390/molecules25153496, IF=3.267
  305. I.V. Il'ina, N.S. Dyrkheeva, A.L. Zakharenko, A.Yu. Sidorenko, N.S. Li-Zhulanov, D.V. Korchagina, R. Chand, D.M. Ayine-Tora, A.A. Chepanova, O.D. Zakharova, E.S. Ilina, J. Reynisson, A.A. Malakhova, S.P. Medvedev, S.M. Zakian, K.P. Volcho, N.F. Salakhutdinov, O.I. Lavrik
    Design, Synthesis, and Biological Investigation of Novel Classes of 3-Carene-Derived Potent Inhibitors of TDP1
    Molecules 2020, 25(15), 3496 doi:10.3390/molecules25153496, IF=3.267
  306. I.V. Il'ina, N.S. Dyrkheeva, A.L. Zakharenko, A.Yu. Sidorenko, N.S. Li-Zhulanov, D.V. Korchagina, R. Chand, D.M. Ayine-Tora, A.A. Chepanova, O.D. Zakharova, E.S. Ilina, J. Reynisson, A.A. Malakhova, S.P. Medvedev, S.M. Zakian, K.P. Volcho, N.F. Salakhutdinov, O.I. Lavrik
    Design, Synthesis, and Biological Investigation of Novel Classes of 3-Carene-Derived Potent Inhibitors of TDP1
    Molecules 2020, 25(15), 3496 doi:10.3390/molecules25153496, IF=3.267
  307. I.V. Il'ina, N.S. Dyrkheeva, A.L. Zakharenko, A.Yu. Sidorenko, N.S. Li-Zhulanov, D.V. Korchagina, R. Chand, D.M. Ayine-Tora, A.A. Chepanova, O.D. Zakharova, E.S. Ilina, J. Reynisson, A.A. Malakhova, S.P. Medvedev, S.M. Zakian, K.P. Volcho, N.F. Salakhutdinov, O.I. Lavrik
    Design, Synthesis, and Biological Investigation of Novel Classes of 3-Carene-Derived Potent Inhibitors of TDP1
    Molecules 2020, 25(15), 3496 doi:10.3390/molecules25153496, IF=3.267
  308. I.V. Il'ina, N.S. Dyrkheeva, A.L. Zakharenko, A.Yu. Sidorenko, N.S. Li-Zhulanov, D.V. Korchagina, R. Chand, D.M. Ayine-Tora, A.A. Chepanova, O.D. Zakharova, E.S. Ilina, J. Reynisson, A.A. Malakhova, S.P. Medvedev, S.M. Zakian, K.P. Volcho, N.F. Salakhutdinov, O.I. Lavrik
    Design, Synthesis, and Biological Investigation of Novel Classes of 3-Carene-Derived Potent Inhibitors of TDP1
    Molecules 2020, 25(15), 3496 doi:10.3390/molecules25153496, IF=3.267
  309. I.V. Il'ina, N.S. Dyrkheeva, A.L. Zakharenko, A.Yu. Sidorenko, N.S. Li-Zhulanov, D.V. Korchagina, R. Chand, D.M. Ayine-Tora, A.A. Chepanova, O.D. Zakharova, E.S. Ilina, J. Reynisson, A.A. Malakhova, S.P. Medvedev, S.M. Zakian, K.P. Volcho, N.F. Salakhutdinov, O.I. Lavrik
    Design, Synthesis, and Biological Investigation of Novel Classes of 3-Carene-Derived Potent Inhibitors of TDP1
    Molecules 2020, 25(15), 3496 doi:10.3390/molecules25153496, IF=3.267
  310. N. A. Muraleva ,N. A. Stefanova,N. G. Kolosova
    SkQ1 Suppresses the p38 MAPK Signaling Pathway Involved in Alzheimer's Disease-Like Pathology in OXYS Rats
    Antioxidants 2020, 9(8), 676 doi:10.3390/antiox9080676, IF=5.13
  311. N. A. Muraleva ,N. A. Stefanova,N. G. Kolosova
    SkQ1 Suppresses the p38 MAPK Signaling Pathway Involved in Alzheimer's Disease-Like Pathology in OXYS Rats
    Antioxidants 2020, 9(8), 676 doi:10.3390/antiox9080676, IF=5.13
  312. E.A. Kulikova, O.S. Kozhevnikova, A.V. Kulikov, N.G. Kolosova, T.M. Khomenko, K.P. Volcho, N.F. Salakhutdinov, D.V. Telegina
    Alterations of STEP46 and STEP61 Expression in the Rat Retina with Age and AMD-Like Retinopathy Development
    Int. J. Mol. Sci. 2020, 21(15), 5182 doi:10.3390/ijms21155182, IF=4.556
  313. E.A. Kulikova, O.S. Kozhevnikova, A.V. Kulikov, N.G. Kolosova, T.M. Khomenko, K.P. Volcho, N.F. Salakhutdinov, D.V. Telegina
    Alterations of STEP46 and STEP61 Expression in the Rat Retina with Age and AMD-Like Retinopathy Development
    Int. J. Mol. Sci. 2020, 21(15), 5182 doi:10.3390/ijms21155182, IF=4.556
  314. E.A. Kulikova, O.S. Kozhevnikova, A.V. Kulikov, N.G. Kolosova, T.M. Khomenko, K.P. Volcho, N.F. Salakhutdinov, D.V. Telegina
    Alterations of STEP46 and STEP61 Expression in the Rat Retina with Age and AMD-Like Retinopathy Development
    Int. J. Mol. Sci. 2020, 21(15), 5182 doi:10.3390/ijms21155182, IF=4.556
  315. E.A. Kulikova, O.S. Kozhevnikova, A.V. Kulikov, N.G. Kolosova, T.M. Khomenko, K.P. Volcho, N.F. Salakhutdinov, D.V. Telegina
    Alterations of STEP46 and STEP61 Expression in the Rat Retina with Age and AMD-Like Retinopathy Development
    Int. J. Mol. Sci. 2020, 21(15), 5182 doi:10.3390/ijms21155182, IF=4.556
  316. V.I. Borovkov, P.A. Potashov, I.V. Beregovaya, L.N. Shchegoleva, Yu.N. Molin
    Primary Radical Cations in Irradiated Poly(isobutylene)
    The Journal of Physical Chemistry B, 2020, V. 124, N 32 , Pp 7059-7066 doi:10.1021/acs.jpcb.0c03280, IF=2.857
  317. V.I. Borovkov, P.A. Potashov, I.V. Beregovaya, L.N. Shchegoleva, Yu.N. Molin
    Primary Radical Cations in Irradiated Poly(isobutylene)
    The Journal of Physical Chemistry B, 2020, V. 124, N 32 , Pp 7059-7066 doi:10.1021/acs.jpcb.0c03280, IF=2.857
  318. V.I. Borovkov, P.A. Potashov, I.V. Beregovaya, L.N. Shchegoleva, Yu.N. Molin
    Primary Radical Cations in Irradiated Poly(isobutylene)
    The Journal of Physical Chemistry B, 2020, V. 124, N 32 , Pp 7059-7066 doi:10.1021/acs.jpcb.0c03280, IF=2.857
  319. M.F. Kasakin, A.D. Rogachev, E.V. Predtechenskaya, V.J. Zaigraev, V.V. Koval, A.G. Pokrovsky
    Changes in Amino Acid and Acylcarnitine Plasma Profiles for Distinguishing Patients with Multiple Sclerosis from Healthy Controls
    Multiple Sclerosis International, 2020, V. 2020, Art. Number 9010937 doi:10.1155/2020/9010937
  320. M.F. Kasakin, A.D. Rogachev, E.V. Predtechenskaya, V.J. Zaigraev, V.V. Koval, A.G. Pokrovsky
    Changes in Amino Acid and Acylcarnitine Plasma Profiles for Distinguishing Patients with Multiple Sclerosis from Healthy Controls
    Multiple Sclerosis International, 2020, V. 2020, Art. Number 9010937 doi:10.1155/2020/9010937
  321. M.F. Kasakin, A.D. Rogachev, E.V. Predtechenskaya, V.J. Zaigraev, V.V. Koval, A.G. Pokrovsky
    Changes in Amino Acid and Acylcarnitine Plasma Profiles for Distinguishing Patients with Multiple Sclerosis from Healthy Controls
    Multiple Sclerosis International, 2020, V. 2020, Art. Number 9010937 doi:10.1155/2020/9010937
  322. M.F. Kasakin, A.D. Rogachev, E.V. Predtechenskaya, V.J. Zaigraev, V.V. Koval, A.G. Pokrovsky
    Changes in Amino Acid and Acylcarnitine Plasma Profiles for Distinguishing Patients with Multiple Sclerosis from Healthy Controls
    Multiple Sclerosis International, 2020, V. 2020, Art. Number 9010937 doi:10.1155/2020/9010937
  323. M.F. Kasakin, A.D. Rogachev, E.V. Predtechenskaya, V.J. Zaigraev, V.V. Koval, A.G. Pokrovsky
    Changes in Amino Acid and Acylcarnitine Plasma Profiles for Distinguishing Patients with Multiple Sclerosis from Healthy Controls
    Multiple Sclerosis International, 2020, V. 2020, Art. Number 9010937 doi:10.1155/2020/9010937
  324. S.A. Amitina, E.V. Zaytseva, N.A. Dmitrieva, A.V. Lomanovich, N.V. Kandalintseva, Yu.A. Ten, I.A. Artamonov, A.F. Markov, D.G. Mazhukin
    5-Aryl-2-(3,5-dialkyl-4-hydroxyphenyl)-4,4-dimethyl-4H-imidazole 3-Oxides and Their Redox Species: How Antioxidant Activity of 1-Hydroxy-2,5-dihydro-1H-imidazoles Correlates with the Stability of Hybrid Phenoxyl-Nitroxides
    Molecules 2020, 25(14), 3118 doi:10.3390/molecules25143118, IF=3.267
  325. S.A. Amitina, E.V. Zaytseva, N.A. Dmitrieva, A.V. Lomanovich, N.V. Kandalintseva, Yu.A. Ten, I.A. Artamonov, A.F. Markov, D.G. Mazhukin
    5-Aryl-2-(3,5-dialkyl-4-hydroxyphenyl)-4,4-dimethyl-4H-imidazole 3-Oxides and Their Redox Species: How Antioxidant Activity of 1-Hydroxy-2,5-dihydro-1H-imidazoles Correlates with the Stability of Hybrid Phenoxyl-Nitroxides
    Molecules 2020, 25(14), 3118 doi:10.3390/molecules25143118, IF=3.267
  326. S.A. Amitina, E.V. Zaytseva, N.A. Dmitrieva, A.V. Lomanovich, N.V. Kandalintseva, Yu.A. Ten, I.A. Artamonov, A.F. Markov, D.G. Mazhukin
    5-Aryl-2-(3,5-dialkyl-4-hydroxyphenyl)-4,4-dimethyl-4H-imidazole 3-Oxides and Their Redox Species: How Antioxidant Activity of 1-Hydroxy-2,5-dihydro-1H-imidazoles Correlates with the Stability of Hybrid Phenoxyl-Nitroxides
    Molecules 2020, 25(14), 3118 doi:10.3390/molecules25143118, IF=3.267
  327. S.A. Amitina, E.V. Zaytseva, N.A. Dmitrieva, A.V. Lomanovich, N.V. Kandalintseva, Yu.A. Ten, I.A. Artamonov, A.F. Markov, D.G. Mazhukin
    5-Aryl-2-(3,5-dialkyl-4-hydroxyphenyl)-4,4-dimethyl-4H-imidazole 3-Oxides and Their Redox Species: How Antioxidant Activity of 1-Hydroxy-2,5-dihydro-1H-imidazoles Correlates with the Stability of Hybrid Phenoxyl-Nitroxides
    Molecules 2020, 25(14), 3118 doi:10.3390/molecules25143118, IF=3.267
  328. K.S. Marenin, A.M. Agafontsev, Yu.A. Bryleva, Yu.V. Gatilov, L.A. Glinskaya, D.A. Piryazev, A.V. Tkachev
    Stereochemistry of the Kabachnik-Fields Condensation of Terpenic Amino Oximes with Aldehydes and Dimethyl Phosphite
    ChemistrySelect, 2020, V.5 N 25, Pp 7596-7604 doi:10.1002/slct.202002369, IF=1.811
  329. K.S. Marenin, A.M. Agafontsev, Yu.A. Bryleva, Yu.V. Gatilov, L.A. Glinskaya, D.A. Piryazev, A.V. Tkachev
    Stereochemistry of the Kabachnik-Fields Condensation of Terpenic Amino Oximes with Aldehydes and Dimethyl Phosphite
    ChemistrySelect, 2020, V.5 N 25, Pp 7596-7604 doi:10.1002/slct.202002369, IF=1.811
  330. K.S. Marenin, A.M. Agafontsev, Yu.A. Bryleva, Yu.V. Gatilov, L.A. Glinskaya, D.A. Piryazev, A.V. Tkachev
    Stereochemistry of the Kabachnik-Fields Condensation of Terpenic Amino Oximes with Aldehydes and Dimethyl Phosphite
    ChemistrySelect, 2020, V.5 N 25, Pp 7596-7604 doi:10.1002/slct.202002369, IF=1.811
  331. D.M. Polyukhov, S. Krause, V. Bon, A.S. Poryvaev, S. Kaskel, M.V. Fedin
    Structural Transitions of the Metal-Organic Framework DUT-49(Cu) upon Physi- and Chemisorption Studied by in Situ Electron Paramagnetic Resonance Spectroscopy
    J. Phys. Chem. Lett. 2020, 11, 15, 5856-5862 doi:10.1021/acs.jpclett.0c01705, IF=6.71
  332. D.M. Polyukhov, S. Krause, V. Bon, A.S. Poryvaev, S. Kaskel, M.V. Fedin
    Structural Transitions of the Metal-Organic Framework DUT-49(Cu) upon Physi- and Chemisorption Studied by in Situ Electron Paramagnetic Resonance Spectroscopy
    J. Phys. Chem. Lett. 2020, 11, 15, 5856-5862 doi:10.1021/acs.jpclett.0c01705, IF=6.71
  333. D.M. Polyukhov, S. Krause, V. Bon, A.S. Poryvaev, S. Kaskel, M.V. Fedin
    Structural Transitions of the Metal-Organic Framework DUT-49(Cu) upon Physi- and Chemisorption Studied by in Situ Electron Paramagnetic Resonance Spectroscopy
    J. Phys. Chem. Lett. 2020, 11, 15, 5856-5862 doi:10.1021/acs.jpclett.0c01705, IF=6.71
  334. D.M. Polyukhov, S. Krause, V. Bon, A.S. Poryvaev, S. Kaskel, M.V. Fedin
    Structural Transitions of the Metal-Organic Framework DUT-49(Cu) upon Physi- and Chemisorption Studied by in Situ Electron Paramagnetic Resonance Spectroscopy
    J. Phys. Chem. Lett. 2020, 11, 15, 5856-5862 doi:10.1021/acs.jpclett.0c01705, IF=6.71
  335. D.M. Polyukhov, S. Krause, V. Bon, A.S. Poryvaev, S. Kaskel, M.V. Fedin
    Structural Transitions of the Metal-Organic Framework DUT-49(Cu) upon Physi- and Chemisorption Studied by in Situ Electron Paramagnetic Resonance Spectroscopy
    J. Phys. Chem. Lett. 2020, 11, 15, 5856-5862 doi:10.1021/acs.jpclett.0c01705, IF=6.71
  336. A.E. Paromov, S.V. Sysolyatin, I.А. Shchurova, A.I. Rogova, V.V. Malykhin, Yu.V. Gatilov
    Synthesis of oxaazaisowurtzitanes by condensation of 4-dimethylaminobenzenesulfonamide with glyoxal
    Tetrahedron, 2020, V. 76, N 27, 131298 doi:10.1016/j.tet.2020.131298, IF=2.233
  337. A.E. Paromov, S.V. Sysolyatin, I.А. Shchurova, A.I. Rogova, V.V. Malykhin, Yu.V. Gatilov
    Synthesis of oxaazaisowurtzitanes by condensation of 4-dimethylaminobenzenesulfonamide with glyoxal
    Tetrahedron, 2020, V. 76, N 27, 131298 doi:10.1016/j.tet.2020.131298, IF=2.233
  338. A.E. Paromov, S.V. Sysolyatin, I.А. Shchurova, A.I. Rogova, V.V. Malykhin, Yu.V. Gatilov
    Synthesis of oxaazaisowurtzitanes by condensation of 4-dimethylaminobenzenesulfonamide with glyoxal
    Tetrahedron, 2020, V. 76, N 27, 131298 doi:10.1016/j.tet.2020.131298, IF=2.233
  339. A.E. Paromov, S.V. Sysolyatin, I.А. Shchurova, A.I. Rogova, V.V. Malykhin, Yu.V. Gatilov
    Synthesis of oxaazaisowurtzitanes by condensation of 4-dimethylaminobenzenesulfonamide with glyoxal
    Tetrahedron, 2020, V. 76, N 27, 131298 doi:10.1016/j.tet.2020.131298, IF=2.233
  340. A.E. Paromov, S.V. Sysolyatin, I.А. Shchurova, A.I. Rogova, V.V. Malykhin, Yu.V. Gatilov
    Synthesis of oxaazaisowurtzitanes by condensation of 4-dimethylaminobenzenesulfonamide with glyoxal
    Tetrahedron, 2020, V. 76, N 27, 131298 doi:10.1016/j.tet.2020.131298, IF=2.233
  341. G. Audran, E.G. Bagryanskaya, S.R. A. Marque, P. Postnikov
    New Variants of Nitroxide Mediated Polymerization
    Polymers 2020, 12(7), 1481 doi:10.3390/polym12071481, IF=3.426
  342. G. Audran, E.G. Bagryanskaya, S.R. A. Marque, P. Postnikov
    New Variants of Nitroxide Mediated Polymerization
    Polymers 2020, 12(7), 1481 doi:10.3390/polym12071481, IF=3.426
  343. G. Audran, E.G. Bagryanskaya, S.R. A. Marque, P. Postnikov
    New Variants of Nitroxide Mediated Polymerization
    Polymers 2020, 12(7), 1481 doi:10.3390/polym12071481, IF=3.426
  344. А.Г. Сокол, А.А. Томиленко, Т.А. Бульбак, И.А. Сокол, П.А. Заикин, Н.В. Соболев
    Состав флюида восстановленной мантии по экспериментальным данным и результатам изучения флюидных включений в алмазах
    Геология и геофизика. 2020. Т. 61. № S5-6. С. 810-825 Геология и геофизика. 2020. Т. 61. № S5-6. С. 810-825, doi:10.15372/GiG2020103 (Composition of reduced mantle fluids: evidence from modeling experiments and fluid inclusions in natural diamond/ Sokol A.G., Tomilenko A.A., Bul'bak T.A., Sokol I.A., Zaikin P.A., Sobolev N.V// Russian geology and geophysics, 2020, V. 61, N 5-6, Pp 663-674 SI doi:10.15372/RGG2020103)
  345. А.Г. Сокол, А.А. Томиленко, Т.А. Бульбак, И.А. Сокол, П.А. Заикин, Н.В. Соболев
    Состав флюида восстановленной мантии по экспериментальным данным и результатам изучения флюидных включений в алмазах
    Геология и геофизика. 2020. Т. 61. № S5-6. С. 810-825 Геология и геофизика. 2020. Т. 61. № S5-6. С. 810-825, doi:10.15372/GiG2020103 (Composition of reduced mantle fluids: evidence from modeling experiments and fluid inclusions in natural diamond/ Sokol A.G., Tomilenko A.A., Bul'bak T.A., Sokol I.A., Zaikin P.A., Sobolev N.V// Russian geology and geophysics, 2020, V. 61, N 5-6, Pp 663-674 SI doi:10.15372/RGG2020103)
  346. А.Г. Сокол, А.А. Томиленко, Т.А. Бульбак, И.А. Сокол, П.А. Заикин, Н.В. Соболев
    Состав флюида восстановленной мантии по экспериментальным данным и результатам изучения флюидных включений в алмазах
    Геология и геофизика. 2020. Т. 61. № S5-6. С. 810-825 Геология и геофизика. 2020. Т. 61. № S5-6. С. 810-825, doi:10.15372/GiG2020103 (Composition of reduced mantle fluids: evidence from modeling experiments and fluid inclusions in natural diamond/ Sokol A.G., Tomilenko A.A., Bul'bak T.A., Sokol I.A., Zaikin P.A., Sobolev N.V// Russian geology and geophysics, 2020, V. 61, N 5-6, Pp 663-674 SI doi:10.15372/RGG2020103)
  347. А.Г. Сокол, А.А. Томиленко, Т.А. Бульбак, И.А. Сокол, П.А. Заикин, Н.В. Соболев
    Состав флюида восстановленной мантии по экспериментальным данным и результатам изучения флюидных включений в алмазах
    Геология и геофизика. 2020. Т. 61. № S5-6. С. 810-825 Геология и геофизика. 2020. Т. 61. № S5-6. С. 810-825, doi:10.15372/GiG2020103 (Composition of reduced mantle fluids: evidence from modeling experiments and fluid inclusions in natural diamond/ Sokol A.G., Tomilenko A.A., Bul'bak T.A., Sokol I.A., Zaikin P.A., Sobolev N.V// Russian geology and geophysics, 2020, V. 61, N 5-6, Pp 663-674 SI doi:10.15372/RGG2020103)
  348. А.Г. Сокол, А.А. Томиленко, Т.А. Бульбак, И.А. Сокол, П.А. Заикин, Н.В. Соболев
    Состав флюида восстановленной мантии по экспериментальным данным и результатам изучения флюидных включений в алмазах
    Геология и геофизика. 2020. Т. 61. № S5-6. С. 810-825 Геология и геофизика. 2020. Т. 61. № S5-6. С. 810-825, doi:10.15372/GiG2020103 (Composition of reduced mantle fluids: evidence from modeling experiments and fluid inclusions in natural diamond/ Sokol A.G., Tomilenko A.A., Bul'bak T.A., Sokol I.A., Zaikin P.A., Sobolev N.V// Russian geology and geophysics, 2020, V. 61, N 5-6, Pp 663-674 SI doi:10.15372/RGG2020103)
  349. A. Amanzhan, P.Zh. Zhanymkhanova, B. Aidanuly, E.E. Shults, A.Z. Turmukhambetov, S.M. Adekenov
    Synthesis and structure of hydrazone derivatives of harmine
    News of NAS RK. Series of Chemistry and technology, 2020, V. 3, N 441, Pp 88-95 doi:10.32014/2020.2518-1491.48
  350. A. Amanzhan, P.Zh. Zhanymkhanova, B. Aidanuly, E.E. Shults, A.Z. Turmukhambetov, S.M. Adekenov
    Synthesis and structure of hydrazone derivatives of harmine
    News of NAS RK. Series of Chemistry and technology, 2020, V. 3, N 441, Pp 88-95 doi:10.32014/2020.2518-1491.48
  351. A. Amanzhan, P.Zh. Zhanymkhanova, B. Aidanuly, E.E. Shults, A.Z. Turmukhambetov, S.M. Adekenov
    Synthesis and structure of hydrazone derivatives of harmine
    News of NAS RK. Series of Chemistry and technology, 2020, V. 3, N 441, Pp 88-95 doi:10.32014/2020.2518-1491.48
  352. A. Amanzhan, P.Zh. Zhanymkhanova, B. Aidanuly, E.E. Shults, A.Z. Turmukhambetov, S.M. Adekenov
    Synthesis and structure of hydrazone derivatives of harmine
    News of NAS RK. Series of Chemistry and technology, 2020, V. 3, N 441, Pp 88-95 doi:10.32014/2020.2518-1491.48
  353. A. Amanzhan, P.Zh. Zhanymkhanova, B. Aidanuly, E.E. Shults, A.Z. Turmukhambetov, S.M. Adekenov
    Synthesis and structure of hydrazone derivatives of harmine
    News of NAS RK. Series of Chemistry and technology, 2020, V. 3, N 441, Pp 88-95 doi:10.32014/2020.2518-1491.48
  354. Д.В. Пятрикас, Е.Л. Горбылева, А.В. Федяева, С.A. Захарова, А.В. Шпатов, С.А. Попов, Г.Б. Боровский
    Поиск биологически активных веществ природного происхождения на основе малополярных экстрактов хвойных
    Известия вузов. Прикладная химия и биотехнология. 2020. Т. 10. № 2 (33). С. 240-250. (Search for biologically active substances of natural origin based on low-polar conifer extracts/ D. V. Pyatrikas, E. L. Gorbyleva, A. V. Fedyaeva, S. S. Zakharova, A. V. Shpatov, S. A. Popov, G. B. Borovskii// Izvestiya Vuzov. Prikladnaya Khimiya i Biotekhnologiya doi:10.21285/2227-2925-2020-10-2-240-250)
  355. Д.В. Пятрикас, Е.Л. Горбылева, А.В. Федяева, С.A. Захарова, А.В. Шпатов, С.А. Попов, Г.Б. Боровский
    Поиск биологически активных веществ природного происхождения на основе малополярных экстрактов хвойных
    Известия вузов. Прикладная химия и биотехнология. 2020. Т. 10. № 2 (33). С. 240-250. (Search for biologically active substances of natural origin based on low-polar conifer extracts/ D. V. Pyatrikas, E. L. Gorbyleva, A. V. Fedyaeva, S. S. Zakharova, A. V. Shpatov, S. A. Popov, G. B. Borovskii// Izvestiya Vuzov. Prikladnaya Khimiya i Biotekhnologiya doi:10.21285/2227-2925-2020-10-2-240-250)
  356. Д.В. Пятрикас, Е.Л. Горбылева, А.В. Федяева, С.A. Захарова, А.В. Шпатов, С.А. Попов, Г.Б. Боровский
    Поиск биологически активных веществ природного происхождения на основе малополярных экстрактов хвойных
    Известия вузов. Прикладная химия и биотехнология. 2020. Т. 10. № 2 (33). С. 240-250. (Search for biologically active substances of natural origin based on low-polar conifer extracts/ D. V. Pyatrikas, E. L. Gorbyleva, A. V. Fedyaeva, S. S. Zakharova, A. V. Shpatov, S. A. Popov, G. B. Borovskii// Izvestiya Vuzov. Prikladnaya Khimiya i Biotekhnologiya doi:10.21285/2227-2925-2020-10-2-240-250)
  357. Д.В. Пятрикас, Е.Л. Горбылева, А.В. Федяева, С.A. Захарова, А.В. Шпатов, С.А. Попов, Г.Б. Боровский
    Поиск биологически активных веществ природного происхождения на основе малополярных экстрактов хвойных
    Известия вузов. Прикладная химия и биотехнология. 2020. Т. 10. № 2 (33). С. 240-250. (Search for biologically active substances of natural origin based on low-polar conifer extracts/ D. V. Pyatrikas, E. L. Gorbyleva, A. V. Fedyaeva, S. S. Zakharova, A. V. Shpatov, S. A. Popov, G. B. Borovskii// Izvestiya Vuzov. Prikladnaya Khimiya i Biotekhnologiya doi:10.21285/2227-2925-2020-10-2-240-250)
  358. I. Y. Zhuravleva, Yu.F. Polienko, E. V. Karpova, T. P. Timchenko, M. B. Vasilieva, L. A. Baratova, S. S. Shatskaya, E.V. Kuznetsova, N. R. Nichay, N.Beshchasna, A. V. Bogachev-Prokophiev
    Treatment With Bisphosphonates To Mitigate Calcification Of Elastin-Containing Bioprosthetic Materials
    Journal of Biomedical Materials Research Part A, 2020; V. 108, N 7, Pp 1579-1588 doi:10.1002/jbm.a.36927, IF=3.525
  359. I. Y. Zhuravleva, Yu.F. Polienko, E. V. Karpova, T. P. Timchenko, M. B. Vasilieva, L. A. Baratova, S. S. Shatskaya, E.V. Kuznetsova, N. R. Nichay, N.Beshchasna, A. V. Bogachev-Prokophiev
    Treatment With Bisphosphonates To Mitigate Calcification Of Elastin-Containing Bioprosthetic Materials
    Journal of Biomedical Materials Research Part A, 2020; V. 108, N 7, Pp 1579-1588 doi:10.1002/jbm.a.36927, IF=3.525
  360. I. Y. Zhuravleva, Yu.F. Polienko, E. V. Karpova, T. P. Timchenko, M. B. Vasilieva, L. A. Baratova, S. S. Shatskaya, E.V. Kuznetsova, N. R. Nichay, N.Beshchasna, A. V. Bogachev-Prokophiev
    Treatment With Bisphosphonates To Mitigate Calcification Of Elastin-Containing Bioprosthetic Materials
    Journal of Biomedical Materials Research Part A, 2020; V. 108, N 7, Pp 1579-1588 doi:10.1002/jbm.a.36927, IF=3.525
  361. I. Y. Zhuravleva, Yu.F. Polienko, E. V. Karpova, T. P. Timchenko, M. B. Vasilieva, L. A. Baratova, S. S. Shatskaya, E.V. Kuznetsova, N. R. Nichay, N.Beshchasna, A. V. Bogachev-Prokophiev
    Treatment With Bisphosphonates To Mitigate Calcification Of Elastin-Containing Bioprosthetic Materials
    Journal of Biomedical Materials Research Part A, 2020; V. 108, N 7, Pp 1579-1588 doi:10.1002/jbm.a.36927, IF=3.525
  362. I. Y. Zhuravleva, Yu.F. Polienko, E. V. Karpova, T. P. Timchenko, M. B. Vasilieva, L. A. Baratova, S. S. Shatskaya, E.V. Kuznetsova, N. R. Nichay, N.Beshchasna, A. V. Bogachev-Prokophiev
    Treatment With Bisphosphonates To Mitigate Calcification Of Elastin-Containing Bioprosthetic Materials
    Journal of Biomedical Materials Research Part A, 2020; V. 108, N 7, Pp 1579-1588 doi:10.1002/jbm.a.36927, IF=3.525
  363. I. Y. Zhuravleva, Yu.F. Polienko, E. V. Karpova, T. P. Timchenko, M. B. Vasilieva, L. A. Baratova, S. S. Shatskaya, E.V. Kuznetsova, N. R. Nichay, N.Beshchasna, A. V. Bogachev-Prokophiev
    Treatment With Bisphosphonates To Mitigate Calcification Of Elastin-Containing Bioprosthetic Materials
    Journal of Biomedical Materials Research Part A, 2020; V. 108, N 7, Pp 1579-1588 doi:10.1002/jbm.a.36927, IF=3.525
  364. I. Y. Zhuravleva, Yu.F. Polienko, E. V. Karpova, T. P. Timchenko, M. B. Vasilieva, L. A. Baratova, S. S. Shatskaya, E.V. Kuznetsova, N. R. Nichay, N.Beshchasna, A. V. Bogachev-Prokophiev
    Treatment With Bisphosphonates To Mitigate Calcification Of Elastin-Containing Bioprosthetic Materials
    Journal of Biomedical Materials Research Part A, 2020; V. 108, N 7, Pp 1579-1588 doi:10.1002/jbm.a.36927, IF=3.525
  365. I. Y. Zhuravleva, Yu.F. Polienko, E. V. Karpova, T. P. Timchenko, M. B. Vasilieva, L. A. Baratova, S. S. Shatskaya, E.V. Kuznetsova, N. R. Nichay, N.Beshchasna, A. V. Bogachev-Prokophiev
    Treatment With Bisphosphonates To Mitigate Calcification Of Elastin-Containing Bioprosthetic Materials
    Journal of Biomedical Materials Research Part A, 2020; V. 108, N 7, Pp 1579-1588 doi:10.1002/jbm.a.36927, IF=3.525
  366. I. Y. Zhuravleva, Yu.F. Polienko, E. V. Karpova, T. P. Timchenko, M. B. Vasilieva, L. A. Baratova, S. S. Shatskaya, E.V. Kuznetsova, N. R. Nichay, N.Beshchasna, A. V. Bogachev-Prokophiev
    Treatment With Bisphosphonates To Mitigate Calcification Of Elastin-Containing Bioprosthetic Materials
    Journal of Biomedical Materials Research Part A, 2020; V. 108, N 7, Pp 1579-1588 doi:10.1002/jbm.a.36927, IF=3.525
  367. V.A. Demina, S.V. Krasheninnikov, A.I. Buzin, R.A. Kamyshinsky, N.V. Sadovskaya, E.N.Goncharov, N.A. Zhukova, M.V. Khvostov, A.V. Pavlova, T.G. Tolstikova, N.G. Sedush, S.N. Chvalun
    Biodegradable poly(l-lactide)/calcium phosphate composites with improved properties for orthopedics: Effect of filler and polymer crystallinity
    Materials Science and Engineering: C, 2020, V. 112, 110813 doi:10.1016/j.msec.2020.110813, IF=5.88
  368. V.A. Demina, S.V. Krasheninnikov, A.I. Buzin, R.A. Kamyshinsky, N.V. Sadovskaya, E.N.Goncharov, N.A. Zhukova, M.V. Khvostov, A.V. Pavlova, T.G. Tolstikova, N.G. Sedush, S.N. Chvalun
    Biodegradable poly(l-lactide)/calcium phosphate composites with improved properties for orthopedics: Effect of filler and polymer crystallinity
    Materials Science and Engineering: C, 2020, V. 112, 110813 doi:10.1016/j.msec.2020.110813, IF=5.88
  369. V.A. Demina, S.V. Krasheninnikov, A.I. Buzin, R.A. Kamyshinsky, N.V. Sadovskaya, E.N.Goncharov, N.A. Zhukova, M.V. Khvostov, A.V. Pavlova, T.G. Tolstikova, N.G. Sedush, S.N. Chvalun
    Biodegradable poly(l-lactide)/calcium phosphate composites with improved properties for orthopedics: Effect of filler and polymer crystallinity
    Materials Science and Engineering: C, 2020, V. 112, 110813 doi:10.1016/j.msec.2020.110813, IF=5.88
  370. V.A. Demina, S.V. Krasheninnikov, A.I. Buzin, R.A. Kamyshinsky, N.V. Sadovskaya, E.N.Goncharov, N.A. Zhukova, M.V. Khvostov, A.V. Pavlova, T.G. Tolstikova, N.G. Sedush, S.N. Chvalun
    Biodegradable poly(l-lactide)/calcium phosphate composites with improved properties for orthopedics: Effect of filler and polymer crystallinity
    Materials Science and Engineering: C, 2020, V. 112, 110813 doi:10.1016/j.msec.2020.110813, IF=5.88
  371. V.A. Demina, S.V. Krasheninnikov, A.I. Buzin, R.A. Kamyshinsky, N.V. Sadovskaya, E.N.Goncharov, N.A. Zhukova, M.V. Khvostov, A.V. Pavlova, T.G. Tolstikova, N.G. Sedush, S.N. Chvalun
    Biodegradable poly(l-lactide)/calcium phosphate composites with improved properties for orthopedics: Effect of filler and polymer crystallinity
    Materials Science and Engineering: C, 2020, V. 112, 110813 doi:10.1016/j.msec.2020.110813, IF=5.88
  372. V.A. Demina, S.V. Krasheninnikov, A.I. Buzin, R.A. Kamyshinsky, N.V. Sadovskaya, E.N.Goncharov, N.A. Zhukova, M.V. Khvostov, A.V. Pavlova, T.G. Tolstikova, N.G. Sedush, S.N. Chvalun
    Biodegradable poly(l-lactide)/calcium phosphate composites with improved properties for orthopedics: Effect of filler and polymer crystallinity
    Materials Science and Engineering: C, 2020, V. 112, 110813 doi:10.1016/j.msec.2020.110813, IF=5.88
  373. V.A. Demina, S.V. Krasheninnikov, A.I. Buzin, R.A. Kamyshinsky, N.V. Sadovskaya, E.N.Goncharov, N.A. Zhukova, M.V. Khvostov, A.V. Pavlova, T.G. Tolstikova, N.G. Sedush, S.N. Chvalun
    Biodegradable poly(l-lactide)/calcium phosphate composites with improved properties for orthopedics: Effect of filler and polymer crystallinity
    Materials Science and Engineering: C, 2020, V. 112, 110813 doi:10.1016/j.msec.2020.110813, IF=5.88
  374. V.A. Demina, S.V. Krasheninnikov, A.I. Buzin, R.A. Kamyshinsky, N.V. Sadovskaya, E.N.Goncharov, N.A. Zhukova, M.V. Khvostov, A.V. Pavlova, T.G. Tolstikova, N.G. Sedush, S.N. Chvalun
    Biodegradable poly(l-lactide)/calcium phosphate composites with improved properties for orthopedics: Effect of filler and polymer crystallinity
    Materials Science and Engineering: C, 2020, V. 112, 110813 doi:10.1016/j.msec.2020.110813, IF=5.88
  375. T.S. Khlebnicova, Yu.A. Piven, F.A. Lakhvich, I.V. Sorokina, T.S. Frolova, D.S. Baev, T.G. Tolstikova
    Betulinic Acid-Azaprostanoid Hybrids: Synthesis and Pharmacological Evaluation as Anti-inflammatory Agents
    Anti-Inflammatory & Anti-Allergy Agents in Medicinal Chemistry, (Formerly Current Medicinal Chemistry - Anti-Inflammatory & Anti-Allergy Agents), 2020, V. 19, N 3, Pp 254-267 doi:10.2174/1871523018666190426152049
  376. T.S. Khlebnicova, Yu.A. Piven, F.A. Lakhvich, I.V. Sorokina, T.S. Frolova, D.S. Baev, T.G. Tolstikova
    Betulinic Acid-Azaprostanoid Hybrids: Synthesis and Pharmacological Evaluation as Anti-inflammatory Agents
    Anti-Inflammatory & Anti-Allergy Agents in Medicinal Chemistry, (Formerly Current Medicinal Chemistry - Anti-Inflammatory & Anti-Allergy Agents), 2020, V. 19, N 3, Pp 254-267 doi:10.2174/1871523018666190426152049
  377. T.S. Khlebnicova, Yu.A. Piven, F.A. Lakhvich, I.V. Sorokina, T.S. Frolova, D.S. Baev, T.G. Tolstikova
    Betulinic Acid-Azaprostanoid Hybrids: Synthesis and Pharmacological Evaluation as Anti-inflammatory Agents
    Anti-Inflammatory & Anti-Allergy Agents in Medicinal Chemistry, (Formerly Current Medicinal Chemistry - Anti-Inflammatory & Anti-Allergy Agents), 2020, V. 19, N 3, Pp 254-267 doi:10.2174/1871523018666190426152049
  378. M. Kruchinina, A. Gromov, V. Kruchinin, M. Shashkov, A. Sokolova, I. Yakovina, N. Bannova
    P-3 Features of metabolic profiles of blood serum and erythrocyte membranes associated with metastasis in colorectal cancer
    Annals of Oncology, 2020, V. 31, Suppl.3, Pp S89-S90 doi:10.1016/j.annonc.2020.04.085
  379. M. Kruchinina, A. Gromov, V. Kruchinin, M. Shashkov, A. Sokolova, I. Yakovina, N. Bannova
    P-3 Features of metabolic profiles of blood serum and erythrocyte membranes associated with metastasis in colorectal cancer
    Annals of Oncology, 2020, V. 31, Suppl.3, Pp S89-S90 doi:10.1016/j.annonc.2020.04.085
  380. M. Kruchinina, A. Gromov, V. Kruchinin, M. Shashkov, A. Sokolova, I. Yakovina, N. Bannova
    P-3 Features of metabolic profiles of blood serum and erythrocyte membranes associated with metastasis in colorectal cancer
    Annals of Oncology, 2020, V. 31, Suppl.3, Pp S89-S90 doi:10.1016/j.annonc.2020.04.085
  381. M. Kruchinina, A. Gromov, V. Kruchinin, M. Shashkov, A. Sokolova, I. Yakovina, N. Bannova
    P-3 Features of metabolic profiles of blood serum and erythrocyte membranes associated with metastasis in colorectal cancer
    Annals of Oncology, 2020, V. 31, Suppl.3, Pp S89-S90 doi:10.1016/j.annonc.2020.04.085
  382. M. Kruchinina, A. Gromov, V. Kruchinin, M. Shashkov, A. Sokolova, I. Yakovina, N. Bannova
    P-3 Features of metabolic profiles of blood serum and erythrocyte membranes associated with metastasis in colorectal cancer
    Annals of Oncology, 2020, V. 31, Suppl.3, Pp S89-S90 doi:10.1016/j.annonc.2020.04.085
  383. M. Kruchinina, A. Gromov, V. Kruchinin, M. Shashkov, A. Sokolova, I. Yakovina, N. Bannova
    P-3 Features of metabolic profiles of blood serum and erythrocyte membranes associated with metastasis in colorectal cancer
    Annals of Oncology, 2020, V. 31, Suppl.3, Pp S89-S90 doi:10.1016/j.annonc.2020.04.085
  384. L.N. Zelenina, K.V. Zherikova, T.P. Chusova, S.V. Trubin, R.A. Bredikhin, N.V. Gelfond, N.B. Morozova
    Comprehensive thermochemical study of sublimation, melting and vaporization of scandium(III) beta-diketonates
    Thermochimica Acta, 2020, V. 689, 178639 doi:10.1016/j.tca.2020.178639, IF=2.762
  385. L.N. Zelenina, K.V. Zherikova, T.P. Chusova, S.V. Trubin, R.A. Bredikhin, N.V. Gelfond, N.B. Morozova
    Comprehensive thermochemical study of sublimation, melting and vaporization of scandium(III) beta-diketonates
    Thermochimica Acta, 2020, V. 689, 178639 doi:10.1016/j.tca.2020.178639, IF=2.762
  386. L.N. Zelenina, K.V. Zherikova, T.P. Chusova, S.V. Trubin, R.A. Bredikhin, N.V. Gelfond, N.B. Morozova
    Comprehensive thermochemical study of sublimation, melting and vaporization of scandium(III) beta-diketonates
    Thermochimica Acta, 2020, V. 689, 178639 doi:10.1016/j.tca.2020.178639, IF=2.762
  387. L.N. Zelenina, K.V. Zherikova, T.P. Chusova, S.V. Trubin, R.A. Bredikhin, N.V. Gelfond, N.B. Morozova
    Comprehensive thermochemical study of sublimation, melting and vaporization of scandium(III) beta-diketonates
    Thermochimica Acta, 2020, V. 689, 178639 doi:10.1016/j.tca.2020.178639, IF=2.762
  388. L.N. Zelenina, K.V. Zherikova, T.P. Chusova, S.V. Trubin, R.A. Bredikhin, N.V. Gelfond, N.B. Morozova
    Comprehensive thermochemical study of sublimation, melting and vaporization of scandium(III) beta-diketonates
    Thermochimica Acta, 2020, V. 689, 178639 doi:10.1016/j.tca.2020.178639, IF=2.762
  389. L.N. Zelenina, K.V. Zherikova, T.P. Chusova, S.V. Trubin, R.A. Bredikhin, N.V. Gelfond, N.B. Morozova
    Comprehensive thermochemical study of sublimation, melting and vaporization of scandium(III) beta-diketonates
    Thermochimica Acta, 2020, V. 689, 178639 doi:10.1016/j.tca.2020.178639, IF=2.762
  390. A.Yu. Sidorenko, A.V. Kravtsova, P. Maki-Arvela, A. Aho, T. Sandberg, I.V. Il'ina, N.S. Li-Zhulanov, D.V. Korchagina, K.P. Volcho, N.F. Salakhutdinov, D.Yu. Murzin, V.E. Agabekov
    Synthesis of isobenzofuran derivatives from renewable 2-carene over halloysite nanotubes
    Molecular Catalysis, 2020, V. 490, 110974 doi:10.1016/j.mcat.2020.110974, IF=3.687
  391. A.Yu. Sidorenko, A.V. Kravtsova, P. Maki-Arvela, A. Aho, T. Sandberg, I.V. Il'ina, N.S. Li-Zhulanov, D.V. Korchagina, K.P. Volcho, N.F. Salakhutdinov, D.Yu. Murzin, V.E. Agabekov
    Synthesis of isobenzofuran derivatives from renewable 2-carene over halloysite nanotubes
    Molecular Catalysis, 2020, V. 490, 110974 doi:10.1016/j.mcat.2020.110974, IF=3.687
  392. A.Yu. Sidorenko, A.V. Kravtsova, P. Maki-Arvela, A. Aho, T. Sandberg, I.V. Il'ina, N.S. Li-Zhulanov, D.V. Korchagina, K.P. Volcho, N.F. Salakhutdinov, D.Yu. Murzin, V.E. Agabekov
    Synthesis of isobenzofuran derivatives from renewable 2-carene over halloysite nanotubes
    Molecular Catalysis, 2020, V. 490, 110974 doi:10.1016/j.mcat.2020.110974, IF=3.687
  393. A.Yu. Sidorenko, A.V. Kravtsova, P. Maki-Arvela, A. Aho, T. Sandberg, I.V. Il'ina, N.S. Li-Zhulanov, D.V. Korchagina, K.P. Volcho, N.F. Salakhutdinov, D.Yu. Murzin, V.E. Agabekov
    Synthesis of isobenzofuran derivatives from renewable 2-carene over halloysite nanotubes
    Molecular Catalysis, 2020, V. 490, 110974 doi:10.1016/j.mcat.2020.110974, IF=3.687
  394. A.Yu. Sidorenko, A.V. Kravtsova, P. Maki-Arvela, A. Aho, T. Sandberg, I.V. Il'ina, N.S. Li-Zhulanov, D.V. Korchagina, K.P. Volcho, N.F. Salakhutdinov, D.Yu. Murzin, V.E. Agabekov
    Synthesis of isobenzofuran derivatives from renewable 2-carene over halloysite nanotubes
    Molecular Catalysis, 2020, V. 490, 110974 doi:10.1016/j.mcat.2020.110974, IF=3.687
  395. A.Yu. Sidorenko, A.V. Kravtsova, P. Maki-Arvela, A. Aho, T. Sandberg, I.V. Il'ina, N.S. Li-Zhulanov, D.V. Korchagina, K.P. Volcho, N.F. Salakhutdinov, D.Yu. Murzin, V.E. Agabekov
    Synthesis of isobenzofuran derivatives from renewable 2-carene over halloysite nanotubes
    Molecular Catalysis, 2020, V. 490, 110974 doi:10.1016/j.mcat.2020.110974, IF=3.687
  396. A.Yu. Sidorenko, A.V. Kravtsova, P. Maki-Arvela, A. Aho, T. Sandberg, I.V. Il'ina, N.S. Li-Zhulanov, D.V. Korchagina, K.P. Volcho, N.F. Salakhutdinov, D.Yu. Murzin, V.E. Agabekov
    Synthesis of isobenzofuran derivatives from renewable 2-carene over halloysite nanotubes
    Molecular Catalysis, 2020, V. 490, 110974 doi:10.1016/j.mcat.2020.110974, IF=3.687
  397. И.К. Шундрина, И.В. Олейник, В.И. Пастухов, Л.А. Шундрин, В.С. Черноносова, П.П. Лактионов
    Синтез полимеров уретанового типа с полидиметилсилоксановыми блоками для изготовления волокнистых матриксов методом электроформования
    Высокомолекулярные соединения. Серия Б. 2020. Т. 62. № 4. С. 306-314, doi: 10.31857/S2308113920040099 (Synthesis of Urethane-Type Polymers with Polydimethylsiloxane Blocks for the Manufacture of Fibrous Matrices by Electrospinning/ I. K. Shundrina, I. V. Oleinik, V. I. Pastukhov, L. A. Shundrin, V. S. Chernonosova & P. P. Laktionov// Polymer Science, Series B, 2020, V. 62, N 4, Pp 385-393 doi:10.1134/S1560090420040090), IF=0.976
  398. И.К. Шундрина, И.В. Олейник, В.И. Пастухов, Л.А. Шундрин, В.С. Черноносова, П.П. Лактионов
    Синтез полимеров уретанового типа с полидиметилсилоксановыми блоками для изготовления волокнистых матриксов методом электроформования
    Высокомолекулярные соединения. Серия Б. 2020. Т. 62. № 4. С. 306-314, doi: 10.31857/S2308113920040099 (Synthesis of Urethane-Type Polymers with Polydimethylsiloxane Blocks for the Manufacture of Fibrous Matrices by Electrospinning/ I. K. Shundrina, I. V. Oleinik, V. I. Pastukhov, L. A. Shundrin, V. S. Chernonosova & P. P. Laktionov// Polymer Science, Series B, 2020, V. 62, N 4, Pp 385-393 doi:10.1134/S1560090420040090), IF=0.976
  399. Е.Ю. Яковлева, Е.Е. Барановская, И.К. Шундрина, Е.Ю. Герасимов
    Влияние способа синтеза высокофторированного полиимида на свойства адсорбента, приготовленного на его основе
    Журнал физической химии. 2020. Т. 94. № 7. С. 1099-1104. DOI: 10.31857/S0044453720070328 (Effect of the Means Used to Synthesize Highly Fluorinated Polyimide on the Properties of an Adsorbent Prepared on Its Basis/ E. Yu. Yakovleva, E. E. Baranovskaya, I. K. Shundrina & E. Yu. Gerasimov// Russian Journal of Physical Chemistry A, 2020, V. 94, N 7, Pp 1476-1481 doi:10.1134/S0036024420070328), IF=0.719
  400. Е.Ю. Яковлева, Е.Е. Барановская, И.К. Шундрина, Е.Ю. Герасимов
    Влияние способа синтеза высокофторированного полиимида на свойства адсорбента, приготовленного на его основе
    Журнал физической химии. 2020. Т. 94. № 7. С. 1099-1104. DOI: 10.31857/S0044453720070328 (Effect of the Means Used to Synthesize Highly Fluorinated Polyimide on the Properties of an Adsorbent Prepared on Its Basis/ E. Yu. Yakovleva, E. E. Baranovskaya, I. K. Shundrina & E. Yu. Gerasimov// Russian Journal of Physical Chemistry A, 2020, V. 94, N 7, Pp 1476-1481 doi:10.1134/S0036024420070328), IF=0.719
  401. Е.Ю. Яковлева, Е.Е. Барановская, И.К. Шундрина, Е.Ю. Герасимов
    Влияние способа синтеза высокофторированного полиимида на свойства адсорбента, приготовленного на его основе
    Журнал физической химии. 2020. Т. 94. № 7. С. 1099-1104. DOI: 10.31857/S0044453720070328 (Effect of the Means Used to Synthesize Highly Fluorinated Polyimide on the Properties of an Adsorbent Prepared on Its Basis/ E. Yu. Yakovleva, E. E. Baranovskaya, I. K. Shundrina & E. Yu. Gerasimov// Russian Journal of Physical Chemistry A, 2020, V. 94, N 7, Pp 1476-1481 doi:10.1134/S0036024420070328), IF=0.719
  402. A.Yu. Makarov, I.Yu. Bagryanskaya, V.V. Zhivonitko
    Interaction of 1,3λ4δ2,2,4-benzodithiadiazines with neutral and charged S-electrophiles: SCl2, C6F5SCl, and NS2+
    Chemistry of Heterocyclic Compounds, 2020, V. 56, N 7, Pp. 968-972 doi:10.1007/s10593-020-02760-y, IF=1.519
  403. A. M. Genaev, G. E. Salnikov, K.Yu. Koltunov
    Influence of Positive Charge on the NMR Parameters of Mono- and Diprotonated Forms of 4-Dimethylaminopyridine
    Chemistry of Heterocyclic Compounds, 2020, V. 56, N 7, Pp 892-897 doi:10.1007/s10593-020-02749-7, IF=1.519
  404. О.Ю. Мазурков, Л.Н. Шишкина, Н.И. Бормотов, М.О. Скарнович, О.А. Серова, Н.А. Мазуркова, А.А. Черноносов, А.Я. Тихонов, Б.А. Селиванов
    Оценка абсолютной биодоступности химической субстанции противооспенного препарата НИОХ-14 в экспериментах на мышах
    Бюллетень экспериментальной биологии и медицины. 2020. Т. 170. № 8. С. 173-177. (Estimation of absolute bioavailability of the chemical substance of the anti-smallpox preparation NIOCH-14 in experiments with mice/ MAZURKOV O. YU.1, SHISHKINA L. N.1, BORMOTOV N. I.1, SKARNOVICH M. O.1, SEROVA O. A.1, MAZURKOVA N. A.1, CHERNONOSOV A. A.2, TIKHONOV A. YA.3, SELIVANOV B. A.3// Bulletin of Experimental Biology and Medicine), IF=0.774
  405. О.Ю. Мазурков, Л.Н. Шишкина, Н.И. Бормотов, М.О. Скарнович, О.А. Серова, Н.А. Мазуркова, А.А. Черноносов, А.Я. Тихонов, Б.А. Селиванов
    Оценка абсолютной биодоступности химической субстанции противооспенного препарата НИОХ-14 в экспериментах на мышах
    Бюллетень экспериментальной биологии и медицины. 2020. Т. 170. № 8. С. 173-177. (Estimation of absolute bioavailability of the chemical substance of the anti-smallpox preparation NIOCH-14 in experiments with mice/ MAZURKOV O. YU.1, SHISHKINA L. N.1, BORMOTOV N. I.1, SKARNOVICH M. O.1, SEROVA O. A.1, MAZURKOVA N. A.1, CHERNONOSOV A. A.2, TIKHONOV A. YA.3, SELIVANOV B. A.3// Bulletin of Experimental Biology and Medicine), IF=0.774
  406. О.Ю. Мазурков, Л.Н. Шишкина, Н.И. Бормотов, М.О. Скарнович, О.А. Серова, Н.А. Мазуркова, А.А. Черноносов, А.Я. Тихонов, Б.А. Селиванов
    Оценка абсолютной биодоступности химической субстанции противооспенного препарата НИОХ-14 в экспериментах на мышах
    Бюллетень экспериментальной биологии и медицины. 2020. Т. 170. № 8. С. 173-177. (Estimation of absolute bioavailability of the chemical substance of the anti-smallpox preparation NIOCH-14 in experiments with mice/ MAZURKOV O. YU.1, SHISHKINA L. N.1, BORMOTOV N. I.1, SKARNOVICH M. O.1, SEROVA O. A.1, MAZURKOVA N. A.1, CHERNONOSOV A. A.2, TIKHONOV A. YA.3, SELIVANOV B. A.3// Bulletin of Experimental Biology and Medicine), IF=0.774
  407. О.Ю. Мазурков, Л.Н. Шишкина, Н.И. Бормотов, М.О. Скарнович, О.А. Серова, Н.А. Мазуркова, А.А. Черноносов, А.Я. Тихонов, Б.А. Селиванов
    Оценка абсолютной биодоступности химической субстанции противооспенного препарата НИОХ-14 в экспериментах на мышах
    Бюллетень экспериментальной биологии и медицины. 2020. Т. 170. № 8. С. 173-177. (Estimation of absolute bioavailability of the chemical substance of the anti-smallpox preparation NIOCH-14 in experiments with mice/ MAZURKOV O. YU.1, SHISHKINA L. N.1, BORMOTOV N. I.1, SKARNOVICH M. O.1, SEROVA O. A.1, MAZURKOVA N. A.1, CHERNONOSOV A. A.2, TIKHONOV A. YA.3, SELIVANOV B. A.3// Bulletin of Experimental Biology and Medicine), IF=0.774
  408. О.Ю. Мазурков, Л.Н. Шишкина, Н.И. Бормотов, М.О. Скарнович, О.А. Серова, Н.А. Мазуркова, А.А. Черноносов, А.Я. Тихонов, Б.А. Селиванов
    Оценка абсолютной биодоступности химической субстанции противооспенного препарата НИОХ-14 в экспериментах на мышах
    Бюллетень экспериментальной биологии и медицины. 2020. Т. 170. № 8. С. 173-177. (Estimation of absolute bioavailability of the chemical substance of the anti-smallpox preparation NIOCH-14 in experiments with mice/ MAZURKOV O. YU.1, SHISHKINA L. N.1, BORMOTOV N. I.1, SKARNOVICH M. O.1, SEROVA O. A.1, MAZURKOVA N. A.1, CHERNONOSOV A. A.2, TIKHONOV A. YA.3, SELIVANOV B. A.3// Bulletin of Experimental Biology and Medicine), IF=0.774
  409. О.Ю. Мазурков, Л.Н. Шишкина, Н.И. Бормотов, М.О. Скарнович, О.А. Серова, Н.А. Мазуркова, А.А. Черноносов, А.Я. Тихонов, Б.А. Селиванов
    Оценка абсолютной биодоступности химической субстанции противооспенного препарата НИОХ-14 в экспериментах на мышах
    Бюллетень экспериментальной биологии и медицины. 2020. Т. 170. № 8. С. 173-177. (Estimation of absolute bioavailability of the chemical substance of the anti-smallpox preparation NIOCH-14 in experiments with mice/ MAZURKOV O. YU.1, SHISHKINA L. N.1, BORMOTOV N. I.1, SKARNOVICH M. O.1, SEROVA O. A.1, MAZURKOVA N. A.1, CHERNONOSOV A. A.2, TIKHONOV A. YA.3, SELIVANOV B. A.3// Bulletin of Experimental Biology and Medicine), IF=0.774
  410. О.Ю. Мазурков, Л.Н. Шишкина, Н.И. Бормотов, М.О. Скарнович, О.А. Серова, Н.А. Мазуркова, А.А. Черноносов, А.Я. Тихонов, Б.А. Селиванов
    Оценка абсолютной биодоступности химической субстанции противооспенного препарата НИОХ-14 в экспериментах на мышах
    Бюллетень экспериментальной биологии и медицины. 2020. Т. 170. № 8. С. 173-177. (Estimation of absolute bioavailability of the chemical substance of the anti-smallpox preparation NIOCH-14 in experiments with mice/ MAZURKOV O. YU.1, SHISHKINA L. N.1, BORMOTOV N. I.1, SKARNOVICH M. O.1, SEROVA O. A.1, MAZURKOVA N. A.1, CHERNONOSOV A. A.2, TIKHONOV A. YA.3, SELIVANOV B. A.3// Bulletin of Experimental Biology and Medicine), IF=0.774
  411. A.V. Artemev, M.I. Rakhmanova, K.A. Brylev, I.Yu. Bagryanskaya
    A new Сu(i) iodide complex showing deep-red luminescence
    Журнал структурной химии. 2020. Т. 61. № 7. С. 1131-1134. (doi:10.26902/JSC_id58729) (A new Сu(i) iodide complex showing deep-red luminescence/ A.V. Artemev, M.I. Rakhmanova, K.A. Brylev, I.Yu. Bagryanskaya// Journal of Structural Chemistry, 2020, V. 61, N 7, Pp 1068-1071Journal of Structural Chemistry, 2020, V. 61, N 7, Pp 1068-1071 doi:10.1134/S0022476620070082), IF=0.745
  412. A.V. Artemev, M.I. Rakhmanova, K.A. Brylev, I.Yu. Bagryanskaya
    A new Сu(i) iodide complex showing deep-red luminescence
    Журнал структурной химии. 2020. Т. 61. № 7. С. 1131-1134. (doi:10.26902/JSC_id58729) (A new Сu(i) iodide complex showing deep-red luminescence/ A.V. Artemev, M.I. Rakhmanova, K.A. Brylev, I.Yu. Bagryanskaya// Journal of Structural Chemistry, 2020, V. 61, N 7, Pp 1068-1071Journal of Structural Chemistry, 2020, V. 61, N 7, Pp 1068-1071 doi:10.1134/S0022476620070082), IF=0.745
  413. A.V. Artemev, M.I. Rakhmanova, K.A. Brylev, I.Yu. Bagryanskaya
    A new Сu(i) iodide complex showing deep-red luminescence
    Журнал структурной химии. 2020. Т. 61. № 7. С. 1131-1134. (doi:10.26902/JSC_id58729) (A new Сu(i) iodide complex showing deep-red luminescence/ A.V. Artemev, M.I. Rakhmanova, K.A. Brylev, I.Yu. Bagryanskaya// Journal of Structural Chemistry, 2020, V. 61, N 7, Pp 1068-1071Journal of Structural Chemistry, 2020, V. 61, N 7, Pp 1068-1071 doi:10.1134/S0022476620070082), IF=0.745
  414. A.V. Artem'ev, M.I. Rakhmanova, K.A. Brylev, I.Yu. Bagryanskaya
    A NEW Cu(I) IODIDE COMPLEX SHOWING DEEP-RED LUMINESCENCE
    Journal of Structural Chemistry, 2020, V. 61, N 7, pages1068-1071 doi:10.1134/S0022476620070082, IF=0.745
  415. A.V. Artem'ev, M.I. Rakhmanova, K.A. Brylev, I.Yu. Bagryanskaya
    A NEW Cu(I) IODIDE COMPLEX SHOWING DEEP-RED LUMINESCENCE
    Journal of Structural Chemistry, 2020, V. 61, N 7, pages1068-1071 doi:10.1134/S0022476620070082, IF=0.745
  416. A.V. Artem'ev, M.I. Rakhmanova, K.A. Brylev, I.Yu. Bagryanskaya
    A NEW Cu(I) IODIDE COMPLEX SHOWING DEEP-RED LUMINESCENCE
    Journal of Structural Chemistry, 2020, V. 61, N 7, pages1068-1071 doi:10.1134/S0022476620070082, IF=0.745
  417. В.Н. Ковтонюк, Х. Хань, Ю.В. Гатилов
    Синтез полифторированных тетраоксакаликс[4]аренов при взаимодействии пентафторнитробензола с резорцином, орцинолом и тетрафторрезорцином
    Журнал органической химии. 2020. Т. 56. № 7. С. 1030-1038. (Synthesis of polyfluorinated tetraoxacalix[4]arenes by the interaction of pentafluoronitrobenzene with resorcinol, orcinol, and tetrafluororesorcinol/ Kovtonyuk V. N., Han H., Gatilov Yu. V.// Russian Journal of Organic Chemistry, 2020 doi:10.31857/S0514749220070058), IF=0.751
  418. В.Н. Ковтонюк, Х. Хань, Ю.В. Гатилов
    Синтез полифторированных тетраоксакаликс[4]аренов при взаимодействии пентафторнитробензола с резорцином, орцинолом и тетрафторрезорцином
    Журнал органической химии. 2020. Т. 56. № 7. С. 1030-1038. (Synthesis of polyfluorinated tetraoxacalix[4]arenes by the interaction of pentafluoronitrobenzene with resorcinol, orcinol, and tetrafluororesorcinol/ Kovtonyuk V. N., Han H., Gatilov Yu. V.// Russian Journal of Organic Chemistry, 2020 doi:10.31857/S0514749220070058), IF=0.751
  419. T.E. Kokina, M.I. Rakhmanova, N.A. Shekhovtsov, L.A. Glinskaya, V.Y. Komarov, A.M. Agafontsev, A.Y. Baranov, P.E. Plyusnin, L.A. Sheludyakova, A.V. Tkachev, M.B. Bushuev
    Luminescent Zn(ii) and Cd(ii) complexes with chiral 2,2э-bipyridine ligands bearing natural monoterpene groups: synthesis, speciation in solution and photophysics
    Dalton Trans., 2020, V. 49, N 22, Pp 7552-7563 doi:10.1039/D0DT01438A, IF=4.174
  420. T.E. Kokina, M.I. Rakhmanova, N.A. Shekhovtsov, L.A. Glinskaya, V.Y. Komarov, A.M. Agafontsev, A.Y. Baranov, P.E. Plyusnin, L.A. Sheludyakova, A.V. Tkachev, M.B. Bushuev
    Luminescent Zn(ii) and Cd(ii) complexes with chiral 2,2э-bipyridine ligands bearing natural monoterpene groups: synthesis, speciation in solution and photophysics
    Dalton Trans., 2020, V. 49, N 22, Pp 7552-7563 doi:10.1039/D0DT01438A, IF=4.174
  421. T.E. Kokina, M.I. Rakhmanova, N.A. Shekhovtsov, L.A. Glinskaya, V.Y. Komarov, A.M. Agafontsev, A.Y. Baranov, P.E. Plyusnin, L.A. Sheludyakova, A.V. Tkachev, M.B. Bushuev
    Luminescent Zn(ii) and Cd(ii) complexes with chiral 2,2э-bipyridine ligands bearing natural monoterpene groups: synthesis, speciation in solution and photophysics
    Dalton Trans., 2020, V. 49, N 22, Pp 7552-7563 doi:10.1039/D0DT01438A, IF=4.174
  422. T.E. Kokina, M.I. Rakhmanova, N.A. Shekhovtsov, L.A. Glinskaya, V.Y. Komarov, A.M. Agafontsev, A.Y. Baranov, P.E. Plyusnin, L.A. Sheludyakova, A.V. Tkachev, M.B. Bushuev
    Luminescent Zn(ii) and Cd(ii) complexes with chiral 2,2э-bipyridine ligands bearing natural monoterpene groups: synthesis, speciation in solution and photophysics
    Dalton Trans., 2020, V. 49, N 22, Pp 7552-7563 doi:10.1039/D0DT01438A, IF=4.174
  423. T.E. Kokina, M.I. Rakhmanova, N.A. Shekhovtsov, L.A. Glinskaya, V.Y. Komarov, A.M. Agafontsev, A.Y. Baranov, P.E. Plyusnin, L.A. Sheludyakova, A.V. Tkachev, M.B. Bushuev
    Luminescent Zn(ii) and Cd(ii) complexes with chiral 2,2э-bipyridine ligands bearing natural monoterpene groups: synthesis, speciation in solution and photophysics
    Dalton Trans., 2020, V. 49, N 22, Pp 7552-7563 doi:10.1039/D0DT01438A, IF=4.174
  424. T.E. Kokina, M.I. Rakhmanova, N.A. Shekhovtsov, L.A. Glinskaya, V.Y. Komarov, A.M. Agafontsev, A.Y. Baranov, P.E. Plyusnin, L.A. Sheludyakova, A.V. Tkachev, M.B. Bushuev
    Luminescent Zn(ii) and Cd(ii) complexes with chiral 2,2э-bipyridine ligands bearing natural monoterpene groups: synthesis, speciation in solution and photophysics
    Dalton Trans., 2020, V. 49, N 22, Pp 7552-7563 doi:10.1039/D0DT01438A, IF=4.174
  425. T.E. Kokina, M.I. Rakhmanova, N.A. Shekhovtsov, L.A. Glinskaya, V.Y. Komarov, A.M. Agafontsev, A.Y. Baranov, P.E. Plyusnin, L.A. Sheludyakova, A.V. Tkachev, M.B. Bushuev
    Luminescent Zn(ii) and Cd(ii) complexes with chiral 2,2э-bipyridine ligands bearing natural monoterpene groups: synthesis, speciation in solution and photophysics
    Dalton Trans., 2020, V. 49, N 22, Pp 7552-7563 doi:10.1039/D0DT01438A, IF=4.174
  426. T.E. Kokina, M.I. Rakhmanova, N.A. Shekhovtsov, L.A. Glinskaya, V.Y. Komarov, A.M. Agafontsev, A.Y. Baranov, P.E. Plyusnin, L.A. Sheludyakova, A.V. Tkachev, M.B. Bushuev
    Luminescent Zn(ii) and Cd(ii) complexes with chiral 2,2э-bipyridine ligands bearing natural monoterpene groups: synthesis, speciation in solution and photophysics
    Dalton Trans., 2020, V. 49, N 22, Pp 7552-7563 doi:10.1039/D0DT01438A, IF=4.174
  427. T.E. Kokina, M.I. Rakhmanova, N.A. Shekhovtsov, L.A. Glinskaya, V.Y. Komarov, A.M. Agafontsev, A.Y. Baranov, P.E. Plyusnin, L.A. Sheludyakova, A.V. Tkachev, M.B. Bushuev
    Luminescent Zn(ii) and Cd(ii) complexes with chiral 2,2э-bipyridine ligands bearing natural monoterpene groups: synthesis, speciation in solution and photophysics
    Dalton Trans., 2020, V. 49, N 22, Pp 7552-7563 doi:10.1039/D0DT01438A, IF=4.174
  428. P. Fedyushin, T. Rybalova, N. Asanbaeva, E. Bagryanskaya, A. Dmitriev, N. Gritsan, M. Kazantsev, E. Tretyakov
    Synthesis of Nitroxide Diradical Using a New Approach
    Molecules 2020, 25(11), 2701 doi:10.3390/molecules25112701, IF=3.267
  429. P. Fedyushin, T. Rybalova, N. Asanbaeva, E. Bagryanskaya, A. Dmitriev, N. Gritsan, M. Kazantsev, E. Tretyakov
    Synthesis of Nitroxide Diradical Using a New Approach
    Molecules 2020, 25(11), 2701 doi:10.3390/molecules25112701, IF=3.267
  430. N. Sannikova, I. Timofeev, E. Bagryanskaya, M. Bowman, M. Fedin, O. Krumkacheva
    Electron Spin Relaxation of Photoexcited Porphyrin in Water-Glycerol Glass
    Molecules 2020, 25(11), 2677 doi:10.3390/molecules25112677, IF=3.267
  431. N. Sannikova, I. Timofeev, E. Bagryanskaya, M. Bowman, M. Fedin, O. Krumkacheva
    Electron Spin Relaxation of Photoexcited Porphyrin in Water-Glycerol Glass
    Molecules 2020, 25(11), 2677 doi:10.3390/molecules25112677, IF=3.267
  432. N. Sannikova, I. Timofeev, E. Bagryanskaya, M. Bowman, M. Fedin, O. Krumkacheva
    Electron Spin Relaxation of Photoexcited Porphyrin in Water-Glycerol Glass
    Molecules 2020, 25(11), 2677 doi:10.3390/molecules25112677, IF=3.267
  433. N. Sannikova, I. Timofeev, E. Bagryanskaya, M. Bowman, M. Fedin, O. Krumkacheva
    Electron Spin Relaxation of Photoexcited Porphyrin in Water-Glycerol Glass
    Molecules 2020, 25(11), 2677 doi:10.3390/molecules25112677, IF=3.267
  434. A.V. Artem'ev, A.S. Berezin, I.V. Taidakov, I.Yu. Bagryanskaya
    Synthesis of dual emitting iodocuprates: can solvents switch the reaction outcome?
    Inorg. Chem. Front., 2020, V. 7, N 11, Pp 2195-2203 doi:10.1039/D0QI00346H, IF=5.958
  435. A.V. Artem'ev, A.S. Berezin, I.V. Taidakov, I.Yu. Bagryanskaya
    Synthesis of dual emitting iodocuprates: can solvents switch the reaction outcome?
    Inorg. Chem. Front., 2020, V. 7, N 11, Pp 2195-2203 doi:10.1039/D0QI00346H, IF=5.958
  436. A.V. Artem'ev, A.S. Berezin, I.V. Taidakov, I.Yu. Bagryanskaya
    Synthesis of dual emitting iodocuprates: can solvents switch the reaction outcome?
    Inorg. Chem. Front., 2020, V. 7, N 11, Pp 2195-2203 doi:10.1039/D0QI00346H, IF=5.958
  437. Н.Э. Поляков, С.В. Валиулин, А.А. Онищук, Т.Г. Толстикова
    Новые подходы к повышению эффективности нестероидных противовоспалительных средств с использованием наноразмерных систем доставки
    Российский нейрохирургический журнал им. профессора А.Л. Поленова. 2020. Т. 12. № 2. С. 79-85. (NEW APPROACHES TO INCREASING THE EFFECTIVENESS OF NON-STEROIDAL ANTI-INFLAMMATORY DRUGS USING NANOSCALE DELIVERY SYSTEMS/ POLYAKOV N. E., VALIULIN S. V., ONISCHUK A. A., TOLSTIKOVA T. G.// )
  438. Н.Э. Поляков, С.В. Валиулин, А.А. Онищук, Т.Г. Толстикова
    Новые подходы к повышению эффективности нестероидных противовоспалительных средств с использованием наноразмерных систем доставки
    Российский нейрохирургический журнал им. профессора А.Л. Поленова. 2020. Т. 12. № 2. С. 79-85. (NEW APPROACHES TO INCREASING THE EFFECTIVENESS OF NON-STEROIDAL ANTI-INFLAMMATORY DRUGS USING NANOSCALE DELIVERY SYSTEMS/ POLYAKOV N. E., VALIULIN S. V., ONISCHUK A. A., TOLSTIKOVA T. G.// )
  439. Н.Э. Поляков, С.В. Валиулин, А.А. Онищук, Т.Г. Толстикова
    Новые подходы к повышению эффективности нестероидных противовоспалительных средств с использованием наноразмерных систем доставки
    Российский нейрохирургический журнал им. профессора А.Л. Поленова. 2020. Т. 12. № 2. С. 79-85. (NEW APPROACHES TO INCREASING THE EFFECTIVENESS OF NON-STEROIDAL ANTI-INFLAMMATORY DRUGS USING NANOSCALE DELIVERY SYSTEMS/ POLYAKOV N. E., VALIULIN S. V., ONISCHUK A. A., TOLSTIKOVA T. G.// )
  440. D.V. Spiryova, A.Yu. Vorobev, V.V. Klimontov, E.A. Koroleva, A.E. Moskalensky
    Optical uncaging of adp reveals the early calcium dynamics in single, freely moving platelets
    Biomedical Optics Express. 2020. V. 11. № 6. Pp. 3319-3330 doi:10.1364/BOE.392745, IF=3.91
  441. D.V. Spiryova, A.Yu. Vorobev, V.V. Klimontov, E.A. Koroleva, A.E. Moskalensky
    Optical uncaging of adp reveals the early calcium dynamics in single, freely moving platelets
    Biomedical Optics Express. 2020. V. 11. № 6. Pp. 3319-3330 doi:10.1364/BOE.392745, IF=3.91
  442. D.V. Spiryova, A.Yu. Vorobev, V.V. Klimontov, E.A. Koroleva, A.E. Moskalensky
    Optical uncaging of adp reveals the early calcium dynamics in single, freely moving platelets
    Biomedical Optics Express. 2020. V. 11. № 6. Pp. 3319-3330 doi:10.1364/BOE.392745, IF=3.91
  443. D.V. Spiryova, A.Yu. Vorobev, V.V. Klimontov, E.A. Koroleva, A.E. Moskalensky
    Optical uncaging of adp reveals the early calcium dynamics in single, freely moving platelets
    Biomedical Optics Express. 2020. V. 11. № 6. Pp. 3319-3330 doi:10.1364/BOE.392745, IF=3.91
  444. E.G. Kovaleva, L.S. Molochnikov, D. Tambasova, A. Marek, M. Chestnut, V.A. Osipova, D.O. Antonov, I.A. Kirilyuk, A. Smirnov
    Electrostatic Properties of Inner Nanopore Surfaces of Anodic Aluminum Oxide Membranes upon High Temperature Annealing Revealed by EPR of pH-sensitive Spin Probes and Labels
    Journal of Membrane Science, V. 604, 1 June 2020, 118084 doi:10.1016/j.memsci.2020.118084, IF=7.183
  445. E.G. Kovaleva, L.S. Molochnikov, D. Tambasova, A. Marek, M. Chestnut, V.A. Osipova, D.O. Antonov, I.A. Kirilyuk, A. Smirnov
    Electrostatic Properties of Inner Nanopore Surfaces of Anodic Aluminum Oxide Membranes upon High Temperature Annealing Revealed by EPR of pH-sensitive Spin Probes and Labels
    Journal of Membrane Science, V. 604, 1 June 2020, 118084 doi:10.1016/j.memsci.2020.118084, IF=7.183
  446. E.G. Kovaleva, L.S. Molochnikov, D. Tambasova, A. Marek, M. Chestnut, V.A. Osipova, D.O. Antonov, I.A. Kirilyuk, A. Smirnov
    Electrostatic Properties of Inner Nanopore Surfaces of Anodic Aluminum Oxide Membranes upon High Temperature Annealing Revealed by EPR of pH-sensitive Spin Probes and Labels
    Journal of Membrane Science, V. 604, 1 June 2020, 118084 doi:10.1016/j.memsci.2020.118084, IF=7.183
  447. E.G. Kovaleva, L.S. Molochnikov, D. Tambasova, A. Marek, M. Chestnut, V.A. Osipova, D.O. Antonov, I.A. Kirilyuk, A. Smirnov
    Electrostatic Properties of Inner Nanopore Surfaces of Anodic Aluminum Oxide Membranes upon High Temperature Annealing Revealed by EPR of pH-sensitive Spin Probes and Labels
    Journal of Membrane Science, V. 604, 1 June 2020, 118084 doi:10.1016/j.memsci.2020.118084, IF=7.183
  448. E.G. Kovaleva, L.S. Molochnikov, D. Tambasova, A. Marek, M. Chestnut, V.A. Osipova, D.O. Antonov, I.A. Kirilyuk, A. Smirnov
    Electrostatic Properties of Inner Nanopore Surfaces of Anodic Aluminum Oxide Membranes upon High Temperature Annealing Revealed by EPR of pH-sensitive Spin Probes and Labels
    Journal of Membrane Science, V. 604, 1 June 2020, 118084 doi:10.1016/j.memsci.2020.118084, IF=7.183
  449. E.G. Kovaleva, L.S. Molochnikov, D. Tambasova, A. Marek, M. Chestnut, V.A. Osipova, D.O. Antonov, I.A. Kirilyuk, A. Smirnov
    Electrostatic Properties of Inner Nanopore Surfaces of Anodic Aluminum Oxide Membranes upon High Temperature Annealing Revealed by EPR of pH-sensitive Spin Probes and Labels
    Journal of Membrane Science, V. 604, 1 June 2020, 118084 doi:10.1016/j.memsci.2020.118084, IF=7.183
  450. E.G. Kovaleva, L.S. Molochnikov, D. Tambasova, A. Marek, M. Chestnut, V.A. Osipova, D.O. Antonov, I.A. Kirilyuk, A. Smirnov
    Electrostatic Properties of Inner Nanopore Surfaces of Anodic Aluminum Oxide Membranes upon High Temperature Annealing Revealed by EPR of pH-sensitive Spin Probes and Labels
    Journal of Membrane Science, V. 604, 1 June 2020, 118084 doi:10.1016/j.memsci.2020.118084, IF=7.183
  451. E.G. Kovaleva, L.S. Molochnikov, D. Tambasova, A. Marek, M. Chestnut, V.A. Osipova, D.O. Antonov, I.A. Kirilyuk, A. Smirnov
    Electrostatic Properties of Inner Nanopore Surfaces of Anodic Aluminum Oxide Membranes upon High Temperature Annealing Revealed by EPR of pH-sensitive Spin Probes and Labels
    Journal of Membrane Science, V. 604, 1 June 2020, 118084 doi:10.1016/j.memsci.2020.118084, IF=7.183
  452. E.G. Kovaleva, L.S. Molochnikov, D. Tambasova, A. Marek, M. Chestnut, V.A. Osipova, D.O. Antonov, I.A. Kirilyuk, A. Smirnov
    Electrostatic Properties of Inner Nanopore Surfaces of Anodic Aluminum Oxide Membranes upon High Temperature Annealing Revealed by EPR of pH-sensitive Spin Probes and Labels
    Journal of Membrane Science, V. 604, 1 June 2020, 118084 doi:10.1016/j.memsci.2020.118084, IF=7.183
  453. S.O. Kuranov, O.A. Luzina, O. Onopchenko, I. Pishel, S. Zozulya, M. Gureev, N.F. Salakhutdinov, M. Krasavin
    Exploring bulky natural and natural-like periphery in the design of p-(benzyloxy)phenylpropionic acid agonists of free fatty acid receptor 1 (GPR40)
    Bioorganic Chemistry Volume 99, June 2020, 103830 doi:10.1016/j.bioorg.2020.103830, IF=4.567
  454. S.O. Kuranov, O.A. Luzina, O. Onopchenko, I. Pishel, S. Zozulya, M. Gureev, N.F. Salakhutdinov, M. Krasavin
    Exploring bulky natural and natural-like periphery in the design of p-(benzyloxy)phenylpropionic acid agonists of free fatty acid receptor 1 (GPR40)
    Bioorganic Chemistry Volume 99, June 2020, 103830 doi:10.1016/j.bioorg.2020.103830, IF=4.567
  455. S.O. Kuranov, O.A. Luzina, O. Onopchenko, I. Pishel, S. Zozulya, M. Gureev, N.F. Salakhutdinov, M. Krasavin
    Exploring bulky natural and natural-like periphery in the design of p-(benzyloxy)phenylpropionic acid agonists of free fatty acid receptor 1 (GPR40)
    Bioorganic Chemistry Volume 99, June 2020, 103830 doi:10.1016/j.bioorg.2020.103830, IF=4.567
  456. S.O. Kuranov, O.A. Luzina, O. Onopchenko, I. Pishel, S. Zozulya, M. Gureev, N.F. Salakhutdinov, M. Krasavin
    Exploring bulky natural and natural-like periphery in the design of p-(benzyloxy)phenylpropionic acid agonists of free fatty acid receptor 1 (GPR40)
    Bioorganic Chemistry Volume 99, June 2020, 103830 doi:10.1016/j.bioorg.2020.103830, IF=4.567
  457. S.O. Kuranov, O.A. Luzina, O. Onopchenko, I. Pishel, S. Zozulya, M. Gureev, N.F. Salakhutdinov, M. Krasavin
    Exploring bulky natural and natural-like periphery in the design of p-(benzyloxy)phenylpropionic acid agonists of free fatty acid receptor 1 (GPR40)
    Bioorganic Chemistry Volume 99, June 2020, 103830 doi:10.1016/j.bioorg.2020.103830, IF=4.567
  458. Полосьмак Н.В., Карпова Е.В., Амосов Е.В.
    Уникальная ткань с городища Джеты-Асар-2 (Восточное Приаралье) в контексте центрально-азиатской текстильной традиции
    Археология, этнография и антропология Евразии. 2020. Т. 48. № 3. С. 50-58. (An unusual fabric from Jety-Asar-2, Eastern Aral sea region, in the context of the central asian textile tradition/ POLOSMAK N.V., KARPOVA E.V., AMOSOV E.V.// doi:10.17746/1563-0102.2020.48.3.050-058)
  459. М.В. Кручинина, М.В. Паруликова, С.А. Курилович, А.А. Громов, М.В. Шашков, А.С. Соколова, В.Н. Кручинин
    Особенности липидомического профиля мембран эритроцитов и сыворотки крови у пациентов с жировой болезнью печени
    Атеросклероз. 2020. Т. 16. № 2. С. 16-33. doi:10.15372/ATER20200202
  460. М.В. Кручинина, М.В. Паруликова, С.А. Курилович, А.А. Громов, М.В. Шашков, А.С. Соколова, В.Н. Кручинин
    Особенности липидомического профиля мембран эритроцитов и сыворотки крови у пациентов с жировой болезнью печени
    Атеросклероз. 2020. Т. 16. № 2. С. 16-33. doi:10.15372/ATER20200202
  461. М.В. Кручинина, М.В. Паруликова, С.А. Курилович, А.А. Громов, М.В. Шашков, А.С. Соколова, В.Н. Кручинин
    Особенности липидомического профиля мембран эритроцитов и сыворотки крови у пациентов с жировой болезнью печени
    Атеросклероз. 2020. Т. 16. № 2. С. 16-33. doi:10.15372/ATER20200202
  462. М.В. Кручинина, М.В. Паруликова, С.А. Курилович, А.А. Громов, М.В. Шашков, А.С. Соколова, В.Н. Кручинин
    Особенности липидомического профиля мембран эритроцитов и сыворотки крови у пациентов с жировой болезнью печени
    Атеросклероз. 2020. Т. 16. № 2. С. 16-33. doi:10.15372/ATER20200202
  463. М.В. Кручинина, М.В. Паруликова, С.А. Курилович, А.А. Громов, М.В. Шашков, А.С. Соколова, В.Н. Кручинин
    Особенности липидомического профиля мембран эритроцитов и сыворотки крови у пациентов с жировой болезнью печени
    Атеросклероз. 2020. Т. 16. № 2. С. 16-33. doi:10.15372/ATER20200202
  464. М.В. Кручинина, М.В. Паруликова, С.А. Курилович, А.А. Громов, М.В. Шашков, А.С. Соколова, В.Н. Кручинин
    Особенности липидомического профиля мембран эритроцитов и сыворотки крови у пациентов с жировой болезнью печени
    Атеросклероз. 2020. Т. 16. № 2. С. 16-33. doi:10.15372/ATER20200202
  465. I.А. Novakov, L.L. Brunilina, I.А. Kirillov, M.B. Nawrozkij, M.D. Robinovich, E.S. Titova, D.S. Sheikin, E.А. Ruchko, A.V. Pavlova, A.А. Kotlyarova, T.G. Tolstikova
    The synthesis of new acyclic analogs of 3-phenacyluridine and comparative evaluation of their in vivo biological activity
    Chemistry of Heterocyclic Compounds, 2020, V. 56, N 6, Pp 769-775 doi:10.1007/s10593-020-02729-x, IF=1.519
  466. I.А. Novakov, L.L. Brunilina, I.А. Kirillov, M.B. Nawrozkij, M.D. Robinovich, E.S. Titova, D.S. Sheikin, E.А. Ruchko, A.V. Pavlova, A.А. Kotlyarova, T.G. Tolstikova
    The synthesis of new acyclic analogs of 3-phenacyluridine and comparative evaluation of their in vivo biological activity
    Chemistry of Heterocyclic Compounds, 2020, V. 56, N 6, Pp 769-775 doi:10.1007/s10593-020-02729-x, IF=1.519
  467. I.А. Novakov, L.L. Brunilina, I.А. Kirillov, M.B. Nawrozkij, M.D. Robinovich, E.S. Titova, D.S. Sheikin, E.А. Ruchko, A.V. Pavlova, A.А. Kotlyarova, T.G. Tolstikova
    The synthesis of new acyclic analogs of 3-phenacyluridine and comparative evaluation of their in vivo biological activity
    Chemistry of Heterocyclic Compounds, 2020, V. 56, N 6, Pp 769-775 doi:10.1007/s10593-020-02729-x, IF=1.519
  468. I.А. Novakov, L.L. Brunilina, I.А. Kirillov, M.B. Nawrozkij, M.D. Robinovich, E.S. Titova, D.S. Sheikin, E.А. Ruchko, A.V. Pavlova, A.А. Kotlyarova, T.G. Tolstikova
    The synthesis of new acyclic analogs of 3-phenacyluridine and comparative evaluation of their in vivo biological activity
    Chemistry of Heterocyclic Compounds, 2020, V. 56, N 6, Pp 769-775 doi:10.1007/s10593-020-02729-x, IF=1.519
  469. I.А. Novakov, L.L. Brunilina, I.А. Kirillov, M.B. Nawrozkij, M.D. Robinovich, E.S. Titova, D.S. Sheikin, E.А. Ruchko, A.V. Pavlova, A.А. Kotlyarova, T.G. Tolstikova
    The synthesis of new acyclic analogs of 3-phenacyluridine and comparative evaluation of their in vivo biological activity
    Chemistry of Heterocyclic Compounds, 2020, V. 56, N 6, Pp 769-775 doi:10.1007/s10593-020-02729-x, IF=1.519
  470. I.А. Novakov, L.L. Brunilina, I.А. Kirillov, M.B. Nawrozkij, M.D. Robinovich, E.S. Titova, D.S. Sheikin, E.А. Ruchko, A.V. Pavlova, A.А. Kotlyarova, T.G. Tolstikova
    The synthesis of new acyclic analogs of 3-phenacyluridine and comparative evaluation of their in vivo biological activity
    Chemistry of Heterocyclic Compounds, 2020, V. 56, N 6, Pp 769-775 doi:10.1007/s10593-020-02729-x, IF=1.519
  471. I.А. Novakov, L.L. Brunilina, I.А. Kirillov, M.B. Nawrozkij, M.D. Robinovich, E.S. Titova, D.S. Sheikin, E.А. Ruchko, A.V. Pavlova, A.А. Kotlyarova, T.G. Tolstikova
    The synthesis of new acyclic analogs of 3-phenacyluridine and comparative evaluation of their in vivo biological activity
    Chemistry of Heterocyclic Compounds, 2020, V. 56, N 6, Pp 769-775 doi:10.1007/s10593-020-02729-x, IF=1.519
  472. I.А. Novakov, L.L. Brunilina, I.А. Kirillov, M.B. Nawrozkij, M.D. Robinovich, E.S. Titova, D.S. Sheikin, E.А. Ruchko, A.V. Pavlova, A.А. Kotlyarova, T.G. Tolstikova
    The synthesis of new acyclic analogs of 3-phenacyluridine and comparative evaluation of their in vivo biological activity
    Chemistry of Heterocyclic Compounds, 2020, V. 56, N 6, Pp 769-775 doi:10.1007/s10593-020-02729-x, IF=1.519
  473. V.V. Chernyshov, O.I. Yarovaya, R.Yu. Peshkov, N.F. Salakhutdinov
    Synthesis of cyclic D-(+)-camphoric acid imides and study of their antiviral activity
    Chemistry of Heterocyclic Compounds, 2020, V. 56, N 6, Pp 763-768 doi:10.1007/s10593-020-02728-y, IF=1.491
  474. А.А. Бажина, С.В. Валиулин, А М. Бакланов, С.Н. Дубцов, С.В. Аньков, М.Е. Плохотниченко, Т.Г. Толстикова, А.А. Онищук
    Метод генерации аэрозоля антибактериального лекарственного вещества цефазолина
    Оптика атмосферы и океана. 2020. Т. 33. № 6 (377). С. 459-462. doi:10.15372/AOO20200607
  475. А.А. Бажина, С.В. Валиулин, А М. Бакланов, С.Н. Дубцов, С.В. Аньков, М.Е. Плохотниченко, Т.Г. Толстикова, А.А. Онищук
    Метод генерации аэрозоля антибактериального лекарственного вещества цефазолина
    Оптика атмосферы и океана. 2020. Т. 33. № 6 (377). С. 459-462. doi:10.15372/AOO20200607
  476. А.А. Бажина, С.В. Валиулин, А М. Бакланов, С.Н. Дубцов, С.В. Аньков, М.Е. Плохотниченко, Т.Г. Толстикова, А.А. Онищук
    Метод генерации аэрозоля антибактериального лекарственного вещества цефазолина
    Оптика атмосферы и океана. 2020. Т. 33. № 6 (377). С. 459-462. doi:10.15372/AOO20200607
  477. А.А. Бажина, С.В. Валиулин, А М. Бакланов, С.Н. Дубцов, С.В. Аньков, М.Е. Плохотниченко, Т.Г. Толстикова, А.А. Онищук
    Метод генерации аэрозоля антибактериального лекарственного вещества цефазолина
    Оптика атмосферы и океана. 2020. Т. 33. № 6 (377). С. 459-462. doi:10.15372/AOO20200607
  478. А.А. Бажина, С.В. Валиулин, А М. Бакланов, С.Н. Дубцов, С.В. Аньков, М.Е. Плохотниченко, Т.Г. Толстикова, А.А. Онищук
    Метод генерации аэрозоля антибактериального лекарственного вещества цефазолина
    Оптика атмосферы и океана. 2020. Т. 33. № 6 (377). С. 459-462. doi:10.15372/AOO20200607
  479. А.А. Бажина, С.В. Валиулин, А М. Бакланов, С.Н. Дубцов, С.В. Аньков, М.Е. Плохотниченко, Т.Г. Толстикова, А.А. Онищук
    Метод генерации аэрозоля антибактериального лекарственного вещества цефазолина
    Оптика атмосферы и океана. 2020. Т. 33. № 6 (377). С. 459-462. doi:10.15372/AOO20200607
  480. M.P. Davydova, M.I. Rakhmanova, I.Yu. Bagryanskaya, K.A. Brylev, A.V. Artem'ev
    A 1d coordination polymer based on cui and 2-(diphenylphosphino)pyrimidine: synthesis, structure and luminescent properties
    Журнал структурной химии, 2020, Т. 61, N 6, Сс. 947-951 DOI: 10.26902/JSC_id57701 (A 1d coordination polymer based on cui and 2-(diphenylphosphino)pyrimidine: synthesis, structure and luminescent properties/ Davydova M.P., Rakhmanova M.I., Bagryanskaya I.Yu., Brylev K.A., Artem'ev A.V.// Journal of Structural Chemistry, 2020, V. 61, N 6, Pp 894-898 doi:10.1134/S0022476620060086), IF=0.745
  481. M.P. Davydova, M.I. Rakhmanova, I.Yu. Bagryanskaya, K.A. Brylev, A.V. Artem'ev
    A 1d coordination polymer based on cui and 2-(diphenylphosphino)pyrimidine: synthesis, structure and luminescent properties
    Журнал структурной химии, 2020, Т. 61, N 6, Сс. 947-951 DOI: 10.26902/JSC_id57701 (A 1d coordination polymer based on cui and 2-(diphenylphosphino)pyrimidine: synthesis, structure and luminescent properties/ Davydova M.P., Rakhmanova M.I., Bagryanskaya I.Yu., Brylev K.A., Artem'ev A.V.// Journal of Structural Chemistry, 2020, V. 61, N 6, Pp 894-898 doi:10.1134/S0022476620060086), IF=0.745
  482. M.P. Davydova, M.I. Rakhmanova, I.Yu. Bagryanskaya, K.A. Brylev, A.V. Artem'ev
    A 1d coordination polymer based on cui and 2-(diphenylphosphino)pyrimidine: synthesis, structure and luminescent properties
    Журнал структурной химии, 2020, Т. 61, N 6, Сс. 947-951 DOI: 10.26902/JSC_id57701 (A 1d coordination polymer based on cui and 2-(diphenylphosphino)pyrimidine: synthesis, structure and luminescent properties/ Davydova M.P., Rakhmanova M.I., Bagryanskaya I.Yu., Brylev K.A., Artem'ev A.V.// Journal of Structural Chemistry, 2020, V. 61, N 6, Pp 894-898 doi:10.1134/S0022476620060086), IF=0.745
  483. M.P. Davydova, M.I. Rakhmanova, I.Yu. Bagryanskaya, K.A. Brylev, A.V. Artem'ev
    A 1d coordination polymer based on cui and 2-(diphenylphosphino)pyrimidine: synthesis, structure and luminescent properties
    Журнал структурной химии, 2020, Т. 61, N 6, Сс. 947-951 DOI: 10.26902/JSC_id57701 (A 1d coordination polymer based on cui and 2-(diphenylphosphino)pyrimidine: synthesis, structure and luminescent properties/ Davydova M.P., Rakhmanova M.I., Bagryanskaya I.Yu., Brylev K.A., Artem'ev A.V.// Journal of Structural Chemistry, 2020, V. 61, N 6, Pp 894-898 doi:10.1134/S0022476620060086), IF=0.745
  484. M.I. Rogovoy, M.P. Davydova, I.Yu. Bagryanskaya, A.V. Artem'ev
    Efficient one-pot synthesis of diphenyl(pyrazin-2-yl)phosphine and its AgI, AuI, and PtII, complexes
    Mendeleev Communications, 2020, V. 30, N 3, Pp 305-307 doi:10.1016/j.mencom.2020.05.014, IF=1.694
  485. M.I. Rogovoy, M.P. Davydova, I.Yu. Bagryanskaya, A.V. Artem'ev
    Efficient one-pot synthesis of diphenyl(pyrazin-2-yl)phosphine and its AgI, AuI, and PtII, complexes
    Mendeleev Communications, 2020, V. 30, N 3, Pp 305-307 doi:10.1016/j.mencom.2020.05.014, IF=1.694
  486. M.I. Rogovoy, M.P. Davydova, I.Yu. Bagryanskaya, A.V. Artem'ev
    Efficient one-pot synthesis of diphenyl(pyrazin-2-yl)phosphine and its AgI, AuI, and PtII, complexes
    Mendeleev Communications, 2020, V. 30, N 3, Pp 305-307 doi:10.1016/j.mencom.2020.05.014, IF=1.694
  487. L. A.Shundrin,I.A.Os'kina,I. G.Irtegova,A. F.Poveshchenko
    9H-Thioxanthen-9-one S,S-dioxide based redox active labels for electrochemical detection of DNA duplexes immobilized on Au electrodes
    Mendeleev Communications, 2020, V. 30, N 3, Pp 296-298 doi:10.1016/j.mencom.2020.05.011, IF=1.694
  488. N.Yu. Adonin, V.V. Bardin
    Polyfluorinated arylboranes as catalysts in organic synthesis
    Mendeleev Communications, 2020, V. 30, N 3, Pp 262-272 doi:10.1016/j.mencom.2020.05.002, IF=1.694
  489. N.S. Sirazhetdinova, V.A. Savelyev, T.S. Frolova, D.S. Baev, L.S. Klimenko, I.V. Chernikov, O.S. Oleshko, T.A. Sarojan, A.G. Pokrovskii, E.E. Shults
    1-Hydroxyanthraquinones Containing Aryl Substituents as Potent and Selective Anticancer Agents
    Molecules 2020, 25(11), 2547 doi:10.3390/molecules25112547, IF=3.267
  490. N.S. Sirazhetdinova, V.A. Savelyev, T.S. Frolova, D.S. Baev, L.S. Klimenko, I.V. Chernikov, O.S. Oleshko, T.A. Sarojan, A.G. Pokrovskii, E.E. Shults
    1-Hydroxyanthraquinones Containing Aryl Substituents as Potent and Selective Anticancer Agents
    Molecules 2020, 25(11), 2547 doi:10.3390/molecules25112547, IF=3.267
  491. N.S. Sirazhetdinova, V.A. Savelyev, T.S. Frolova, D.S. Baev, L.S. Klimenko, I.V. Chernikov, O.S. Oleshko, T.A. Sarojan, A.G. Pokrovskii, E.E. Shults
    1-Hydroxyanthraquinones Containing Aryl Substituents as Potent and Selective Anticancer Agents
    Molecules 2020, 25(11), 2547 doi:10.3390/molecules25112547, IF=3.267
  492. N.S. Sirazhetdinova, V.A. Savelyev, T.S. Frolova, D.S. Baev, L.S. Klimenko, I.V. Chernikov, O.S. Oleshko, T.A. Sarojan, A.G. Pokrovskii, E.E. Shults
    1-Hydroxyanthraquinones Containing Aryl Substituents as Potent and Selective Anticancer Agents
    Molecules 2020, 25(11), 2547 doi:10.3390/molecules25112547, IF=3.267
  493. N.S. Sirazhetdinova, V.A. Savelyev, T.S. Frolova, D.S. Baev, L.S. Klimenko, I.V. Chernikov, O.S. Oleshko, T.A. Sarojan, A.G. Pokrovskii, E.E. Shults
    1-Hydroxyanthraquinones Containing Aryl Substituents as Potent and Selective Anticancer Agents
    Molecules 2020, 25(11), 2547 doi:10.3390/molecules25112547, IF=3.267
  494. N.S. Sirazhetdinova, V.A. Savelyev, T.S. Frolova, D.S. Baev, L.S. Klimenko, I.V. Chernikov, O.S. Oleshko, T.A. Sarojan, A.G. Pokrovskii, E.E. Shults
    1-Hydroxyanthraquinones Containing Aryl Substituents as Potent and Selective Anticancer Agents
    Molecules 2020, 25(11), 2547 doi:10.3390/molecules25112547, IF=3.267
  495. N.S. Sirazhetdinova, V.A. Savelyev, T.S. Frolova, D.S. Baev, L.S. Klimenko, I.V. Chernikov, O.S. Oleshko, T.A. Sarojan, A.G. Pokrovskii, E.E. Shults
    1-Hydroxyanthraquinones Containing Aryl Substituents as Potent and Selective Anticancer Agents
    Molecules 2020, 25(11), 2547 doi:10.3390/molecules25112547, IF=3.267
  496. A.V. Markov, A.V. Sen’kova, O.V. Salomatina, E.B. Logashenko, D.V. Korchagina, N.F. Salakhutdinov, M.A. Zenkova
    Trioxolone Methyl, a Novel Cyano Enone-Bearing 18βH-Glycyrrhetinic Acid Derivative, Ameliorates Dextran Sulphate Sodium-Induced Colitis in Mice
    Molecules 2020, 25(10), 2406 doi:10.3390/molecules25102406, IF=3.267
  497. A.V. Markov, A.V. Sen’kova, O.V. Salomatina, E.B. Logashenko, D.V. Korchagina, N.F. Salakhutdinov, M.A. Zenkova
    Trioxolone Methyl, a Novel Cyano Enone-Bearing 18βH-Glycyrrhetinic Acid Derivative, Ameliorates Dextran Sulphate Sodium-Induced Colitis in Mice
    Molecules 2020, 25(10), 2406 doi:10.3390/molecules25102406, IF=3.267
  498. A.V. Markov, A.V. Sen’kova, O.V. Salomatina, E.B. Logashenko, D.V. Korchagina, N.F. Salakhutdinov, M.A. Zenkova
    Trioxolone Methyl, a Novel Cyano Enone-Bearing 18βH-Glycyrrhetinic Acid Derivative, Ameliorates Dextran Sulphate Sodium-Induced Colitis in Mice
    Molecules 2020, 25(10), 2406 doi:10.3390/molecules25102406, IF=3.267
  499. A.V. Markov, A.V. Sen’kova, O.V. Salomatina, E.B. Logashenko, D.V. Korchagina, N.F. Salakhutdinov, M.A. Zenkova
    Trioxolone Methyl, a Novel Cyano Enone-Bearing 18βH-Glycyrrhetinic Acid Derivative, Ameliorates Dextran Sulphate Sodium-Induced Colitis in Mice
    Molecules 2020, 25(10), 2406 doi:10.3390/molecules25102406, IF=3.267
  500. A.V. Markov, A.V. Sen'kova, I.I. Popadyuk, O.V. Salomatina, E.B. Logashenko, N.I. Komarova, A.A. Ilyina, N.F. Salakhutdinov, M.A. Zenkova
    Novel 3'-Substituted-1'2',4'-Oxadiazole Derivatives of 18βH-Glycyrrhetinic Acid and Their O-Acylated Amidoximes: Synthesis and Evaluation of Antitumor and Anti-Inflammatory Potential In Vitro and In Vivo
    Int. J. Mol. Sci. 2020, 21(10), 3511 doi:10.3390/ijms21103511, IF=4.556
  501. A.V. Markov, A.V. Sen'kova, I.I. Popadyuk, O.V. Salomatina, E.B. Logashenko, N.I. Komarova, A.A. Ilyina, N.F. Salakhutdinov, M.A. Zenkova
    Novel 3'-Substituted-1'2',4'-Oxadiazole Derivatives of 18βH-Glycyrrhetinic Acid and Their O-Acylated Amidoximes: Synthesis and Evaluation of Antitumor and Anti-Inflammatory Potential In Vitro and In Vivo
    Int. J. Mol. Sci. 2020, 21(10), 3511 doi:10.3390/ijms21103511, IF=4.556
  502. A.V. Markov, A.V. Sen'kova, I.I. Popadyuk, O.V. Salomatina, E.B. Logashenko, N.I. Komarova, A.A. Ilyina, N.F. Salakhutdinov, M.A. Zenkova
    Novel 3'-Substituted-1'2',4'-Oxadiazole Derivatives of 18βH-Glycyrrhetinic Acid and Their O-Acylated Amidoximes: Synthesis and Evaluation of Antitumor and Anti-Inflammatory Potential In Vitro and In Vivo
    Int. J. Mol. Sci. 2020, 21(10), 3511 doi:10.3390/ijms21103511, IF=4.556
  503. A.V. Markov, A.V. Sen'kova, I.I. Popadyuk, O.V. Salomatina, E.B. Logashenko, N.I. Komarova, A.A. Ilyina, N.F. Salakhutdinov, M.A. Zenkova
    Novel 3'-Substituted-1'2',4'-Oxadiazole Derivatives of 18βH-Glycyrrhetinic Acid and Their O-Acylated Amidoximes: Synthesis and Evaluation of Antitumor and Anti-Inflammatory Potential In Vitro and In Vivo
    Int. J. Mol. Sci. 2020, 21(10), 3511 doi:10.3390/ijms21103511, IF=4.556
  504. A.V. Markov, A.V. Sen'kova, I.I. Popadyuk, O.V. Salomatina, E.B. Logashenko, N.I. Komarova, A.A. Ilyina, N.F. Salakhutdinov, M.A. Zenkova
    Novel 3'-Substituted-1'2',4'-Oxadiazole Derivatives of 18βH-Glycyrrhetinic Acid and Their O-Acylated Amidoximes: Synthesis and Evaluation of Antitumor and Anti-Inflammatory Potential In Vitro and In Vivo
    Int. J. Mol. Sci. 2020, 21(10), 3511 doi:10.3390/ijms21103511, IF=4.556
  505. M. Rogovoy, T. Frolova, D. Samsonenko, A. Berezin, I. Bagryanskaya, N. Nedolya, O. Tarasova, V. Fedin, A.V. Artem'ev
    0D to 3D coordination assemblies engineered on 2-(alkylsulfanyl)azine ligands: crystal structures, dual luminescence and cytotoxic activity
    European Journal of Inorganic Chemistry, 2020, V. 2020, N 17, Pp 1635-1644 doi:10.1002/ejic.202000109, IF=2.529
  506. M. Rogovoy, T. Frolova, D. Samsonenko, A. Berezin, I. Bagryanskaya, N. Nedolya, O. Tarasova, V. Fedin, A.V. Artem'ev
    0D to 3D coordination assemblies engineered on 2-(alkylsulfanyl)azine ligands: crystal structures, dual luminescence and cytotoxic activity
    European Journal of Inorganic Chemistry, 2020, V. 2020, N 17, Pp 1635-1644 doi:10.1002/ejic.202000109, IF=2.529
  507. M. Rogovoy, T. Frolova, D. Samsonenko, A. Berezin, I. Bagryanskaya, N. Nedolya, O. Tarasova, V. Fedin, A.V. Artem'ev
    0D to 3D coordination assemblies engineered on 2-(alkylsulfanyl)azine ligands: crystal structures, dual luminescence and cytotoxic activity
    European Journal of Inorganic Chemistry, 2020, V. 2020, N 17, Pp 1635-1644 doi:10.1002/ejic.202000109, IF=2.529
  508. M. Rogovoy, T. Frolova, D. Samsonenko, A. Berezin, I. Bagryanskaya, N. Nedolya, O. Tarasova, V. Fedin, A.V. Artem'ev
    0D to 3D coordination assemblies engineered on 2-(alkylsulfanyl)azine ligands: crystal structures, dual luminescence and cytotoxic activity
    European Journal of Inorganic Chemistry, 2020, V. 2020, N 17, Pp 1635-1644 doi:10.1002/ejic.202000109, IF=2.529
  509. M. Rogovoy, T. Frolova, D. Samsonenko, A. Berezin, I. Bagryanskaya, N. Nedolya, O. Tarasova, V. Fedin, A.V. Artem'ev
    0D to 3D coordination assemblies engineered on 2-(alkylsulfanyl)azine ligands: crystal structures, dual luminescence and cytotoxic activity
    European Journal of Inorganic Chemistry, 2020, V. 2020, N 17, Pp 1635-1644 doi:10.1002/ejic.202000109, IF=2.529
  510. M. Rogovoy, T. Frolova, D. Samsonenko, A. Berezin, I. Bagryanskaya, N. Nedolya, O. Tarasova, V. Fedin, A.V. Artem'ev
    0D to 3D coordination assemblies engineered on 2-(alkylsulfanyl)azine ligands: crystal structures, dual luminescence and cytotoxic activity
    European Journal of Inorganic Chemistry, 2020, V. 2020, N 17, Pp 1635-1644 doi:10.1002/ejic.202000109, IF=2.529
  511. M. Rogovoy, T. Frolova, D. Samsonenko, A. Berezin, I. Bagryanskaya, N. Nedolya, O. Tarasova, V. Fedin, A.V. Artem'ev
    0D to 3D coordination assemblies engineered on 2-(alkylsulfanyl)azine ligands: crystal structures, dual luminescence and cytotoxic activity
    European Journal of Inorganic Chemistry, 2020, V. 2020, N 17, Pp 1635-1644 doi:10.1002/ejic.202000109, IF=2.529
  512. M. Rogovoy, T. Frolova, D. Samsonenko, A. Berezin, I. Bagryanskaya, N. Nedolya, O. Tarasova, V. Fedin, A.V. Artem'ev
    0D to 3D coordination assemblies engineered on 2-(alkylsulfanyl)azine ligands: crystal structures, dual luminescence and cytotoxic activity
    European Journal of Inorganic Chemistry, 2020, V. 2020, N 17, Pp 1635-1644 doi:10.1002/ejic.202000109, IF=2.529
  513. A. Sidorenko, N. Li-Zhulanov, P. Mäki-Arvela, T. Sandberg, A. Kravtsova, A. Peixoto, C. Freire, K. Volcho, N. Salakhutdinov, V. Agabekov, D. Murzin
    Stereoselectivity inversion by water addition in the -SO3H catalyzed tandem Prins-Ritter reaction for synthesis of 4-amidotetrahydropyran derivatives
    ChemCatChem, 2020, V. 12, N. 9, Pp 2605- 2609 doi:10.1002/cctc.202000070, IF=4.853
  514. A. Sidorenko, N. Li-Zhulanov, P. Mäki-Arvela, T. Sandberg, A. Kravtsova, A. Peixoto, C. Freire, K. Volcho, N. Salakhutdinov, V. Agabekov, D. Murzin
    Stereoselectivity inversion by water addition in the -SO3H catalyzed tandem Prins-Ritter reaction for synthesis of 4-amidotetrahydropyran derivatives
    ChemCatChem, 2020, V. 12, N. 9, Pp 2605- 2609 doi:10.1002/cctc.202000070, IF=4.853
  515. A. Sidorenko, N. Li-Zhulanov, P. Mäki-Arvela, T. Sandberg, A. Kravtsova, A. Peixoto, C. Freire, K. Volcho, N. Salakhutdinov, V. Agabekov, D. Murzin
    Stereoselectivity inversion by water addition in the -SO3H catalyzed tandem Prins-Ritter reaction for synthesis of 4-amidotetrahydropyran derivatives
    ChemCatChem, 2020, V. 12, N. 9, Pp 2605- 2609 doi:10.1002/cctc.202000070, IF=4.853
  516. A. Sidorenko, N. Li-Zhulanov, P. Mäki-Arvela, T. Sandberg, A. Kravtsova, A. Peixoto, C. Freire, K. Volcho, N. Salakhutdinov, V. Agabekov, D. Murzin
    Stereoselectivity inversion by water addition in the -SO3H catalyzed tandem Prins-Ritter reaction for synthesis of 4-amidotetrahydropyran derivatives
    ChemCatChem, 2020, V. 12, N. 9, Pp 2605- 2609 doi:10.1002/cctc.202000070, IF=4.853
  517. A. Sidorenko, N. Li-Zhulanov, P. Mäki-Arvela, T. Sandberg, A. Kravtsova, A. Peixoto, C. Freire, K. Volcho, N. Salakhutdinov, V. Agabekov, D. Murzin
    Stereoselectivity inversion by water addition in the -SO3H catalyzed tandem Prins-Ritter reaction for synthesis of 4-amidotetrahydropyran derivatives
    ChemCatChem, 2020, V. 12, N. 9, Pp 2605- 2609 doi:10.1002/cctc.202000070, IF=4.853
  518. A. Sidorenko, N. Li-Zhulanov, P. Mäki-Arvela, T. Sandberg, A. Kravtsova, A. Peixoto, C. Freire, K. Volcho, N. Salakhutdinov, V. Agabekov, D. Murzin
    Stereoselectivity inversion by water addition in the -SO3H catalyzed tandem Prins-Ritter reaction for synthesis of 4-amidotetrahydropyran derivatives
    ChemCatChem, 2020, V. 12, N. 9, Pp 2605- 2609 doi:10.1002/cctc.202000070, IF=4.853
  519. A. Sidorenko, N. Li-Zhulanov, P. Mäki-Arvela, T. Sandberg, A. Kravtsova, A. Peixoto, C. Freire, K. Volcho, N. Salakhutdinov, V. Agabekov, D. Murzin
    Stereoselectivity inversion by water addition in the -SO3H catalyzed tandem Prins-Ritter reaction for synthesis of 4-amidotetrahydropyran derivatives
    ChemCatChem, 2020, V. 12, N. 9, Pp 2605- 2609 doi:10.1002/cctc.202000070, IF=4.853
  520. A. Sidorenko, N. Li-Zhulanov, P. Mäki-Arvela, T. Sandberg, A. Kravtsova, A. Peixoto, C. Freire, K. Volcho, N. Salakhutdinov, V. Agabekov, D. Murzin
    Stereoselectivity inversion by water addition in the -SO3H catalyzed tandem Prins-Ritter reaction for synthesis of 4-amidotetrahydropyran derivatives
    ChemCatChem, 2020, V. 12, N. 9, Pp 2605- 2609 doi:10.1002/cctc.202000070, IF=4.853
  521. А.П. Крысин, В.А. Солошенко, Ю.Г. Юшков, Н.А. Донченко, О.Г. Мерзлякова
    Снижение смертности на всех этапах жизни животных и получение продуктивного долголетия с использованием аурола (п-тирозола)
    Химия в интересах устойчивого развития. 2020. Т. 28. № 2. С. 171-179. (Reduction in Mortality at All Stages of Animal Life and the Ways to Achieve Productive Longevity Using Aurol (p-Tyrosol)/ KRYSIN A. P., SOLOSHENKO V. A. YUSHKOV YU. G.2, DONSHENKO N. A., MERZLYAKOVA O. G.// doi:10.15372/KhUR2020216)
  522. А.П. Крысин, В.А. Солошенко, Ю.Г. Юшков, Н.А. Донченко, О.Г. Мерзлякова
    Снижение смертности на всех этапах жизни животных и получение продуктивного долголетия с использованием аурола (п-тирозола)
    Химия в интересах устойчивого развития. 2020. Т. 28. № 2. С. 171-179. (Reduction in Mortality at All Stages of Animal Life and the Ways to Achieve Productive Longevity Using Aurol (p-Tyrosol)/ KRYSIN A. P., SOLOSHENKO V. A. YUSHKOV YU. G.2, DONSHENKO N. A., MERZLYAKOVA O. G.// doi:10.15372/KhUR2020216)
  523. А.П. Крысин, В.А. Солошенко, Ю.Г. Юшков, Н.А. Донченко, О.Г. Мерзлякова
    Снижение смертности на всех этапах жизни животных и получение продуктивного долголетия с использованием аурола (п-тирозола)
    Химия в интересах устойчивого развития. 2020. Т. 28. № 2. С. 171-179. (Reduction in Mortality at All Stages of Animal Life and the Ways to Achieve Productive Longevity Using Aurol (p-Tyrosol)/ KRYSIN A. P., SOLOSHENKO V. A. YUSHKOV YU. G.2, DONSHENKO N. A., MERZLYAKOVA O. G.// doi:10.15372/KhUR2020216)
  524. А.П. Крысин, В.А. Солошенко, Ю.Г. Юшков, Н.А. Донченко, О.Г. Мерзлякова
    Снижение смертности на всех этапах жизни животных и получение продуктивного долголетия с использованием аурола (п-тирозола)
    Химия в интересах устойчивого развития. 2020. Т. 28. № 2. С. 171-179. (Reduction in Mortality at All Stages of Animal Life and the Ways to Achieve Productive Longevity Using Aurol (p-Tyrosol)/ KRYSIN A. P., SOLOSHENKO V. A. YUSHKOV YU. G.2, DONSHENKO N. A., MERZLYAKOVA O. G.// doi:10.15372/KhUR2020216)
  525. M. Han, Q. Zhang, I.I. Oleynik, H. Suo, G.A. Solan, I.V. Oleynik, Ya. Ma, T. Liang, Wen-Hua. Sun
    High molecular weight polyethylenes of narrow dispersity promoted using bis(arylimino)cyclohepta[b]pyridine-cobalt catalysts ortho-substituted with benzhydryl & cycloalkyl groups
    Dalton Trans., 2020, V. 49, N 15, Pp 4774-4784 doi:10.1039/d0dt00576b, IF=4.174
  526. M. Han, Q. Zhang, I.I. Oleynik, H. Suo, G.A. Solan, I.V. Oleynik, Ya. Ma, T. Liang, Wen-Hua. Sun
    High molecular weight polyethylenes of narrow dispersity promoted using bis(arylimino)cyclohepta[b]pyridine-cobalt catalysts ortho-substituted with benzhydryl & cycloalkyl groups
    Dalton Trans., 2020, V. 49, N 15, Pp 4774-4784 doi:10.1039/d0dt00576b, IF=4.174
  527. M. Han, Q. Zhang, I.I. Oleynik, H. Suo, G.A. Solan, I.V. Oleynik, Ya. Ma, T. Liang, Wen-Hua. Sun
    High molecular weight polyethylenes of narrow dispersity promoted using bis(arylimino)cyclohepta[b]pyridine-cobalt catalysts ortho-substituted with benzhydryl & cycloalkyl groups
    Dalton Trans., 2020, V. 49, N 15, Pp 4774-4784 doi:10.1039/d0dt00576b, IF=4.174
  528. M. Han, Q. Zhang, I.I. Oleynik, H. Suo, G.A. Solan, I.V. Oleynik, Ya. Ma, T. Liang, Wen-Hua. Sun
    High molecular weight polyethylenes of narrow dispersity promoted using bis(arylimino)cyclohepta[b]pyridine-cobalt catalysts ortho-substituted with benzhydryl & cycloalkyl groups
    Dalton Trans., 2020, V. 49, N 15, Pp 4774-4784 doi:10.1039/d0dt00576b, IF=4.174
  529. M. Han, Q. Zhang, I.I. Oleynik, H. Suo, G.A. Solan, I.V. Oleynik, Ya. Ma, T. Liang, Wen-Hua. Sun
    High molecular weight polyethylenes of narrow dispersity promoted using bis(arylimino)cyclohepta[b]pyridine-cobalt catalysts ortho-substituted with benzhydryl & cycloalkyl groups
    Dalton Trans., 2020, V. 49, N 15, Pp 4774-4784 doi:10.1039/d0dt00576b, IF=4.174
  530. M. Han, Q. Zhang, I.I. Oleynik, H. Suo, G.A. Solan, I.V. Oleynik, Ya. Ma, T. Liang, Wen-Hua. Sun
    High molecular weight polyethylenes of narrow dispersity promoted using bis(arylimino)cyclohepta[b]pyridine-cobalt catalysts ortho-substituted with benzhydryl & cycloalkyl groups
    Dalton Trans., 2020, V. 49, N 15, Pp 4774-4784 doi:10.1039/d0dt00576b, IF=4.174
  531. M. Han, Q. Zhang, I.I. Oleynik, H. Suo, G.A. Solan, I.V. Oleynik, Ya. Ma, T. Liang, Wen-Hua. Sun
    High molecular weight polyethylenes of narrow dispersity promoted using bis(arylimino)cyclohepta[b]pyridine-cobalt catalysts ortho-substituted with benzhydryl & cycloalkyl groups
    Dalton Trans., 2020, V. 49, N 15, Pp 4774-4784 doi:10.1039/d0dt00576b, IF=4.174
  532. A.S. Poryvaev, D.M. Polyukhov, M.V. Fedin
    Mitigation of Pressure-Induced Amorphization in Metal–Organic Framework ZIF-8 upon EPR Control
    ACS Appl. Mater. Interfaces 2020, V. 12, N 14, Pp 16655-16661 doi:10.1021/acsami.0c03462, IF=8.758
  533. A.S. Poryvaev, D.M. Polyukhov, M.V. Fedin
    Mitigation of Pressure-Induced Amorphization in Metal–Organic Framework ZIF-8 upon EPR Control
    ACS Appl. Mater. Interfaces 2020, V. 12, N 14, Pp 16655-16661 doi:10.1021/acsami.0c03462, IF=8.758
  534. S. Dobrynin, S. Kutseikin, D. Morozov, O. Krumkacheva, A. Spitsyna, Yu. Gatilov, V. Silnikov, G. Angelovski, M.K. Bowman, I. Kirilyuk, A. Chubarov
    Human Serum Albumin Labelled with Sterically-Hindered Nitroxides as Potential MRI Contrast Agents
    Molecules 2020, 25(7), 1709 doi:10.3390/molecules25071709, IF=3.267
  535. S. Dobrynin, S. Kutseikin, D. Morozov, O. Krumkacheva, A. Spitsyna, Yu. Gatilov, V. Silnikov, G. Angelovski, M.K. Bowman, I. Kirilyuk, A. Chubarov
    Human Serum Albumin Labelled with Sterically-Hindered Nitroxides as Potential MRI Contrast Agents
    Molecules 2020, 25(7), 1709 doi:10.3390/molecules25071709, IF=3.267
  536. S. Dobrynin, S. Kutseikin, D. Morozov, O. Krumkacheva, A. Spitsyna, Yu. Gatilov, V. Silnikov, G. Angelovski, M.K. Bowman, I. Kirilyuk, A. Chubarov
    Human Serum Albumin Labelled with Sterically-Hindered Nitroxides as Potential MRI Contrast Agents
    Molecules 2020, 25(7), 1709 doi:10.3390/molecules25071709, IF=3.267
  537. S. Dobrynin, S. Kutseikin, D. Morozov, O. Krumkacheva, A. Spitsyna, Yu. Gatilov, V. Silnikov, G. Angelovski, M.K. Bowman, I. Kirilyuk, A. Chubarov
    Human Serum Albumin Labelled with Sterically-Hindered Nitroxides as Potential MRI Contrast Agents
    Molecules 2020, 25(7), 1709 doi:10.3390/molecules25071709, IF=3.267
  538. S. Dobrynin, S. Kutseikin, D. Morozov, O. Krumkacheva, A. Spitsyna, Yu. Gatilov, V. Silnikov, G. Angelovski, M.K. Bowman, I. Kirilyuk, A. Chubarov
    Human Serum Albumin Labelled with Sterically-Hindered Nitroxides as Potential MRI Contrast Agents
    Molecules 2020, 25(7), 1709 doi:10.3390/molecules25071709, IF=3.267
  539. A.A. Gostev, I.K. Shundrina, V.I. Pastukhov, A.V. Shutov, V.S. Chernonosova, A.A. Karpenko, P.P. Laktionov
    In Vivo Stability of Polyurethane-Based Electrospun Vascular Grafts in Terms of Chemistry and Mechanics
    Polymers 2020, 12(4), 845 doi:10.3390/polym12040845, IF=3.426
  540. A.A. Gostev, I.K. Shundrina, V.I. Pastukhov, A.V. Shutov, V.S. Chernonosova, A.A. Karpenko, P.P. Laktionov
    In Vivo Stability of Polyurethane-Based Electrospun Vascular Grafts in Terms of Chemistry and Mechanics
    Polymers 2020, 12(4), 845 doi:10.3390/polym12040845, IF=3.426
  541. A.A. Gostev, I.K. Shundrina, V.I. Pastukhov, A.V. Shutov, V.S. Chernonosova, A.A. Karpenko, P.P. Laktionov
    In Vivo Stability of Polyurethane-Based Electrospun Vascular Grafts in Terms of Chemistry and Mechanics
    Polymers 2020, 12(4), 845 doi:10.3390/polym12040845, IF=3.426
  542. A.A. Gostev, I.K. Shundrina, V.I. Pastukhov, A.V. Shutov, V.S. Chernonosova, A.A. Karpenko, P.P. Laktionov
    In Vivo Stability of Polyurethane-Based Electrospun Vascular Grafts in Terms of Chemistry and Mechanics
    Polymers 2020, 12(4), 845 doi:10.3390/polym12040845, IF=3.426
  543. A.A. Gostev, I.K. Shundrina, V.I. Pastukhov, A.V. Shutov, V.S. Chernonosova, A.A. Karpenko, P.P. Laktionov
    In Vivo Stability of Polyurethane-Based Electrospun Vascular Grafts in Terms of Chemistry and Mechanics
    Polymers 2020, 12(4), 845 doi:10.3390/polym12040845, IF=3.426
  544. Ye. Li, I.P. Koskin, Zh. Ma, E. Benassi, Zh. Wang
    Defect induced photoluminescence and triboluminescence in layered CaLaAl3O7
    Dalton Trans., 2020, V. 49, N 13, Pp 3942-3945 doi:10.1039/C9DT03849C, IF=4.174
  545. Ye. Li, I.P. Koskin, Zh. Ma, E. Benassi, Zh. Wang
    Defect induced photoluminescence and triboluminescence in layered CaLaAl3O7
    Dalton Trans., 2020, V. 49, N 13, Pp 3942-3945 doi:10.1039/C9DT03849C, IF=4.174
  546. Ye. Li, I.P. Koskin, Zh. Ma, E. Benassi, Zh. Wang
    Defect induced photoluminescence and triboluminescence in layered CaLaAl3O7
    Dalton Trans., 2020, V. 49, N 13, Pp 3942-3945 doi:10.1039/C9DT03849C, IF=4.174
  547. Ye. Li, I.P. Koskin, Zh. Ma, E. Benassi, Zh. Wang
    Defect induced photoluminescence and triboluminescence in layered CaLaAl3O7
    Dalton Trans., 2020, V. 49, N 13, Pp 3942-3945 doi:10.1039/C9DT03849C, IF=4.174
  548. Ye. Li, I.P. Koskin, Zh. Ma, E. Benassi, Zh. Wang
    Defect induced photoluminescence and triboluminescence in layered CaLaAl3O7
    Dalton Trans., 2020, V. 49, N 13, Pp 3942-3945 doi:10.1039/C9DT03849C, IF=4.174
  549. Ye. Li, I.P. Koskin, Zh. Ma, E. Benassi, Zh. Wang
    Defect induced photoluminescence and triboluminescence in layered CaLaAl3O7
    Dalton Trans., 2020, V. 49, N 13, Pp 3942-3945 doi:10.1039/C9DT03849C, IF=4.174
  550. Ye. Li, I.P. Koskin, Zh. Ma, E. Benassi, Zh. Wang
    Defect induced photoluminescence and triboluminescence in layered CaLaAl3O7
    Dalton Trans., 2020, V. 49, N 13, Pp 3942-3945 doi:10.1039/C9DT03849C, IF=4.174
  551. Ye. Li, I.P. Koskin, Zh. Ma, E. Benassi, Zh. Wang
    Defect induced photoluminescence and triboluminescence in layered CaLaAl3O7
    Dalton Trans., 2020, V. 49, N 13, Pp 3942-3945 doi:10.1039/C9DT03849C, IF=4.174
  552. D.E. Votkina, P.V. Petunin, S.I. Zhivetyeva, I.Yu. Bagryanskaya, M.N. Uvarov, M.S. Kazantsev, M.E. Trusova, E.V. Tretyakov, P.S. Postnikov
    Preparation of Multi-spin Systems: a Case Study of Tolane-bridged Verdazyl-based Hetero-diradicals
    European Journal of Organic Chemistry, 2020, V. 2020, N 13, Pp 1996-2004 doi:10.1002/ejoc.202000044, IF=2.889
  553. D.E. Votkina, P.V. Petunin, S.I. Zhivetyeva, I.Yu. Bagryanskaya, M.N. Uvarov, M.S. Kazantsev, M.E. Trusova, E.V. Tretyakov, P.S. Postnikov
    Preparation of Multi-spin Systems: a Case Study of Tolane-bridged Verdazyl-based Hetero-diradicals
    European Journal of Organic Chemistry, 2020, V. 2020, N 13, Pp 1996-2004 doi:10.1002/ejoc.202000044, IF=2.889
  554. D.E. Votkina, P.V. Petunin, S.I. Zhivetyeva, I.Yu. Bagryanskaya, M.N. Uvarov, M.S. Kazantsev, M.E. Trusova, E.V. Tretyakov, P.S. Postnikov
    Preparation of Multi-spin Systems: a Case Study of Tolane-bridged Verdazyl-based Hetero-diradicals
    European Journal of Organic Chemistry, 2020, V. 2020, N 13, Pp 1996-2004 doi:10.1002/ejoc.202000044, IF=2.889
  555. D.E. Votkina, P.V. Petunin, S.I. Zhivetyeva, I.Yu. Bagryanskaya, M.N. Uvarov, M.S. Kazantsev, M.E. Trusova, E.V. Tretyakov, P.S. Postnikov
    Preparation of Multi-spin Systems: a Case Study of Tolane-bridged Verdazyl-based Hetero-diradicals
    European Journal of Organic Chemistry, 2020, V. 2020, N 13, Pp 1996-2004 doi:10.1002/ejoc.202000044, IF=2.889
  556. D.E. Votkina, P.V. Petunin, S.I. Zhivetyeva, I.Yu. Bagryanskaya, M.N. Uvarov, M.S. Kazantsev, M.E. Trusova, E.V. Tretyakov, P.S. Postnikov
    Preparation of Multi-spin Systems: a Case Study of Tolane-bridged Verdazyl-based Hetero-diradicals
    European Journal of Organic Chemistry, 2020, V. 2020, N 13, Pp 1996-2004 doi:10.1002/ejoc.202000044, IF=2.889
  557. E.A. Pronina, Yu.A. Vorotnikov, T.N. Pozmogova, A. O. Solovieva, S.M. Miroshnichenko, P. E. Plyusnin, D. P. Pishchur, I. V. Eltsov, M.V. Edeleva, M.A. Shestopalov, O.A. Efremova
    No catalyst added hydrogen peroxide oxidation of dextran: an environment-friendly route to multifunctional polymers
    ACS Sustainable Chem. Eng. 2020, V. 8, N 13, Pp 5371-5379 doi:10.1021/acssuschemeng.0c01030, IF=7.632
  558. E.A. Pronina, Yu.A. Vorotnikov, T.N. Pozmogova, A. O. Solovieva, S.M. Miroshnichenko, P. E. Plyusnin, D. P. Pishchur, I. V. Eltsov, M.V. Edeleva, M.A. Shestopalov, O.A. Efremova
    No catalyst added hydrogen peroxide oxidation of dextran: an environment-friendly route to multifunctional polymers
    ACS Sustainable Chem. Eng. 2020, V. 8, N 13, Pp 5371-5379 doi:10.1021/acssuschemeng.0c01030, IF=7.632
  559. E.A. Pronina, Yu.A. Vorotnikov, T.N. Pozmogova, A. O. Solovieva, S.M. Miroshnichenko, P. E. Plyusnin, D. P. Pishchur, I. V. Eltsov, M.V. Edeleva, M.A. Shestopalov, O.A. Efremova
    No catalyst added hydrogen peroxide oxidation of dextran: an environment-friendly route to multifunctional polymers
    ACS Sustainable Chem. Eng. 2020, V. 8, N 13, Pp 5371-5379 doi:10.1021/acssuschemeng.0c01030, IF=7.632
  560. E.A. Pronina, Yu.A. Vorotnikov, T.N. Pozmogova, A. O. Solovieva, S.M. Miroshnichenko, P. E. Plyusnin, D. P. Pishchur, I. V. Eltsov, M.V. Edeleva, M.A. Shestopalov, O.A. Efremova
    No catalyst added hydrogen peroxide oxidation of dextran: an environment-friendly route to multifunctional polymers
    ACS Sustainable Chem. Eng. 2020, V. 8, N 13, Pp 5371-5379 doi:10.1021/acssuschemeng.0c01030, IF=7.632
  561. E.A. Pronina, Yu.A. Vorotnikov, T.N. Pozmogova, A. O. Solovieva, S.M. Miroshnichenko, P. E. Plyusnin, D. P. Pishchur, I. V. Eltsov, M.V. Edeleva, M.A. Shestopalov, O.A. Efremova
    No catalyst added hydrogen peroxide oxidation of dextran: an environment-friendly route to multifunctional polymers
    ACS Sustainable Chem. Eng. 2020, V. 8, N 13, Pp 5371-5379 doi:10.1021/acssuschemeng.0c01030, IF=7.632
  562. E.A. Pronina, Yu.A. Vorotnikov, T.N. Pozmogova, A. O. Solovieva, S.M. Miroshnichenko, P. E. Plyusnin, D. P. Pishchur, I. V. Eltsov, M.V. Edeleva, M.A. Shestopalov, O.A. Efremova
    No catalyst added hydrogen peroxide oxidation of dextran: an environment-friendly route to multifunctional polymers
    ACS Sustainable Chem. Eng. 2020, V. 8, N 13, Pp 5371-5379 doi:10.1021/acssuschemeng.0c01030, IF=7.632
  563. E.A. Pronina, Yu.A. Vorotnikov, T.N. Pozmogova, A. O. Solovieva, S.M. Miroshnichenko, P. E. Plyusnin, D. P. Pishchur, I. V. Eltsov, M.V. Edeleva, M.A. Shestopalov, O.A. Efremova
    No catalyst added hydrogen peroxide oxidation of dextran: an environment-friendly route to multifunctional polymers
    ACS Sustainable Chem. Eng. 2020, V. 8, N 13, Pp 5371-5379 doi:10.1021/acssuschemeng.0c01030, IF=7.632
  564. E.A. Pronina, Yu.A. Vorotnikov, T.N. Pozmogova, A. O. Solovieva, S.M. Miroshnichenko, P. E. Plyusnin, D. P. Pishchur, I. V. Eltsov, M.V. Edeleva, M.A. Shestopalov, O.A. Efremova
    No catalyst added hydrogen peroxide oxidation of dextran: an environment-friendly route to multifunctional polymers
    ACS Sustainable Chem. Eng. 2020, V. 8, N 13, Pp 5371-5379 doi:10.1021/acssuschemeng.0c01030, IF=7.632
  565. E.A. Pronina, Yu.A. Vorotnikov, T.N. Pozmogova, A. O. Solovieva, S.M. Miroshnichenko, P. E. Plyusnin, D. P. Pishchur, I. V. Eltsov, M.V. Edeleva, M.A. Shestopalov, O.A. Efremova
    No catalyst added hydrogen peroxide oxidation of dextran: an environment-friendly route to multifunctional polymers
    ACS Sustainable Chem. Eng. 2020, V. 8, N 13, Pp 5371-5379 doi:10.1021/acssuschemeng.0c01030, IF=7.632
  566. E.A. Pronina, Yu.A. Vorotnikov, T.N. Pozmogova, A. O. Solovieva, S.M. Miroshnichenko, P. E. Plyusnin, D. P. Pishchur, I. V. Eltsov, M.V. Edeleva, M.A. Shestopalov, O.A. Efremova
    No catalyst added hydrogen peroxide oxidation of dextran: an environment-friendly route to multifunctional polymers
    ACS Sustainable Chem. Eng. 2020, V. 8, N 13, Pp 5371-5379 doi:10.1021/acssuschemeng.0c01030, IF=7.632
  567. M. Laluc, P. Maki-Arvela, A.F. Peixoto, N. Li-Zhulanov, T. Sandberg, N.F. Salakhutdinov, K. Volcho, C. Freire, A.Yu. Sidorenko, D.Yu. Murzin
    Catalytic synthesis of bioactive 2H-chromene alcohols from (-)-isopulegol and acetone on sulfonated clays
    Reaction Kinetics, Mechanisms and Catalysis, 2020, V. 129, N 2, Pp 627-644 doi:10.1007/s11144-020-01740-9, IF=1.52
  568. M. Laluc, P. Maki-Arvela, A.F. Peixoto, N. Li-Zhulanov, T. Sandberg, N.F. Salakhutdinov, K. Volcho, C. Freire, A.Yu. Sidorenko, D.Yu. Murzin
    Catalytic synthesis of bioactive 2H-chromene alcohols from (-)-isopulegol and acetone on sulfonated clays
    Reaction Kinetics, Mechanisms and Catalysis, 2020, V. 129, N 2, Pp 627-644 doi:10.1007/s11144-020-01740-9, IF=1.52
  569. M. Laluc, P. Maki-Arvela, A.F. Peixoto, N. Li-Zhulanov, T. Sandberg, N.F. Salakhutdinov, K. Volcho, C. Freire, A.Yu. Sidorenko, D.Yu. Murzin
    Catalytic synthesis of bioactive 2H-chromene alcohols from (-)-isopulegol and acetone on sulfonated clays
    Reaction Kinetics, Mechanisms and Catalysis, 2020, V. 129, N 2, Pp 627-644 doi:10.1007/s11144-020-01740-9, IF=1.52
  570. M. Laluc, P. Maki-Arvela, A.F. Peixoto, N. Li-Zhulanov, T. Sandberg, N.F. Salakhutdinov, K. Volcho, C. Freire, A.Yu. Sidorenko, D.Yu. Murzin
    Catalytic synthesis of bioactive 2H-chromene alcohols from (-)-isopulegol and acetone on sulfonated clays
    Reaction Kinetics, Mechanisms and Catalysis, 2020, V. 129, N 2, Pp 627-644 doi:10.1007/s11144-020-01740-9, IF=1.52
  571. M. Laluc, P. Maki-Arvela, A.F. Peixoto, N. Li-Zhulanov, T. Sandberg, N.F. Salakhutdinov, K. Volcho, C. Freire, A.Yu. Sidorenko, D.Yu. Murzin
    Catalytic synthesis of bioactive 2H-chromene alcohols from (-)-isopulegol and acetone on sulfonated clays
    Reaction Kinetics, Mechanisms and Catalysis, 2020, V. 129, N 2, Pp 627-644 doi:10.1007/s11144-020-01740-9, IF=1.52
  572. M. Laluc, P. Maki-Arvela, A.F. Peixoto, N. Li-Zhulanov, T. Sandberg, N.F. Salakhutdinov, K. Volcho, C. Freire, A.Yu. Sidorenko, D.Yu. Murzin
    Catalytic synthesis of bioactive 2H-chromene alcohols from (-)-isopulegol and acetone on sulfonated clays
    Reaction Kinetics, Mechanisms and Catalysis, 2020, V. 129, N 2, Pp 627-644 doi:10.1007/s11144-020-01740-9, IF=1.52
  573. M. Laluc, P. Maki-Arvela, A.F. Peixoto, N. Li-Zhulanov, T. Sandberg, N.F. Salakhutdinov, K. Volcho, C. Freire, A.Yu. Sidorenko, D.Yu. Murzin
    Catalytic synthesis of bioactive 2H-chromene alcohols from (-)-isopulegol and acetone on sulfonated clays
    Reaction Kinetics, Mechanisms and Catalysis, 2020, V. 129, N 2, Pp 627-644 doi:10.1007/s11144-020-01740-9, IF=1.52
  574. V.A. Logvinenko, V.P. Fadeeva, B.A. Selivanov, V.D. Tikhova, A.A. Nefedov, A.Ya. Tikhonov
    Thermal decomposition of several N,N'-bis(2-hydroxyiminoalkyl)-α,α'-dinitrones
    Journal of Thermal Analysis and Calorimetry, 2020, V. 140, N 2, Pp 685-693 doi:10.1007/s10973-019-08868-4, IF=2.731
  575. E.N. Golubeva, N.A. Chumakova, S.V. Kuzin, I.A. Grigoriev, T. Kalai, A.A. Korotkevich, S.E. Bogorodsky, L.I. Krotova, V.K. Popov, V.V. Lunin
    Paramagnetic bioactives encapsulated in poly(D,L-lactide) microparticules: Spatial distribution and in vitro release kinetics
    The Journal of Supercritical Fluids, 2020, V. 158, Art. Number 104748 doi:10.1016/j.supflu.2019.104748, IF=3.744
  576. E.N. Golubeva, N.A. Chumakova, S.V. Kuzin, I.A. Grigoriev, T. Kalai, A.A. Korotkevich, S.E. Bogorodsky, L.I. Krotova, V.K. Popov, V.V. Lunin
    Paramagnetic bioactives encapsulated in poly(D,L-lactide) microparticules: Spatial distribution and in vitro release kinetics
    The Journal of Supercritical Fluids, 2020, V. 158, Art. Number 104748 doi:10.1016/j.supflu.2019.104748, IF=3.744
  577. E.N. Golubeva, N.A. Chumakova, S.V. Kuzin, I.A. Grigoriev, T. Kalai, A.A. Korotkevich, S.E. Bogorodsky, L.I. Krotova, V.K. Popov, V.V. Lunin
    Paramagnetic bioactives encapsulated in poly(D,L-lactide) microparticules: Spatial distribution and in vitro release kinetics
    The Journal of Supercritical Fluids, 2020, V. 158, Art. Number 104748 doi:10.1016/j.supflu.2019.104748, IF=3.744
  578. E.N. Golubeva, N.A. Chumakova, S.V. Kuzin, I.A. Grigoriev, T. Kalai, A.A. Korotkevich, S.E. Bogorodsky, L.I. Krotova, V.K. Popov, V.V. Lunin
    Paramagnetic bioactives encapsulated in poly(D,L-lactide) microparticules: Spatial distribution and in vitro release kinetics
    The Journal of Supercritical Fluids, 2020, V. 158, Art. Number 104748 doi:10.1016/j.supflu.2019.104748, IF=3.744
  579. E.N. Golubeva, N.A. Chumakova, S.V. Kuzin, I.A. Grigoriev, T. Kalai, A.A. Korotkevich, S.E. Bogorodsky, L.I. Krotova, V.K. Popov, V.V. Lunin
    Paramagnetic bioactives encapsulated in poly(D,L-lactide) microparticules: Spatial distribution and in vitro release kinetics
    The Journal of Supercritical Fluids, 2020, V. 158, Art. Number 104748 doi:10.1016/j.supflu.2019.104748, IF=3.744
  580. E.N. Golubeva, N.A. Chumakova, S.V. Kuzin, I.A. Grigoriev, T. Kalai, A.A. Korotkevich, S.E. Bogorodsky, L.I. Krotova, V.K. Popov, V.V. Lunin
    Paramagnetic bioactives encapsulated in poly(D,L-lactide) microparticules: Spatial distribution and in vitro release kinetics
    The Journal of Supercritical Fluids, 2020, V. 158, Art. Number 104748 doi:10.1016/j.supflu.2019.104748, IF=3.744
  581. E.N. Golubeva, N.A. Chumakova, S.V. Kuzin, I.A. Grigoriev, T. Kalai, A.A. Korotkevich, S.E. Bogorodsky, L.I. Krotova, V.K. Popov, V.V. Lunin
    Paramagnetic bioactives encapsulated in poly(D,L-lactide) microparticules: Spatial distribution and in vitro release kinetics
    The Journal of Supercritical Fluids, 2020, V. 158, Art. Number 104748 doi:10.1016/j.supflu.2019.104748, IF=3.744
  582. E.N. Golubeva, N.A. Chumakova, S.V. Kuzin, I.A. Grigoriev, T. Kalai, A.A. Korotkevich, S.E. Bogorodsky, L.I. Krotova, V.K. Popov, V.V. Lunin
    Paramagnetic bioactives encapsulated in poly(D,L-lactide) microparticules: Spatial distribution and in vitro release kinetics
    The Journal of Supercritical Fluids, 2020, V. 158, Art. Number 104748 doi:10.1016/j.supflu.2019.104748, IF=3.744
  583. E.N. Golubeva, N.A. Chumakova, S.V. Kuzin, I.A. Grigoriev, T. Kalai, A.A. Korotkevich, S.E. Bogorodsky, L.I. Krotova, V.K. Popov, V.V. Lunin
    Paramagnetic bioactives encapsulated in poly(D,L-lactide) microparticules: Spatial distribution and in vitro release kinetics
    The Journal of Supercritical Fluids, 2020, V. 158, Art. Number 104748 doi:10.1016/j.supflu.2019.104748, IF=3.744
  584. G.N. Chekhova, D.V. Pinakov, Yu.V. Shubin, V.P. Fadeeva, V.D. Tikhova, A.V. Okotrub, L.G. Bulusheva
    Room temperature synthesis of fluorinated graphite intercalation compounds with low fluorine loading of host matrix
    Journal of Fluorine Chemistry, 2020, V. 232, 109482 doi:10.1016/j.jfluchem.2020.109482, IF=2.332
  585. G.N. Chekhova, D.V. Pinakov, Yu.V. Shubin, V.P. Fadeeva, V.D. Tikhova, A.V. Okotrub, L.G. Bulusheva
    Room temperature synthesis of fluorinated graphite intercalation compounds with low fluorine loading of host matrix
    Journal of Fluorine Chemistry, 2020, V. 232, 109482 doi:10.1016/j.jfluchem.2020.109482, IF=2.332
  586. G.N. Chekhova, D.V. Pinakov, Yu.V. Shubin, V.P. Fadeeva, V.D. Tikhova, A.V. Okotrub, L.G. Bulusheva
    Room temperature synthesis of fluorinated graphite intercalation compounds with low fluorine loading of host matrix
    Journal of Fluorine Chemistry, 2020, V. 232, 109482 doi:10.1016/j.jfluchem.2020.109482, IF=2.332
  587. G.N. Chekhova, D.V. Pinakov, Yu.V. Shubin, V.P. Fadeeva, V.D. Tikhova, A.V. Okotrub, L.G. Bulusheva
    Room temperature synthesis of fluorinated graphite intercalation compounds with low fluorine loading of host matrix
    Journal of Fluorine Chemistry, 2020, V. 232, 109482 doi:10.1016/j.jfluchem.2020.109482, IF=2.332
  588. G.N. Chekhova, D.V. Pinakov, Yu.V. Shubin, V.P. Fadeeva, V.D. Tikhova, A.V. Okotrub, L.G. Bulusheva
    Room temperature synthesis of fluorinated graphite intercalation compounds with low fluorine loading of host matrix
    Journal of Fluorine Chemistry, 2020, V. 232, 109482 doi:10.1016/j.jfluchem.2020.109482, IF=2.332
  589. D.S. Odintsov, I.K. Shundrina, I.A. Os'kina, I.V. Oleynik, J. Beckmann, L.A. Shundrin
    Ambipolar polyimides with pendant groups based on 9H-thioxanthene-9-one derivatives: synthesis, thermostability, electrochemical and electrochromic properties
    Polymer Chemistry, 2020, V. 11, N 12, Pp 2243-2251 doi:10.1039/C9PY01930H, IF=5.342
  590. E. Tretyakov, A. Tkacheva, G. Romanenko, A. Bogomyakov, D. Stass, A. Maryasov, E. Zueva, B. Trofimov, V. Ovcharenko
    (Pyrrole-2,5-Diyl)-Bis(Nitronyl Nitroxide) and-Bis(Iminonitroxide): Specific Features of the Synthesis, Structure, and Magnetic Properties
    Molecules 2020, 25(7), 1503 doi:10.3390/molecules25071503, IF=3.267
  591. E. Tretyakov, A. Tkacheva, G. Romanenko, A. Bogomyakov, D. Stass, A. Maryasov, E. Zueva, B. Trofimov, V. Ovcharenko
    (Pyrrole-2,5-Diyl)-Bis(Nitronyl Nitroxide) and-Bis(Iminonitroxide): Specific Features of the Synthesis, Structure, and Magnetic Properties
    Molecules 2020, 25(7), 1503 doi:10.3390/molecules25071503, IF=3.267
  592. E. Tretyakov, A. Tkacheva, G. Romanenko, A. Bogomyakov, D. Stass, A. Maryasov, E. Zueva, B. Trofimov, V. Ovcharenko
    (Pyrrole-2,5-Diyl)-Bis(Nitronyl Nitroxide) and-Bis(Iminonitroxide): Specific Features of the Synthesis, Structure, and Magnetic Properties
    Molecules 2020, 25(7), 1503 doi:10.3390/molecules25071503, IF=3.267
  593. E. Tretyakov, A. Tkacheva, G. Romanenko, A. Bogomyakov, D. Stass, A. Maryasov, E. Zueva, B. Trofimov, V. Ovcharenko
    (Pyrrole-2,5-Diyl)-Bis(Nitronyl Nitroxide) and-Bis(Iminonitroxide): Specific Features of the Synthesis, Structure, and Magnetic Properties
    Molecules 2020, 25(7), 1503 doi:10.3390/molecules25071503, IF=3.267
  594. E. Tretyakov, A. Tkacheva, G. Romanenko, A. Bogomyakov, D. Stass, A. Maryasov, E. Zueva, B. Trofimov, V. Ovcharenko
    (Pyrrole-2,5-Diyl)-Bis(Nitronyl Nitroxide) and-Bis(Iminonitroxide): Specific Features of the Synthesis, Structure, and Magnetic Properties
    Molecules 2020, 25(7), 1503 doi:10.3390/molecules25071503, IF=3.267
  595. E. Tretyakov, A. Tkacheva, G. Romanenko, A. Bogomyakov, D. Stass, A. Maryasov, E. Zueva, B. Trofimov, V. Ovcharenko
    (Pyrrole-2,5-Diyl)-Bis(Nitronyl Nitroxide) and-Bis(Iminonitroxide): Specific Features of the Synthesis, Structure, and Magnetic Properties
    Molecules 2020, 25(7), 1503 doi:10.3390/molecules25071503, IF=3.267
  596. E. Tretyakov, A. Tkacheva, G. Romanenko, A. Bogomyakov, D. Stass, A. Maryasov, E. Zueva, B. Trofimov, V. Ovcharenko
    (Pyrrole-2,5-Diyl)-Bis(Nitronyl Nitroxide) and-Bis(Iminonitroxide): Specific Features of the Synthesis, Structure, and Magnetic Properties
    Molecules 2020, 25(7), 1503 doi:10.3390/molecules25071503, IF=3.267
  597. E. Tretyakov, A. Tkacheva, G. Romanenko, A. Bogomyakov, D. Stass, A. Maryasov, E. Zueva, B. Trofimov, V. Ovcharenko
    (Pyrrole-2,5-Diyl)-Bis(Nitronyl Nitroxide) and-Bis(Iminonitroxide): Specific Features of the Synthesis, Structure, and Magnetic Properties
    Molecules 2020, 25(7), 1503 doi:10.3390/molecules25071503, IF=3.267
  598. E. Zaytseva, D. Shiomi, Yu. Ten, Yu.V. Gatilov, A. Lomanovich, D.V. Stass, A.S. Bogomyakov, A. Yu, K. Sugisaki, K. Sato, T. Takui, E.G. Bagryanskaya, D. Mazhukin
    Magnetic Properties of π-Conjugated Hybrid Phenoxyl-Nitroxide Radicals with Extended π-Spin Delocalization
    The Journal of Physical Chemistry A, 2020, 124, 12, 2416-2426 doi:10.1021/acs.jpca.9b11856, IF=2.6
  599. E. Zaytseva, D. Shiomi, Yu. Ten, Yu.V. Gatilov, A. Lomanovich, D.V. Stass, A.S. Bogomyakov, A. Yu, K. Sugisaki, K. Sato, T. Takui, E.G. Bagryanskaya, D. Mazhukin
    Magnetic Properties of π-Conjugated Hybrid Phenoxyl-Nitroxide Radicals with Extended π-Spin Delocalization
    The Journal of Physical Chemistry A, 2020, 124, 12, 2416-2426 doi:10.1021/acs.jpca.9b11856, IF=2.6
  600. E. Zaytseva, D. Shiomi, Yu. Ten, Yu.V. Gatilov, A. Lomanovich, D.V. Stass, A.S. Bogomyakov, A. Yu, K. Sugisaki, K. Sato, T. Takui, E.G. Bagryanskaya, D. Mazhukin
    Magnetic Properties of π-Conjugated Hybrid Phenoxyl-Nitroxide Radicals with Extended π-Spin Delocalization
    The Journal of Physical Chemistry A, 2020, 124, 12, 2416-2426 doi:10.1021/acs.jpca.9b11856, IF=2.6
  601. E. Zaytseva, D. Shiomi, Yu. Ten, Yu.V. Gatilov, A. Lomanovich, D.V. Stass, A.S. Bogomyakov, A. Yu, K. Sugisaki, K. Sato, T. Takui, E.G. Bagryanskaya, D. Mazhukin
    Magnetic Properties of π-Conjugated Hybrid Phenoxyl-Nitroxide Radicals with Extended π-Spin Delocalization
    The Journal of Physical Chemistry A, 2020, 124, 12, 2416-2426 doi:10.1021/acs.jpca.9b11856, IF=2.6
  602. E. Zaytseva, D. Shiomi, Yu. Ten, Yu.V. Gatilov, A. Lomanovich, D.V. Stass, A.S. Bogomyakov, A. Yu, K. Sugisaki, K. Sato, T. Takui, E.G. Bagryanskaya, D. Mazhukin
    Magnetic Properties of π-Conjugated Hybrid Phenoxyl-Nitroxide Radicals with Extended π-Spin Delocalization
    The Journal of Physical Chemistry A, 2020, 124, 12, 2416-2426 doi:10.1021/acs.jpca.9b11856, IF=2.6
  603. E. Zaytseva, D. Shiomi, Yu. Ten, Yu.V. Gatilov, A. Lomanovich, D.V. Stass, A.S. Bogomyakov, A. Yu, K. Sugisaki, K. Sato, T. Takui, E.G. Bagryanskaya, D. Mazhukin
    Magnetic Properties of π-Conjugated Hybrid Phenoxyl-Nitroxide Radicals with Extended π-Spin Delocalization
    The Journal of Physical Chemistry A, 2020, 124, 12, 2416-2426 doi:10.1021/acs.jpca.9b11856, IF=2.6
  604. E. Zaytseva, D. Shiomi, Yu. Ten, Yu.V. Gatilov, A. Lomanovich, D.V. Stass, A.S. Bogomyakov, A. Yu, K. Sugisaki, K. Sato, T. Takui, E.G. Bagryanskaya, D. Mazhukin
    Magnetic Properties of π-Conjugated Hybrid Phenoxyl-Nitroxide Radicals with Extended π-Spin Delocalization
    The Journal of Physical Chemistry A, 2020, 124, 12, 2416-2426 doi:10.1021/acs.jpca.9b11856, IF=2.6
  605. Yu.S. Demidova, E.S. Mozhaitsev, A.A. Munkuev, E.V. Suslov, A.A. Saraev, K.P. Volcho, N.F. Salakhutdinov, I.L. Simakova, D.Yu. Murzin
    Monoterpenoid Oximes Hydrogenation Over Platinum Catalysts
    Topics in Catalysis, 2020, V. 63, N 1-2, pages187-195 doi:10.1007/s11244-020-01234-x, IF=2.406
  606. Yu.S. Demidova, E.S. Mozhaitsev, A.A. Munkuev, E.V. Suslov, A.A. Saraev, K.P. Volcho, N.F. Salakhutdinov, I.L. Simakova, D.Yu. Murzin
    Monoterpenoid Oximes Hydrogenation Over Platinum Catalysts
    Topics in Catalysis, 2020, V. 63, N 1-2, pages187-195 doi:10.1007/s11244-020-01234-x, IF=2.406
  607. Yu.S. Demidova, E.S. Mozhaitsev, A.A. Munkuev, E.V. Suslov, A.A. Saraev, K.P. Volcho, N.F. Salakhutdinov, I.L. Simakova, D.Yu. Murzin
    Monoterpenoid Oximes Hydrogenation Over Platinum Catalysts
    Topics in Catalysis, 2020, V. 63, N 1-2, pages187-195 doi:10.1007/s11244-020-01234-x, IF=2.406
  608. Yu.S. Demidova, E.S. Mozhaitsev, A.A. Munkuev, E.V. Suslov, A.A. Saraev, K.P. Volcho, N.F. Salakhutdinov, I.L. Simakova, D.Yu. Murzin
    Monoterpenoid Oximes Hydrogenation Over Platinum Catalysts
    Topics in Catalysis, 2020, V. 63, N 1-2, pages187-195 doi:10.1007/s11244-020-01234-x, IF=2.406
  609. A.A. Sinitsyna, S.G. Il’yasov, M.V. ChikinaIlia, I.V. Eltsov, A.A. Nefedov
    A search for synthetic routes to tetrabenzylglycoluril
    Chemical Papers, 2020, V. 74, N 3, pp 1019-1025 doi:10.1007/s11696-019-00941-4, IF=1.68
  610. A.A. Sinitsyna, S.G. Il’yasov, M.V. ChikinaIlia, I.V. Eltsov, A.A. Nefedov
    A search for synthetic routes to tetrabenzylglycoluril
    Chemical Papers, 2020, V. 74, N 3, pp 1019-1025 doi:10.1007/s11696-019-00941-4, IF=1.68
  611. A.A. Sinitsyna, S.G. Il’yasov, M.V. ChikinaIlia, I.V. Eltsov, A.A. Nefedov
    A search for synthetic routes to tetrabenzylglycoluril
    Chemical Papers, 2020, V. 74, N 3, pp 1019-1025 doi:10.1007/s11696-019-00941-4, IF=1.68
  612. A.A. Sinitsyna, S.G. Il’yasov, M.V. ChikinaIlia, I.V. Eltsov, A.A. Nefedov
    A search for synthetic routes to tetrabenzylglycoluril
    Chemical Papers, 2020, V. 74, N 3, pp 1019-1025 doi:10.1007/s11696-019-00941-4, IF=1.68
  613. А.В. Липеева, М.П. Долгих, Т.Г. Толстикова, Э.Э. Шульц
    Исследование растительных кумаринов. 18. конъюгаты кумаринов с лупановыми тритерпеноидами и 1,2,3-триазолами: синтез и противовоспалительная активность
    Биоорганическая химия. 2020. Т. 46. № 2. С. 115-123. DOI: 10.31857/S0132342320010194 (Study of Plant Coumarins. 18. Coumarin Conjugates with Lupane Triterpenoidsand 1,2,3-triazoles: Synthesis and Anti-inflammatory Activity/ Lipeeva A. V., Dolgikh М. Р., Tolstikova T. G., Shults E. E// Russian Journal of Bioorganic Chemistry, 2010, V. 46, N 2, Pp125-132 doi:10.1134/S1068162020010161), IF=0.682
  614. M. Davydova, I. Bauer, V. Brel, M. Rakhmanova, I. Bagryanskaya, A.V. Artem'ev
    Manganese(II) thiocyanate complexes with bis(phosphine oxide) ligands: synthesis and excitation wavelength-dependent multicolor luminescence
    European Journal of Inorganic Chemistry, 2020, V. 2020, N 8, Pp 695-703 doi:10.1002/ejic.201901213, IF=2.529
  615. M. Davydova, I. Bauer, V. Brel, M. Rakhmanova, I. Bagryanskaya, A.V. Artem'ev
    Manganese(II) thiocyanate complexes with bis(phosphine oxide) ligands: synthesis and excitation wavelength-dependent multicolor luminescence
    European Journal of Inorganic Chemistry, 2020, V. 2020, N 8, Pp 695-703 doi:10.1002/ejic.201901213, IF=2.529
  616. M. Davydova, I. Bauer, V. Brel, M. Rakhmanova, I. Bagryanskaya, A.V. Artem'ev
    Manganese(II) thiocyanate complexes with bis(phosphine oxide) ligands: synthesis and excitation wavelength-dependent multicolor luminescence
    European Journal of Inorganic Chemistry, 2020, V. 2020, N 8, Pp 695-703 doi:10.1002/ejic.201901213, IF=2.529
  617. M. Davydova, I. Bauer, V. Brel, M. Rakhmanova, I. Bagryanskaya, A.V. Artem'ev
    Manganese(II) thiocyanate complexes with bis(phosphine oxide) ligands: synthesis and excitation wavelength-dependent multicolor luminescence
    European Journal of Inorganic Chemistry, 2020, V. 2020, N 8, Pp 695-703 doi:10.1002/ejic.201901213, IF=2.529
  618. M. Davydova, I. Bauer, V. Brel, M. Rakhmanova, I. Bagryanskaya, A.V. Artem'ev
    Manganese(II) thiocyanate complexes with bis(phosphine oxide) ligands: synthesis and excitation wavelength-dependent multicolor luminescence
    European Journal of Inorganic Chemistry, 2020, V. 2020, N 8, Pp 695-703 doi:10.1002/ejic.201901213, IF=2.529
  619. V. Tormyshev, A. Chubarov, O. Krumkacheva, D. Trukhin, O. Rogozhnikova, A. Spitsyna, A. Kuzhelev, V. Koval, M. Fedin, T. Godovikova, M. Bowman, E.G. Bagryanskaya
    Methanethiosulfonate Derivative of OX063 Trityl: a Promising and Efficient Reagent for SDSL of Proteins
    Chemistry-A European Journal, 2020, V.26, N 12, Pp 2705-2712 doi:10.1002/chem.201904587, IF=4.857
  620. V. Tormyshev, A. Chubarov, O. Krumkacheva, D. Trukhin, O. Rogozhnikova, A. Spitsyna, A. Kuzhelev, V. Koval, M. Fedin, T. Godovikova, M. Bowman, E.G. Bagryanskaya
    Methanethiosulfonate Derivative of OX063 Trityl: a Promising and Efficient Reagent for SDSL of Proteins
    Chemistry-A European Journal, 2020, V.26, N 12, Pp 2705-2712 doi:10.1002/chem.201904587, IF=4.857
  621. V. Tormyshev, A. Chubarov, O. Krumkacheva, D. Trukhin, O. Rogozhnikova, A. Spitsyna, A. Kuzhelev, V. Koval, M. Fedin, T. Godovikova, M. Bowman, E.G. Bagryanskaya
    Methanethiosulfonate Derivative of OX063 Trityl: a Promising and Efficient Reagent for SDSL of Proteins
    Chemistry-A European Journal, 2020, V.26, N 12, Pp 2705-2712 doi:10.1002/chem.201904587, IF=4.857
  622. V. Tormyshev, A. Chubarov, O. Krumkacheva, D. Trukhin, O. Rogozhnikova, A. Spitsyna, A. Kuzhelev, V. Koval, M. Fedin, T. Godovikova, M. Bowman, E.G. Bagryanskaya
    Methanethiosulfonate Derivative of OX063 Trityl: a Promising and Efficient Reagent for SDSL of Proteins
    Chemistry-A European Journal, 2020, V.26, N 12, Pp 2705-2712 doi:10.1002/chem.201904587, IF=4.857
  623. V. Tormyshev, A. Chubarov, O. Krumkacheva, D. Trukhin, O. Rogozhnikova, A. Spitsyna, A. Kuzhelev, V. Koval, M. Fedin, T. Godovikova, M. Bowman, E.G. Bagryanskaya
    Methanethiosulfonate Derivative of OX063 Trityl: a Promising and Efficient Reagent for SDSL of Proteins
    Chemistry-A European Journal, 2020, V.26, N 12, Pp 2705-2712 doi:10.1002/chem.201904587, IF=4.857
  624. N.N. Fishman, N.N. Lukzen, K.L. Ivanov, M.V. Edeleva, S.V. Fokin, G.V. Romanenko, V.I. Ovcharenko
    Multifrequency NMR as an Efficient Tool to Investigate Heterospin Complexes in Solutions
    The Journal of Physical Chemistry A, 2020, 124, 7, 1343-1352 doi:10.1021/acs.jpca.9b11104, IF=2.6
  625. N.N. Fishman, N.N. Lukzen, K.L. Ivanov, M.V. Edeleva, S.V. Fokin, G.V. Romanenko, V.I. Ovcharenko
    Multifrequency NMR as an Efficient Tool to Investigate Heterospin Complexes in Solutions
    The Journal of Physical Chemistry A, 2020, 124, 7, 1343-1352 doi:10.1021/acs.jpca.9b11104, IF=2.6
  626. N.N. Fishman, N.N. Lukzen, K.L. Ivanov, M.V. Edeleva, S.V. Fokin, G.V. Romanenko, V.I. Ovcharenko
    Multifrequency NMR as an Efficient Tool to Investigate Heterospin Complexes in Solutions
    The Journal of Physical Chemistry A, 2020, 124, 7, 1343-1352 doi:10.1021/acs.jpca.9b11104, IF=2.6
  627. N.N. Fishman, N.N. Lukzen, K.L. Ivanov, M.V. Edeleva, S.V. Fokin, G.V. Romanenko, V.I. Ovcharenko
    Multifrequency NMR as an Efficient Tool to Investigate Heterospin Complexes in Solutions
    The Journal of Physical Chemistry A, 2020, 124, 7, 1343-1352 doi:10.1021/acs.jpca.9b11104, IF=2.6
  628. N.N. Fishman, N.N. Lukzen, K.L. Ivanov, M.V. Edeleva, S.V. Fokin, G.V. Romanenko, V.I. Ovcharenko
    Multifrequency NMR as an Efficient Tool to Investigate Heterospin Complexes in Solutions
    The Journal of Physical Chemistry A, 2020, 124, 7, 1343-1352 doi:10.1021/acs.jpca.9b11104, IF=2.6
  629. N.N. Fishman, N.N. Lukzen, K.L. Ivanov, M.V. Edeleva, S.V. Fokin, G.V. Romanenko, V.I. Ovcharenko
    Multifrequency NMR as an Efficient Tool to Investigate Heterospin Complexes in Solutions
    The Journal of Physical Chemistry A, 2020, 124, 7, 1343-1352 doi:10.1021/acs.jpca.9b11104, IF=2.6
  630. I.F. Zhurko, S. Dobrynin, A.A. Gorodetskii, Yu.I. Glazachev, T.V. Rybalova, E.I. Chernyak, N. Asanbaeva, E.G. Bagryanskaya, I.A. Kirilyuk
    2-Butyl-2-tert-butyl-5,5-diethylpyrrolidine-1-oxyls: Synthesis and Properties
    Molecules 2020, 25(4), 845 doi:10.3390/molecules25040845, IF=3.267
  631. A.Yu. Sosorev, V.A. Trukhanov, D.R. Maslennikov, O. V Borshchev, R. Polyakov, M. Skorotetcky, N.M. Surin, M.S. Kazantsev, D.I. Dominskiy, V.A. Tafeenko, S.A. Ponomarenko, D.Yu. Paraschuk
    Fluorinated thiophene-phenylene co-oligomers for optoelectronic devices
    ACS Appl. Mater. Interfaces, 2020, 12, 8, 9507-9519 doi:10.1021/acsami.9b20295, IF=8.758
  632. A.Yu. Sosorev, V.A. Trukhanov, D.R. Maslennikov, O. V Borshchev, R. Polyakov, M. Skorotetcky, N.M. Surin, M.S. Kazantsev, D.I. Dominskiy, V.A. Tafeenko, S.A. Ponomarenko, D.Yu. Paraschuk
    Fluorinated thiophene-phenylene co-oligomers for optoelectronic devices
    ACS Appl. Mater. Interfaces, 2020, 12, 8, 9507-9519 doi:10.1021/acsami.9b20295, IF=8.758
  633. A.Yu. Sosorev, V.A. Trukhanov, D.R. Maslennikov, O. V Borshchev, R. Polyakov, M. Skorotetcky, N.M. Surin, M.S. Kazantsev, D.I. Dominskiy, V.A. Tafeenko, S.A. Ponomarenko, D.Yu. Paraschuk
    Fluorinated thiophene-phenylene co-oligomers for optoelectronic devices
    ACS Appl. Mater. Interfaces, 2020, 12, 8, 9507-9519 doi:10.1021/acsami.9b20295, IF=8.758
  634. A.Yu. Sosorev, V.A. Trukhanov, D.R. Maslennikov, O. V Borshchev, R. Polyakov, M. Skorotetcky, N.M. Surin, M.S. Kazantsev, D.I. Dominskiy, V.A. Tafeenko, S.A. Ponomarenko, D.Yu. Paraschuk
    Fluorinated thiophene-phenylene co-oligomers for optoelectronic devices
    ACS Appl. Mater. Interfaces, 2020, 12, 8, 9507-9519 doi:10.1021/acsami.9b20295, IF=8.758
  635. A.Yu. Sosorev, V.A. Trukhanov, D.R. Maslennikov, O. V Borshchev, R. Polyakov, M. Skorotetcky, N.M. Surin, M.S. Kazantsev, D.I. Dominskiy, V.A. Tafeenko, S.A. Ponomarenko, D.Yu. Paraschuk
    Fluorinated thiophene-phenylene co-oligomers for optoelectronic devices
    ACS Appl. Mater. Interfaces, 2020, 12, 8, 9507-9519 doi:10.1021/acsami.9b20295, IF=8.758
  636. A.Yu. Sosorev, V.A. Trukhanov, D.R. Maslennikov, O. V Borshchev, R. Polyakov, M. Skorotetcky, N.M. Surin, M.S. Kazantsev, D.I. Dominskiy, V.A. Tafeenko, S.A. Ponomarenko, D.Yu. Paraschuk
    Fluorinated thiophene-phenylene co-oligomers for optoelectronic devices
    ACS Appl. Mater. Interfaces, 2020, 12, 8, 9507-9519 doi:10.1021/acsami.9b20295, IF=8.758
  637. A.Yu. Sosorev, V.A. Trukhanov, D.R. Maslennikov, O. V Borshchev, R. Polyakov, M. Skorotetcky, N.M. Surin, M.S. Kazantsev, D.I. Dominskiy, V.A. Tafeenko, S.A. Ponomarenko, D.Yu. Paraschuk
    Fluorinated thiophene-phenylene co-oligomers for optoelectronic devices
    ACS Appl. Mater. Interfaces, 2020, 12, 8, 9507-9519 doi:10.1021/acsami.9b20295, IF=8.758
  638. A.Yu. Sosorev, V.A. Trukhanov, D.R. Maslennikov, O. V Borshchev, R. Polyakov, M. Skorotetcky, N.M. Surin, M.S. Kazantsev, D.I. Dominskiy, V.A. Tafeenko, S.A. Ponomarenko, D.Yu. Paraschuk
    Fluorinated thiophene-phenylene co-oligomers for optoelectronic devices
    ACS Appl. Mater. Interfaces, 2020, 12, 8, 9507-9519 doi:10.1021/acsami.9b20295, IF=8.758
  639. A.Yu. Sosorev, V.A. Trukhanov, D.R. Maslennikov, O. V Borshchev, R. Polyakov, M. Skorotetcky, N.M. Surin, M.S. Kazantsev, D.I. Dominskiy, V.A. Tafeenko, S.A. Ponomarenko, D.Yu. Paraschuk
    Fluorinated thiophene-phenylene co-oligomers for optoelectronic devices
    ACS Appl. Mater. Interfaces, 2020, 12, 8, 9507-9519 doi:10.1021/acsami.9b20295, IF=8.758
  640. A.Yu. Sosorev, V.A. Trukhanov, D.R. Maslennikov, O. V Borshchev, R. Polyakov, M. Skorotetcky, N.M. Surin, M.S. Kazantsev, D.I. Dominskiy, V.A. Tafeenko, S.A. Ponomarenko, D.Yu. Paraschuk
    Fluorinated thiophene-phenylene co-oligomers for optoelectronic devices
    ACS Appl. Mater. Interfaces, 2020, 12, 8, 9507-9519 doi:10.1021/acsami.9b20295, IF=8.758
  641. A.Yu. Sosorev, V.A. Trukhanov, D.R. Maslennikov, O. V Borshchev, R. Polyakov, M. Skorotetcky, N.M. Surin, M.S. Kazantsev, D.I. Dominskiy, V.A. Tafeenko, S.A. Ponomarenko, D.Yu. Paraschuk
    Fluorinated thiophene-phenylene co-oligomers for optoelectronic devices
    ACS Appl. Mater. Interfaces, 2020, 12, 8, 9507-9519 doi:10.1021/acsami.9b20295, IF=8.758
  642. M.A. Lenskiy, E.E. Shul'ts, D.V. Korabel'nikov, A.V. Ozhogin, A.N. Novitskiy
    Pyrocatechol borates: Synthesis, reaction with formaldehyde, and solvent effect on polycondensation process
    Polymer, 2020, V. 183 , 122162 doi:10.1016/j.polymer.2020.122162, IF=4.231
  643. M.A. Lenskiy, E.E. Shul'ts, D.V. Korabel'nikov, A.V. Ozhogin, A.N. Novitskiy
    Pyrocatechol borates: Synthesis, reaction with formaldehyde, and solvent effect on polycondensation process
    Polymer, 2020, V. 183 , 122162 doi:10.1016/j.polymer.2020.122162, IF=4.231
  644. M.A. Lenskiy, E.E. Shul'ts, D.V. Korabel'nikov, A.V. Ozhogin, A.N. Novitskiy
    Pyrocatechol borates: Synthesis, reaction with formaldehyde, and solvent effect on polycondensation process
    Polymer, 2020, V. 183 , 122162 doi:10.1016/j.polymer.2020.122162, IF=4.231
  645. M.A. Lenskiy, E.E. Shul'ts, D.V. Korabel'nikov, A.V. Ozhogin, A.N. Novitskiy
    Pyrocatechol borates: Synthesis, reaction with formaldehyde, and solvent effect on polycondensation process
    Polymer, 2020, V. 183 , 122162 doi:10.1016/j.polymer.2020.122162, IF=4.231
  646. A.A. Kotlyarova, K.Yu. Ponomarev, E.A. Morozova, D.V. Korchagina, E.V. Suslov, A.V. Pavlova, T.G. Tolstikova, K.P. Volcho, N.F. Salakhutdinov
    The effect of 3,7-diazabicyclo[3.3.1]nonanes containing monoterpenoid moieties on the physical activity of mice
    Journal of research in pharmacy, 2020, V. 24, N 2, Pp 196-204 doi:10.35333/jrp.2020.136
  647. A.D. Rogachev, D.V. Trebushat, A.N. Kudryashov, A.G. Pokrovsky
    Study of Sirolimus Adsorption and Preparation of Its Samples in Methanol, Acetonitrile and Their Mixtures with Water for HPLC-MS/MS Analysis
    Chromatographia, 2020, V. 83, N 2, pp 299-304 doi:10.1007/s10337-019-03835-5, IF=1.596
  648. A.D. Rogachev, D.V. Trebushat, A.N. Kudryashov, A.G. Pokrovsky
    Study of Sirolimus Adsorption and Preparation of Its Samples in Methanol, Acetonitrile and Their Mixtures with Water for HPLC-MS/MS Analysis
    Chromatographia, 2020, V. 83, N 2, pp 299-304 doi:10.1007/s10337-019-03835-5, IF=1.596
  649. A.D. Rogachev, D.V. Trebushat, A.N. Kudryashov, A.G. Pokrovsky
    Study of Sirolimus Adsorption and Preparation of Its Samples in Methanol, Acetonitrile and Their Mixtures with Water for HPLC-MS/MS Analysis
    Chromatographia, 2020, V. 83, N 2, pp 299-304 doi:10.1007/s10337-019-03835-5, IF=1.596
  650. V.V. Chernyshov, O.I. Yarovaya, D.S. Fadeev, Yu.V. Gatilov, Ya.L. Esaulkova, A.S. Muryleva, K.O. Sinegubova, V.V. Zarubaev, N.F. Salakhutdinov
    Single-stage synthesis of heterocyclic alkaloid-like compounds from (+)-camphoric acid and their antiviral activity
    Molecular Diversity, 2020, V. 24, N 1, Pp 61-67 doi:10.1007/s11030-019-09932-9, IF=2.013
  651. V.V. Chernyshov, O.I. Yarovaya, D.S. Fadeev, Yu.V. Gatilov, Ya.L. Esaulkova, A.S. Muryleva, K.O. Sinegubova, V.V. Zarubaev, N.F. Salakhutdinov
    Single-stage synthesis of heterocyclic alkaloid-like compounds from (+)-camphoric acid and their antiviral activity
    Molecular Diversity, 2020, V. 24, N 1, Pp 61-67 doi:10.1007/s11030-019-09932-9, IF=2.013
  652. V.V. Chernyshov, O.I. Yarovaya, D.S. Fadeev, Yu.V. Gatilov, Ya.L. Esaulkova, A.S. Muryleva, K.O. Sinegubova, V.V. Zarubaev, N.F. Salakhutdinov
    Single-stage synthesis of heterocyclic alkaloid-like compounds from (+)-camphoric acid and their antiviral activity
    Molecular Diversity, 2020, V. 24, N 1, Pp 61-67 doi:10.1007/s11030-019-09932-9, IF=2.013
  653. V.V. Chernyshov, O.I. Yarovaya, D.S. Fadeev, Yu.V. Gatilov, Ya.L. Esaulkova, A.S. Muryleva, K.O. Sinegubova, V.V. Zarubaev, N.F. Salakhutdinov
    Single-stage synthesis of heterocyclic alkaloid-like compounds from (+)-camphoric acid and their antiviral activity
    Molecular Diversity, 2020, V. 24, N 1, Pp 61-67 doi:10.1007/s11030-019-09932-9, IF=2.013
  654. Д.А. Рудаков, А.М. Генаев, Ю.В. Гатилов, Е.А. Дикусар, Т.Д. Зверева, З.П. Зубрейчук, В.И. Поткин
    Синтез и структура 9-гидрокси-1,2-дикарба-клозо-додекаборана(11)
    Известия Академии наук. Серия химическая. 2020. № 2. С. 320-324. (Synthesis and structure of 9-hydroxy-1,2-dicarba-closo-dodecaborane(11)/ D. A. Rudakov, A. M. Genaev, Yu. V. Gatilov, E. A. Dikusar, T. D. Zvereva, Z. P. Zubreichuk & V. I. Potkin// Russian Chemical Bulten, 2020, V. 69, N 2, Pp 320-324 doi:10.1007/s11172-020-2763-1), IF=1.061
  655. Д.А. Рудаков, А.М. Генаев, Ю.В. Гатилов, Е.А. Дикусар, Т.Д. Зверева, З.П. Зубрейчук, В.И. Поткин
    Синтез и структура 9-гидрокси-1,2-дикарба-клозо-додекаборана(11)
    Известия Академии наук. Серия химическая. 2020. № 2. С. 320-324. (Synthesis and structure of 9-hydroxy-1,2-dicarba-closo-dodecaborane(11)/ D. A. Rudakov, A. M. Genaev, Yu. V. Gatilov, E. A. Dikusar, T. D. Zvereva, Z. P. Zubreichuk & V. I. Potkin// Russian Chemical Bulten, 2020, V. 69, N 2, Pp 320-324 doi:10.1007/s11172-020-2763-1), IF=1.061
  656. Д.А. Рудаков, А.М. Генаев, Ю.В. Гатилов, Е.А. Дикусар, Т.Д. Зверева, З.П. Зубрейчук, В.И. Поткин
    Синтез и структура 9-гидрокси-1,2-дикарба-клозо-додекаборана(11)
    Известия Академии наук. Серия химическая. 2020. № 2. С. 320-324. (Synthesis and structure of 9-hydroxy-1,2-dicarba-closo-dodecaborane(11)/ D. A. Rudakov, A. M. Genaev, Yu. V. Gatilov, E. A. Dikusar, T. D. Zvereva, Z. P. Zubreichuk & V. I. Potkin// Russian Chemical Bulten, 2020, V. 69, N 2, Pp 320-324 doi:10.1007/s11172-020-2763-1), IF=1.061
  657. Д.А. Рудаков, А.М. Генаев, Ю.В. Гатилов, Е.А. Дикусар, Т.Д. Зверева, З.П. Зубрейчук, В.И. Поткин
    Синтез и структура 9-гидрокси-1,2-дикарба-клозо-додекаборана(11)
    Известия Академии наук. Серия химическая. 2020. № 2. С. 320-324. (Synthesis and structure of 9-hydroxy-1,2-dicarba-closo-dodecaborane(11)/ D. A. Rudakov, A. M. Genaev, Yu. V. Gatilov, E. A. Dikusar, T. D. Zvereva, Z. P. Zubreichuk & V. I. Potkin// Russian Chemical Bulten, 2020, V. 69, N 2, Pp 320-324 doi:10.1007/s11172-020-2763-1), IF=1.061
  658. A. Sokol, A. Tomilenko, I. Sokol, P. Zaikin, T. Bul'bak
    Formation of Hydrocarbons in the Presence of Native Iron under Upper Mantle Conditions: Experimental Constraints
    Minerals 2020, 10(2), 88 (This article belongs to the Special Issue Genesis of Hydrocarbons in the Upper Mantle) doi:10.3390/min10020088, IF=2.38
  659. A. Sokol, A. Tomilenko, I. Sokol, P. Zaikin, T. Bul'bak
    Formation of Hydrocarbons in the Presence of Native Iron under Upper Mantle Conditions: Experimental Constraints
    Minerals 2020, 10(2), 88 (This article belongs to the Special Issue Genesis of Hydrocarbons in the Upper Mantle) doi:10.3390/min10020088, IF=2.38
  660. A. Sokol, A. Tomilenko, I. Sokol, P. Zaikin, T. Bul'bak
    Formation of Hydrocarbons in the Presence of Native Iron under Upper Mantle Conditions: Experimental Constraints
    Minerals 2020, 10(2), 88 (This article belongs to the Special Issue Genesis of Hydrocarbons in the Upper Mantle) doi:10.3390/min10020088, IF=2.38
  661. A. Sokol, A. Tomilenko, I. Sokol, P. Zaikin, T. Bul'bak
    Formation of Hydrocarbons in the Presence of Native Iron under Upper Mantle Conditions: Experimental Constraints
    Minerals 2020, 10(2), 88 (This article belongs to the Special Issue Genesis of Hydrocarbons in the Upper Mantle) doi:10.3390/min10020088, IF=2.38
  662. N.A. Puskarevsky, A.I. Smolentsev, A.A. Dmitriev, I. Vargas-Baca, N.P. Gritsan, J. Beckmann, A.V. Zibarev
    Bis(2,1,3-benzotelluradiazolidyl)2,1,3-benzotelluradiazole: a pair of radical anions coupled by Te⋯N chalcogen bonding
    Chem. Commun., 2020, V. 56, N 7, Pp 1113-1116 doi:10.1039/C9CC08110K, IF=5.996
  663. N.A. Puskarevsky, A.I. Smolentsev, A.A. Dmitriev, I. Vargas-Baca, N.P. Gritsan, J. Beckmann, A.V. Zibarev
    Bis(2,1,3-benzotelluradiazolidyl)2,1,3-benzotelluradiazole: a pair of radical anions coupled by Te⋯N chalcogen bonding
    Chem. Commun., 2020, V. 56, N 7, Pp 1113-1116 doi:10.1039/C9CC08110K, IF=5.996
  664. N.A. Puskarevsky, A.I. Smolentsev, A.A. Dmitriev, I. Vargas-Baca, N.P. Gritsan, J. Beckmann, A.V. Zibarev
    Bis(2,1,3-benzotelluradiazolidyl)2,1,3-benzotelluradiazole: a pair of radical anions coupled by Te⋯N chalcogen bonding
    Chem. Commun., 2020, V. 56, N 7, Pp 1113-1116 doi:10.1039/C9CC08110K, IF=5.996
  665. N.A. Puskarevsky, A.I. Smolentsev, A.A. Dmitriev, I. Vargas-Baca, N.P. Gritsan, J. Beckmann, A.V. Zibarev
    Bis(2,1,3-benzotelluradiazolidyl)2,1,3-benzotelluradiazole: a pair of radical anions coupled by Te⋯N chalcogen bonding
    Chem. Commun., 2020, V. 56, N 7, Pp 1113-1116 doi:10.1039/C9CC08110K, IF=5.996
  666. N.A. Puskarevsky, A.I. Smolentsev, A.A. Dmitriev, I. Vargas-Baca, N.P. Gritsan, J. Beckmann, A.V. Zibarev
    Bis(2,1,3-benzotelluradiazolidyl)2,1,3-benzotelluradiazole: a pair of radical anions coupled by Te⋯N chalcogen bonding
    Chem. Commun., 2020, V. 56, N 7, Pp 1113-1116 doi:10.1039/C9CC08110K, IF=5.996
  667. N.A. Puskarevsky, A.I. Smolentsev, A.A. Dmitriev, I. Vargas-Baca, N.P. Gritsan, J. Beckmann, A.V. Zibarev
    Bis(2,1,3-benzotelluradiazolidyl)2,1,3-benzotelluradiazole: a pair of radical anions coupled by Te⋯N chalcogen bonding
    Chem. Commun., 2020, V. 56, N 7, Pp 1113-1116 doi:10.1039/C9CC08110K, IF=5.996
  668. A.A. Kuzhelev, V.M. Tormyshev, V.F. Plyusnin, O.Yu. Rogozhnikova, M.V. Edeleva, S.L. Veber, E.G. Bagryanskaya
    Photochemistry of tris(2,3,5,6-tetrathiaaryl)methyl radicals in various solutions
    Phys. Chem. Chem. Phys., 2020, V. 22, N 3, Pp 1019-1026 doi:10.1039/C9CP06213K, IF=3.43
  669. A.A. Kuzhelev, V.M. Tormyshev, V.F. Plyusnin, O.Yu. Rogozhnikova, M.V. Edeleva, S.L. Veber, E.G. Bagryanskaya
    Photochemistry of tris(2,3,5,6-tetrathiaaryl)methyl radicals in various solutions
    Phys. Chem. Chem. Phys., 2020, V. 22, N 3, Pp 1019-1026 doi:10.1039/C9CP06213K, IF=3.43
  670. T. M. Khomenko , A. L. Zakharenko , A. A. Chepanova , E. S. Ilina , O. D. Zakharova , V. I. Kaledin , V. P. Nikolin , N. A. Popova , D. V. Korchagina , J. Reynisson , R. Chand , D.l M. Ayine-Tora , J. Patel , I. K. H. Leung , K. P. Volcho , N. F. Salakhutdinov, O. I. Lavrik
    Promising New Inhibitors of Tyrosyl-DNA Phosphodiesterase I (Tdp 1) Combining 4-Arylcoumarin and Monoterpenoid Moieties as Components of Complex Antitumor Therapy
    Int. J. Mol. Sci. 2020, 21(1), 126. This article belongs to the Special Issue Inhibition of DNA Repair Enzymes as a Valuable Pharmaceutical Approach) doi:10.3390/ijms21010126, IF=4.556
  671. T. M. Khomenko , A. L. Zakharenko , A. A. Chepanova , E. S. Ilina , O. D. Zakharova , V. I. Kaledin , V. P. Nikolin , N. A. Popova , D. V. Korchagina , J. Reynisson , R. Chand , D.l M. Ayine-Tora , J. Patel , I. K. H. Leung , K. P. Volcho , N. F. Salakhutdinov, O. I. Lavrik
    Promising New Inhibitors of Tyrosyl-DNA Phosphodiesterase I (Tdp 1) Combining 4-Arylcoumarin and Monoterpenoid Moieties as Components of Complex Antitumor Therapy
    Int. J. Mol. Sci. 2020, 21(1), 126. This article belongs to the Special Issue Inhibition of DNA Repair Enzymes as a Valuable Pharmaceutical Approach) doi:10.3390/ijms21010126, IF=4.556
  672. T. M. Khomenko , A. L. Zakharenko , A. A. Chepanova , E. S. Ilina , O. D. Zakharova , V. I. Kaledin , V. P. Nikolin , N. A. Popova , D. V. Korchagina , J. Reynisson , R. Chand , D.l M. Ayine-Tora , J. Patel , I. K. H. Leung , K. P. Volcho , N. F. Salakhutdinov, O. I. Lavrik
    Promising New Inhibitors of Tyrosyl-DNA Phosphodiesterase I (Tdp 1) Combining 4-Arylcoumarin and Monoterpenoid Moieties as Components of Complex Antitumor Therapy
    Int. J. Mol. Sci. 2020, 21(1), 126. This article belongs to the Special Issue Inhibition of DNA Repair Enzymes as a Valuable Pharmaceutical Approach) doi:10.3390/ijms21010126, IF=4.556
  673. T. M. Khomenko , A. L. Zakharenko , A. A. Chepanova , E. S. Ilina , O. D. Zakharova , V. I. Kaledin , V. P. Nikolin , N. A. Popova , D. V. Korchagina , J. Reynisson , R. Chand , D.l M. Ayine-Tora , J. Patel , I. K. H. Leung , K. P. Volcho , N. F. Salakhutdinov, O. I. Lavrik
    Promising New Inhibitors of Tyrosyl-DNA Phosphodiesterase I (Tdp 1) Combining 4-Arylcoumarin and Monoterpenoid Moieties as Components of Complex Antitumor Therapy
    Int. J. Mol. Sci. 2020, 21(1), 126. This article belongs to the Special Issue Inhibition of DNA Repair Enzymes as a Valuable Pharmaceutical Approach) doi:10.3390/ijms21010126, IF=4.556
  674. T. M. Khomenko , A. L. Zakharenko , A. A. Chepanova , E. S. Ilina , O. D. Zakharova , V. I. Kaledin , V. P. Nikolin , N. A. Popova , D. V. Korchagina , J. Reynisson , R. Chand , D.l M. Ayine-Tora , J. Patel , I. K. H. Leung , K. P. Volcho , N. F. Salakhutdinov, O. I. Lavrik
    Promising New Inhibitors of Tyrosyl-DNA Phosphodiesterase I (Tdp 1) Combining 4-Arylcoumarin and Monoterpenoid Moieties as Components of Complex Antitumor Therapy
    Int. J. Mol. Sci. 2020, 21(1), 126. This article belongs to the Special Issue Inhibition of DNA Repair Enzymes as a Valuable Pharmaceutical Approach) doi:10.3390/ijms21010126, IF=4.556
  675. T. M. Khomenko , A. L. Zakharenko , A. A. Chepanova , E. S. Ilina , O. D. Zakharova , V. I. Kaledin , V. P. Nikolin , N. A. Popova , D. V. Korchagina , J. Reynisson , R. Chand , D.l M. Ayine-Tora , J. Patel , I. K. H. Leung , K. P. Volcho , N. F. Salakhutdinov, O. I. Lavrik
    Promising New Inhibitors of Tyrosyl-DNA Phosphodiesterase I (Tdp 1) Combining 4-Arylcoumarin and Monoterpenoid Moieties as Components of Complex Antitumor Therapy
    Int. J. Mol. Sci. 2020, 21(1), 126. This article belongs to the Special Issue Inhibition of DNA Repair Enzymes as a Valuable Pharmaceutical Approach) doi:10.3390/ijms21010126, IF=4.556
  676. T. M. Khomenko , A. L. Zakharenko , A. A. Chepanova , E. S. Ilina , O. D. Zakharova , V. I. Kaledin , V. P. Nikolin , N. A. Popova , D. V. Korchagina , J. Reynisson , R. Chand , D.l M. Ayine-Tora , J. Patel , I. K. H. Leung , K. P. Volcho , N. F. Salakhutdinov, O. I. Lavrik
    Promising New Inhibitors of Tyrosyl-DNA Phosphodiesterase I (Tdp 1) Combining 4-Arylcoumarin and Monoterpenoid Moieties as Components of Complex Antitumor Therapy
    Int. J. Mol. Sci. 2020, 21(1), 126. This article belongs to the Special Issue Inhibition of DNA Repair Enzymes as a Valuable Pharmaceutical Approach) doi:10.3390/ijms21010126, IF=4.556
  677. T. M. Khomenko , A. L. Zakharenko , A. A. Chepanova , E. S. Ilina , O. D. Zakharova , V. I. Kaledin , V. P. Nikolin , N. A. Popova , D. V. Korchagina , J. Reynisson , R. Chand , D.l M. Ayine-Tora , J. Patel , I. K. H. Leung , K. P. Volcho , N. F. Salakhutdinov, O. I. Lavrik
    Promising New Inhibitors of Tyrosyl-DNA Phosphodiesterase I (Tdp 1) Combining 4-Arylcoumarin and Monoterpenoid Moieties as Components of Complex Antitumor Therapy
    Int. J. Mol. Sci. 2020, 21(1), 126. This article belongs to the Special Issue Inhibition of DNA Repair Enzymes as a Valuable Pharmaceutical Approach) doi:10.3390/ijms21010126, IF=4.556
  678. T. M. Khomenko , A. L. Zakharenko , A. A. Chepanova , E. S. Ilina , O. D. Zakharova , V. I. Kaledin , V. P. Nikolin , N. A. Popova , D. V. Korchagina , J. Reynisson , R. Chand , D.l M. Ayine-Tora , J. Patel , I. K. H. Leung , K. P. Volcho , N. F. Salakhutdinov, O. I. Lavrik
    Promising New Inhibitors of Tyrosyl-DNA Phosphodiesterase I (Tdp 1) Combining 4-Arylcoumarin and Monoterpenoid Moieties as Components of Complex Antitumor Therapy
    Int. J. Mol. Sci. 2020, 21(1), 126. This article belongs to the Special Issue Inhibition of DNA Repair Enzymes as a Valuable Pharmaceutical Approach) doi:10.3390/ijms21010126, IF=4.556
  679. T. M. Khomenko , A. L. Zakharenko , A. A. Chepanova , E. S. Ilina , O. D. Zakharova , V. I. Kaledin , V. P. Nikolin , N. A. Popova , D. V. Korchagina , J. Reynisson , R. Chand , D.l M. Ayine-Tora , J. Patel , I. K. H. Leung , K. P. Volcho , N. F. Salakhutdinov, O. I. Lavrik
    Promising New Inhibitors of Tyrosyl-DNA Phosphodiesterase I (Tdp 1) Combining 4-Arylcoumarin and Monoterpenoid Moieties as Components of Complex Antitumor Therapy
    Int. J. Mol. Sci. 2020, 21(1), 126. This article belongs to the Special Issue Inhibition of DNA Repair Enzymes as a Valuable Pharmaceutical Approach) doi:10.3390/ijms21010126, IF=4.556
  680. T. M. Khomenko , A. L. Zakharenko , A. A. Chepanova , E. S. Ilina , O. D. Zakharova , V. I. Kaledin , V. P. Nikolin , N. A. Popova , D. V. Korchagina , J. Reynisson , R. Chand , D.l M. Ayine-Tora , J. Patel , I. K. H. Leung , K. P. Volcho , N. F. Salakhutdinov, O. I. Lavrik
    Promising New Inhibitors of Tyrosyl-DNA Phosphodiesterase I (Tdp 1) Combining 4-Arylcoumarin and Monoterpenoid Moieties as Components of Complex Antitumor Therapy
    Int. J. Mol. Sci. 2020, 21(1), 126. This article belongs to the Special Issue Inhibition of DNA Repair Enzymes as a Valuable Pharmaceutical Approach) doi:10.3390/ijms21010126, IF=4.556
  681. T. M. Khomenko , A. L. Zakharenko , A. A. Chepanova , E. S. Ilina , O. D. Zakharova , V. I. Kaledin , V. P. Nikolin , N. A. Popova , D. V. Korchagina , J. Reynisson , R. Chand , D.l M. Ayine-Tora , J. Patel , I. K. H. Leung , K. P. Volcho , N. F. Salakhutdinov, O. I. Lavrik
    Promising New Inhibitors of Tyrosyl-DNA Phosphodiesterase I (Tdp 1) Combining 4-Arylcoumarin and Monoterpenoid Moieties as Components of Complex Antitumor Therapy
    Int. J. Mol. Sci. 2020, 21(1), 126. This article belongs to the Special Issue Inhibition of DNA Repair Enzymes as a Valuable Pharmaceutical Approach) doi:10.3390/ijms21010126, IF=4.556
  682. T. M. Khomenko , A. L. Zakharenko , A. A. Chepanova , E. S. Ilina , O. D. Zakharova , V. I. Kaledin , V. P. Nikolin , N. A. Popova , D. V. Korchagina , J. Reynisson , R. Chand , D.l M. Ayine-Tora , J. Patel , I. K. H. Leung , K. P. Volcho , N. F. Salakhutdinov, O. I. Lavrik
    Promising New Inhibitors of Tyrosyl-DNA Phosphodiesterase I (Tdp 1) Combining 4-Arylcoumarin and Monoterpenoid Moieties as Components of Complex Antitumor Therapy
    Int. J. Mol. Sci. 2020, 21(1), 126. This article belongs to the Special Issue Inhibition of DNA Repair Enzymes as a Valuable Pharmaceutical Approach) doi:10.3390/ijms21010126, IF=4.556
  683. P.V. Petunin, T.V. Rybalova, M.E. Trusova, M.N. Uvarov, M.S. Kazantsev, E.A. Mostovich, L. Postulka, P. Eibisch, B. Wolf, M. Lang, P.S. Postnikov, M. Baumgarten
    A Weakly Antiferromagnetically Coupled Biradical Combining Verdazyl with Nitronylnitroxide Units
    ChemPlusChem, 2020, V. 85, N 1, Pp 159-162 doi:10.1002/cplu.201900709, IF=2.753
  684. P.V. Petunin, T.V. Rybalova, M.E. Trusova, M.N. Uvarov, M.S. Kazantsev, E.A. Mostovich, L. Postulka, P. Eibisch, B. Wolf, M. Lang, P.S. Postnikov, M. Baumgarten
    A Weakly Antiferromagnetically Coupled Biradical Combining Verdazyl with Nitronylnitroxide Units
    ChemPlusChem, 2020, V. 85, N 1, Pp 159-162 doi:10.1002/cplu.201900709, IF=2.753
  685. P.V. Petunin, T.V. Rybalova, M.E. Trusova, M.N. Uvarov, M.S. Kazantsev, E.A. Mostovich, L. Postulka, P. Eibisch, B. Wolf, M. Lang, P.S. Postnikov, M. Baumgarten
    A Weakly Antiferromagnetically Coupled Biradical Combining Verdazyl with Nitronylnitroxide Units
    ChemPlusChem, 2020, V. 85, N 1, Pp 159-162 doi:10.1002/cplu.201900709, IF=2.753
  686. P.V. Petunin, T.V. Rybalova, M.E. Trusova, M.N. Uvarov, M.S. Kazantsev, E.A. Mostovich, L. Postulka, P. Eibisch, B. Wolf, M. Lang, P.S. Postnikov, M. Baumgarten
    A Weakly Antiferromagnetically Coupled Biradical Combining Verdazyl with Nitronylnitroxide Units
    ChemPlusChem, 2020, V. 85, N 1, Pp 159-162 doi:10.1002/cplu.201900709, IF=2.753
  687. P.V. Petunin, T.V. Rybalova, M.E. Trusova, M.N. Uvarov, M.S. Kazantsev, E.A. Mostovich, L. Postulka, P. Eibisch, B. Wolf, M. Lang, P.S. Postnikov, M. Baumgarten
    A Weakly Antiferromagnetically Coupled Biradical Combining Verdazyl with Nitronylnitroxide Units
    ChemPlusChem, 2020, V. 85, N 1, Pp 159-162 doi:10.1002/cplu.201900709, IF=2.753
  688. P.V. Petunin, T.V. Rybalova, M.E. Trusova, M.N. Uvarov, M.S. Kazantsev, E.A. Mostovich, L. Postulka, P. Eibisch, B. Wolf, M. Lang, P.S. Postnikov, M. Baumgarten
    A Weakly Antiferromagnetically Coupled Biradical Combining Verdazyl with Nitronylnitroxide Units
    ChemPlusChem, 2020, V. 85, N 1, Pp 159-162 doi:10.1002/cplu.201900709, IF=2.753
  689. P.V. Petunin, T.V. Rybalova, M.E. Trusova, M.N. Uvarov, M.S. Kazantsev, E.A. Mostovich, L. Postulka, P. Eibisch, B. Wolf, M. Lang, P.S. Postnikov, M. Baumgarten
    A Weakly Antiferromagnetically Coupled Biradical Combining Verdazyl with Nitronylnitroxide Units
    ChemPlusChem, 2020, V. 85, N 1, Pp 159-162 doi:10.1002/cplu.201900709, IF=2.753
  690. P.V. Petunin, T.V. Rybalova, M.E. Trusova, M.N. Uvarov, M.S. Kazantsev, E.A. Mostovich, L. Postulka, P. Eibisch, B. Wolf, M. Lang, P.S. Postnikov, M. Baumgarten
    A Weakly Antiferromagnetically Coupled Biradical Combining Verdazyl with Nitronylnitroxide Units
    ChemPlusChem, 2020, V. 85, N 1, Pp 159-162 doi:10.1002/cplu.201900709, IF=2.753
  691. P.V. Petunin, T.V. Rybalova, M.E. Trusova, M.N. Uvarov, M.S. Kazantsev, E.A. Mostovich, L. Postulka, P. Eibisch, B. Wolf, M. Lang, P.S. Postnikov, M. Baumgarten
    A Weakly Antiferromagnetically Coupled Biradical Combining Verdazyl with Nitronylnitroxide Units
    ChemPlusChem, 2020, V. 85, N 1, Pp 159-162 doi:10.1002/cplu.201900709, IF=2.753
  692. P.V. Petunin, T.V. Rybalova, M.E. Trusova, M.N. Uvarov, M.S. Kazantsev, E.A. Mostovich, L. Postulka, P. Eibisch, B. Wolf, M. Lang, P.S. Postnikov, M. Baumgarten
    A Weakly Antiferromagnetically Coupled Biradical Combining Verdazyl with Nitronylnitroxide Units
    ChemPlusChem, 2020, V. 85, N 1, Pp 159-162 doi:10.1002/cplu.201900709, IF=2.753
  693. A.Yu. Vorobev, A.E. Moskalensky
    Long-wavelength photoremovable protecting groups: On the way to in vivo application
    Computational and Structural Biotechnology Journal, 2020, V. 18, Pp 27-34 doi:10.1016/j.csbj.2019.11.007, IF=6.018
  694. Y.I. Ragino, V.S. Shramko, E.M. Stakhneva, E.I. Chernyak, S.V. Morozov, E.V. Shakhtshneider, Y.V. Polonskaya, L.V. Shcherbakova, A.M. Chernyavskiy
    Changes in the blood fatty-acid profile associated with oxidative-antioxidant disturbances in coronary atherosclerosis
    Journal of Medical Biochemistry, 2020, V. 39, N 1, Pp 46-53 doi:10.2478/jomb-2019-0010, IF=1.109
  695. Y.I. Ragino, V.S. Shramko, E.M. Stakhneva, E.I. Chernyak, S.V. Morozov, E.V. Shakhtshneider, Y.V. Polonskaya, L.V. Shcherbakova, A.M. Chernyavskiy
    Changes in the blood fatty-acid profile associated with oxidative-antioxidant disturbances in coronary atherosclerosis
    Journal of Medical Biochemistry, 2020, V. 39, N 1, Pp 46-53 doi:10.2478/jomb-2019-0010, IF=1.109
  696. Y.I. Ragino, V.S. Shramko, E.M. Stakhneva, E.I. Chernyak, S.V. Morozov, E.V. Shakhtshneider, Y.V. Polonskaya, L.V. Shcherbakova, A.M. Chernyavskiy
    Changes in the blood fatty-acid profile associated with oxidative-antioxidant disturbances in coronary atherosclerosis
    Journal of Medical Biochemistry, 2020, V. 39, N 1, Pp 46-53 doi:10.2478/jomb-2019-0010, IF=1.109
  697. Y.I. Ragino, V.S. Shramko, E.M. Stakhneva, E.I. Chernyak, S.V. Morozov, E.V. Shakhtshneider, Y.V. Polonskaya, L.V. Shcherbakova, A.M. Chernyavskiy
    Changes in the blood fatty-acid profile associated with oxidative-antioxidant disturbances in coronary atherosclerosis
    Journal of Medical Biochemistry, 2020, V. 39, N 1, Pp 46-53 doi:10.2478/jomb-2019-0010, IF=1.109
  698. Y.I. Ragino, V.S. Shramko, E.M. Stakhneva, E.I. Chernyak, S.V. Morozov, E.V. Shakhtshneider, Y.V. Polonskaya, L.V. Shcherbakova, A.M. Chernyavskiy
    Changes in the blood fatty-acid profile associated with oxidative-antioxidant disturbances in coronary atherosclerosis
    Journal of Medical Biochemistry, 2020, V. 39, N 1, Pp 46-53 doi:10.2478/jomb-2019-0010, IF=1.109
  699. Y.I. Ragino, V.S. Shramko, E.M. Stakhneva, E.I. Chernyak, S.V. Morozov, E.V. Shakhtshneider, Y.V. Polonskaya, L.V. Shcherbakova, A.M. Chernyavskiy
    Changes in the blood fatty-acid profile associated with oxidative-antioxidant disturbances in coronary atherosclerosis
    Journal of Medical Biochemistry, 2020, V. 39, N 1, Pp 46-53 doi:10.2478/jomb-2019-0010, IF=1.109
  700. Y.I. Ragino, V.S. Shramko, E.M. Stakhneva, E.I. Chernyak, S.V. Morozov, E.V. Shakhtshneider, Y.V. Polonskaya, L.V. Shcherbakova, A.M. Chernyavskiy
    Changes in the blood fatty-acid profile associated with oxidative-antioxidant disturbances in coronary atherosclerosis
    Journal of Medical Biochemistry, 2020, V. 39, N 1, Pp 46-53 doi:10.2478/jomb-2019-0010, IF=1.109
  701. В.С. Шрамко, С.В. Морозов, Е.И. Черняк, Л.В. Щербакова, А.В. Кургузов, А.М. Чернявский, Ю.И. Рагино
    Клинические характеристики пациентов с атеросклерозом коронарных артерий в зависимости от жирно-кислотного спектра крови
    Комплексные проблемы сердечно-сосудистых заболеваний. 2020. Т. 9. № 1. С. 15-24. (CLINICAL CHARACTERISTICS OF PATIENTS WITH CORONARY ATHEROSCLEROSIS DEPENDING ON BLOOD FATTY ACIDS/ Shramko V.S., Morozov S.V., Chernyak E.I., Shcherbakova L.V., Kurguzov A.V., Chernyavskyi A.M., Ragino Yu.I.// doi:10.17802/2306-1278-2020-9-1-15-24)
  702. В.С. Шрамко, С.В. Морозов, Е.И. Черняк, Л.В. Щербакова, А.В. Кургузов, А.М. Чернявский, Ю.И. Рагино
    Клинические характеристики пациентов с атеросклерозом коронарных артерий в зависимости от жирно-кислотного спектра крови
    Комплексные проблемы сердечно-сосудистых заболеваний. 2020. Т. 9. № 1. С. 15-24. (CLINICAL CHARACTERISTICS OF PATIENTS WITH CORONARY ATHEROSCLEROSIS DEPENDING ON BLOOD FATTY ACIDS/ Shramko V.S., Morozov S.V., Chernyak E.I., Shcherbakova L.V., Kurguzov A.V., Chernyavskyi A.M., Ragino Yu.I.// doi:10.17802/2306-1278-2020-9-1-15-24)
  703. В.С. Шрамко, С.В. Морозов, Е.И. Черняк, Л.В. Щербакова, А.В. Кургузов, А.М. Чернявский, Ю.И. Рагино
    Клинические характеристики пациентов с атеросклерозом коронарных артерий в зависимости от жирно-кислотного спектра крови
    Комплексные проблемы сердечно-сосудистых заболеваний. 2020. Т. 9. № 1. С. 15-24. (CLINICAL CHARACTERISTICS OF PATIENTS WITH CORONARY ATHEROSCLEROSIS DEPENDING ON BLOOD FATTY ACIDS/ Shramko V.S., Morozov S.V., Chernyak E.I., Shcherbakova L.V., Kurguzov A.V., Chernyavskyi A.M., Ragino Yu.I.// doi:10.17802/2306-1278-2020-9-1-15-24)
  704. В.С. Шрамко, С.В. Морозов, Е.И. Черняк, Л.В. Щербакова, А.В. Кургузов, А.М. Чернявский, Ю.И. Рагино
    Клинические характеристики пациентов с атеросклерозом коронарных артерий в зависимости от жирно-кислотного спектра крови
    Комплексные проблемы сердечно-сосудистых заболеваний. 2020. Т. 9. № 1. С. 15-24. (CLINICAL CHARACTERISTICS OF PATIENTS WITH CORONARY ATHEROSCLEROSIS DEPENDING ON BLOOD FATTY ACIDS/ Shramko V.S., Morozov S.V., Chernyak E.I., Shcherbakova L.V., Kurguzov A.V., Chernyavskyi A.M., Ragino Yu.I.// doi:10.17802/2306-1278-2020-9-1-15-24)
  705. В.С. Шрамко, С.В. Морозов, Е.И. Черняк, Л.В. Щербакова, А.В. Кургузов, А.М. Чернявский, Ю.И. Рагино
    Клинические характеристики пациентов с атеросклерозом коронарных артерий в зависимости от жирно-кислотного спектра крови
    Комплексные проблемы сердечно-сосудистых заболеваний. 2020. Т. 9. № 1. С. 15-24. (CLINICAL CHARACTERISTICS OF PATIENTS WITH CORONARY ATHEROSCLEROSIS DEPENDING ON BLOOD FATTY ACIDS/ Shramko V.S., Morozov S.V., Chernyak E.I., Shcherbakova L.V., Kurguzov A.V., Chernyavskyi A.M., Ragino Yu.I.// doi:10.17802/2306-1278-2020-9-1-15-24)
  706. J. Guo, W. Zhang, I. I. Oleynik, G. A. Solan, I.V. Oleynik, T. Liang.Wen-Hua Sun
    Probing the effect of ortho-cycloalkyl ring size on activity and thermostability in cycloheptyl-fused N,N,N-iron ethylene polymerization catalysts
    Dalton Trans., 2020, V. 49, N 1, Pp 136-146 doi:10.1039/C9DT04325J, IF=4.174
  707. J. Guo, W. Zhang, I. I. Oleynik, G. A. Solan, I.V. Oleynik, T. Liang.Wen-Hua Sun
    Probing the effect of ortho-cycloalkyl ring size on activity and thermostability in cycloheptyl-fused N,N,N-iron ethylene polymerization catalysts
    Dalton Trans., 2020, V. 49, N 1, Pp 136-146 doi:10.1039/C9DT04325J, IF=4.174
  708. J. Guo, W. Zhang, I. I. Oleynik, G. A. Solan, I.V. Oleynik, T. Liang.Wen-Hua Sun
    Probing the effect of ortho-cycloalkyl ring size on activity and thermostability in cycloheptyl-fused N,N,N-iron ethylene polymerization catalysts
    Dalton Trans., 2020, V. 49, N 1, Pp 136-146 doi:10.1039/C9DT04325J, IF=4.174
  709. J. Guo, W. Zhang, I. I. Oleynik, G. A. Solan, I.V. Oleynik, T. Liang.Wen-Hua Sun
    Probing the effect of ortho-cycloalkyl ring size on activity and thermostability in cycloheptyl-fused N,N,N-iron ethylene polymerization catalysts
    Dalton Trans., 2020, V. 49, N 1, Pp 136-146 doi:10.1039/C9DT04325J, IF=4.174
  710. J. Guo, W. Zhang, I. I. Oleynik, G. A. Solan, I.V. Oleynik, T. Liang.Wen-Hua Sun
    Probing the effect of ortho-cycloalkyl ring size on activity and thermostability in cycloheptyl-fused N,N,N-iron ethylene polymerization catalysts
    Dalton Trans., 2020, V. 49, N 1, Pp 136-146 doi:10.1039/C9DT04325J, IF=4.174
  711. E.M. Mamontova, A.L. Zakharenko, O.D. Zakharova, N.S. Dyrkheeva, K.P. Volcho, J. Reynisson, H.J. Arabshahi, N.F. Salakhutdinov, O.I. Lavrik
    Identification of novel inhibitors for the tyrosyl-DNA-phosphodiesterase 1 (Tdp1) mutant SCAN1 using virtual screening
    Bioorganic & Medicinal Chemistry, 2020, V. 28, N 1, 115234 doi:10.1016/j.bmc.2019.115234, IF=3.073
  712. E.M. Mamontova, A.L. Zakharenko, O.D. Zakharova, N.S. Dyrkheeva, K.P. Volcho, J. Reynisson, H.J. Arabshahi, N.F. Salakhutdinov, O.I. Lavrik
    Identification of novel inhibitors for the tyrosyl-DNA-phosphodiesterase 1 (Tdp1) mutant SCAN1 using virtual screening
    Bioorganic & Medicinal Chemistry, 2020, V. 28, N 1, 115234 doi:10.1016/j.bmc.2019.115234, IF=3.073
  713. E.M. Mamontova, A.L. Zakharenko, O.D. Zakharova, N.S. Dyrkheeva, K.P. Volcho, J. Reynisson, H.J. Arabshahi, N.F. Salakhutdinov, O.I. Lavrik
    Identification of novel inhibitors for the tyrosyl-DNA-phosphodiesterase 1 (Tdp1) mutant SCAN1 using virtual screening
    Bioorganic & Medicinal Chemistry, 2020, V. 28, N 1, 115234 doi:10.1016/j.bmc.2019.115234, IF=3.073
  714. E.M. Mamontova, A.L. Zakharenko, O.D. Zakharova, N.S. Dyrkheeva, K.P. Volcho, J. Reynisson, H.J. Arabshahi, N.F. Salakhutdinov, O.I. Lavrik
    Identification of novel inhibitors for the tyrosyl-DNA-phosphodiesterase 1 (Tdp1) mutant SCAN1 using virtual screening
    Bioorganic & Medicinal Chemistry, 2020, V. 28, N 1, 115234 doi:10.1016/j.bmc.2019.115234, IF=3.073
  715. E.M. Mamontova, A.L. Zakharenko, O.D. Zakharova, N.S. Dyrkheeva, K.P. Volcho, J. Reynisson, H.J. Arabshahi, N.F. Salakhutdinov, O.I. Lavrik
    Identification of novel inhibitors for the tyrosyl-DNA-phosphodiesterase 1 (Tdp1) mutant SCAN1 using virtual screening
    Bioorganic & Medicinal Chemistry, 2020, V. 28, N 1, 115234 doi:10.1016/j.bmc.2019.115234, IF=3.073
  716. E.M. Mamontova, A.L. Zakharenko, O.D. Zakharova, N.S. Dyrkheeva, K.P. Volcho, J. Reynisson, H.J. Arabshahi, N.F. Salakhutdinov, O.I. Lavrik
    Identification of novel inhibitors for the tyrosyl-DNA-phosphodiesterase 1 (Tdp1) mutant SCAN1 using virtual screening
    Bioorganic & Medicinal Chemistry, 2020, V. 28, N 1, 115234 doi:10.1016/j.bmc.2019.115234, IF=3.073
  717. E.M. Mamontova, A.L. Zakharenko, O.D. Zakharova, N.S. Dyrkheeva, K.P. Volcho, J. Reynisson, H.J. Arabshahi, N.F. Salakhutdinov, O.I. Lavrik
    Identification of novel inhibitors for the tyrosyl-DNA-phosphodiesterase 1 (Tdp1) mutant SCAN1 using virtual screening
    Bioorganic & Medicinal Chemistry, 2020, V. 28, N 1, 115234 doi:10.1016/j.bmc.2019.115234, IF=3.073
  718. В.В. Бардин, С.А. Приходько, М.М. Шмаков, А.Ю. Шабалин, Н.Ю. Адонин
    Синтез фторсодержащих арил(галоген)боранов из арил(фтор)боратов калия
    Журнал общей химии. 2020. Т. 90. № 1. С. 72-84 DOI:10.31857/S0044460X20010096 (Synthesis of Fluorine-Containing Aryl(halo)boranes from Potassium Aryl(fluoro)borates/ V. V. Bardin, S. A. Prikhod’ko, M. M. Shmakov, A. Yu. Shabalin & N. Yu. Adonin// Russian Journal of General Chemistry, 2020, V. 90, N 1 , Pp 50–61 doi:10.1134/S1070363220010089), IF=0.716
  719. В.В. Бардин, С.А. Приходько, М.М. Шмаков, А.Ю. Шабалин, Н.Ю. Адонин
    Синтез фторсодержащих арил(галоген)боранов из арил(фтор)боратов калия
    Журнал общей химии. 2020. Т. 90. № 1. С. 72-84 DOI:10.31857/S0044460X20010096 (Synthesis of Fluorine-Containing Aryl(halo)boranes from Potassium Aryl(fluoro)borates/ V. V. Bardin, S. A. Prikhod’ko, M. M. Shmakov, A. Yu. Shabalin & N. Yu. Adonin// Russian Journal of General Chemistry, 2020, V. 90, N 1 , Pp 50–61 doi:10.1134/S1070363220010089), IF=0.716
  720. В.В. Бардин, С.А. Приходько, М.М. Шмаков, А.Ю. Шабалин, Н.Ю. Адонин
    Синтез фторсодержащих арил(галоген)боранов из арил(фтор)боратов калия
    Журнал общей химии. 2020. Т. 90. № 1. С. 72-84 DOI:10.31857/S0044460X20010096 (Synthesis of Fluorine-Containing Aryl(halo)boranes from Potassium Aryl(fluoro)borates/ V. V. Bardin, S. A. Prikhod’ko, M. M. Shmakov, A. Yu. Shabalin & N. Yu. Adonin// Russian Journal of General Chemistry, 2020, V. 90, N 1 , Pp 50–61 doi:10.1134/S1070363220010089), IF=0.716
  721. В.В. Бардин, С.А. Приходько, М.М. Шмаков, А.Ю. Шабалин, Н.Ю. Адонин
    Синтез фторсодержащих арил(галоген)боранов из арил(фтор)боратов калия
    Журнал общей химии. 2020. Т. 90. № 1. С. 72-84 DOI:10.31857/S0044460X20010096 (Synthesis of Fluorine-Containing Aryl(halo)boranes from Potassium Aryl(fluoro)borates/ V. V. Bardin, S. A. Prikhod’ko, M. M. Shmakov, A. Yu. Shabalin & N. Yu. Adonin// Russian Journal of General Chemistry, 2020, V. 90, N 1 , Pp 50–61 doi:10.1134/S1070363220010089), IF=0.716
  722. С.А. Низомов, И.В. Сорокина, Н.А. Жукова, С.А. Борисов, Т.Г. Толстикова, Д.Е. Семенов, М.А. Бакарев
    Простатотропное действие динатриевой соли глицирризиновой кислоты при моделировании доброкачественной гиперплазии предстательной железы
    Бюллетень экспериментальной биологии и медицины. 2020. Т. 169. № 1. С. 124-129. (Prostatotropic action of glycyrrhizic acid disodium salt in modeling benign prostatic hyperplasia/ Nizomov S.A., Sorokina I.V., Zhukova N.A., Borisov S.A., Tolstikova T.G., Semenov D.E., Bakarev M.A.// Bulletin of Experimental Biology and Medicine, 2020, V. 169, N 1, Pp 114-118 doi:10.1007/s10517-020-04836-3), IF=0.775
  723. С.А. Низомов, И.В. Сорокина, Н.А. Жукова, С.А. Борисов, Т.Г. Толстикова, Д.Е. Семенов, М.А. Бакарев
    Простатотропное действие динатриевой соли глицирризиновой кислоты при моделировании доброкачественной гиперплазии предстательной железы
    Бюллетень экспериментальной биологии и медицины. 2020. Т. 169. № 1. С. 124-129. (Prostatotropic action of glycyrrhizic acid disodium salt in modeling benign prostatic hyperplasia/ Nizomov S.A., Sorokina I.V., Zhukova N.A., Borisov S.A., Tolstikova T.G., Semenov D.E., Bakarev M.A.// Bulletin of Experimental Biology and Medicine, 2020, V. 169, N 1, Pp 114-118 doi:10.1007/s10517-020-04836-3), IF=0.775
  724. Т.П. Кукина, Д.Н. Щербаков, Н.В. Пантелеева, О.И. Сальникова, П.В. Колосов
    Качественный и количественный состав продукта дистилляции алифатических кислот подсолнечного масла химия растительного сырья. 2020. № 1. с. 199-206.
    Химия растительного сырья. 2020. № 1. С. 199-206. (QUALITY AND QUANTITATIVE COMPOSITION OF SUNFLOWER OIL DEODORIZATION DISTILLATE/ Kukina T.P., Shcherbakov D.N., Panteleyeva N. V., Sal'nikova O. I., Kolosov P.V.// doi:10.14258/jcprm.2020015909)
  725. Т.П. Кукина, Д.Н. Щербаков, Н.В. Пантелеева, О.И. Сальникова, П.В. Колосов
    Качественный и количественный состав продукта дистилляции алифатических кислот подсолнечного масла химия растительного сырья. 2020. № 1. с. 199-206.
    Химия растительного сырья. 2020. № 1. С. 199-206. (QUALITY AND QUANTITATIVE COMPOSITION OF SUNFLOWER OIL DEODORIZATION DISTILLATE/ Kukina T.P., Shcherbakov D.N., Panteleyeva N. V., Sal'nikova O. I., Kolosov P.V.// doi:10.14258/jcprm.2020015909)
  726. Т.П. Кукина, Д.Н. Щербаков, Н.В. Пантелеева, О.И. Сальникова, П.В. Колосов
    Качественный и количественный состав продукта дистилляции алифатических кислот подсолнечного масла химия растительного сырья. 2020. № 1. с. 199-206.
    Химия растительного сырья. 2020. № 1. С. 199-206. (QUALITY AND QUANTITATIVE COMPOSITION OF SUNFLOWER OIL DEODORIZATION DISTILLATE/ Kukina T.P., Shcherbakov D.N., Panteleyeva N. V., Sal'nikova O. I., Kolosov P.V.// doi:10.14258/jcprm.2020015909)
  727. С.А. Приходько, А.Ю. Шабалин, М.М. Шмаков, В.В. Бардин, Н.Ю. Адонин
    Ионные жидкости с фторсодержащими анионами как новый класс функциональных материалов: особенности синтеза, физико-химических свойств и примеры использования
    Известия Академии наук. Серия химическая. 2020. № 1. С. 17-31. (Ionic liquids with fluorine-containing anions as a new class of functional materials: features of the synthesis, physicochemical properties, and use/ S. A. Prikhod'ko, A. Yu. Shabalin, M. M. Shmakov, V. V. Bardin, N. Yu. Adonin// Russian Chemical Bulletin, 2020, V. 69, Pp 17–31 doi:10.1007/s11172-020-2719-5), IF=1.061
  728. С.А. Приходько, А.Ю. Шабалин, М.М. Шмаков, В.В. Бардин, Н.Ю. Адонин
    Ионные жидкости с фторсодержащими анионами как новый класс функциональных материалов: особенности синтеза, физико-химических свойств и примеры использования
    Известия Академии наук. Серия химическая. 2020. № 1. С. 17-31. (Ionic liquids with fluorine-containing anions as a new class of functional materials: features of the synthesis, physicochemical properties, and use/ S. A. Prikhod'ko, A. Yu. Shabalin, M. M. Shmakov, V. V. Bardin, N. Yu. Adonin// Russian Chemical Bulletin, 2020, V. 69, Pp 17–31 doi:10.1007/s11172-020-2719-5), IF=1.061
  729. С.А. Приходько, А.Ю. Шабалин, М.М. Шмаков, В.В. Бардин, Н.Ю. Адонин
    Ионные жидкости с фторсодержащими анионами как новый класс функциональных материалов: особенности синтеза, физико-химических свойств и примеры использования
    Известия Академии наук. Серия химическая. 2020. № 1. С. 17-31. (Ionic liquids with fluorine-containing anions as a new class of functional materials: features of the synthesis, physicochemical properties, and use/ S. A. Prikhod'ko, A. Yu. Shabalin, M. M. Shmakov, V. V. Bardin, N. Yu. Adonin// Russian Chemical Bulletin, 2020, V. 69, Pp 17–31 doi:10.1007/s11172-020-2719-5), IF=1.061
  730. С.А. Приходько, А.Ю. Шабалин, М.М. Шмаков, В.В. Бардин, Н.Ю. Адонин
    Ионные жидкости с фторсодержащими анионами как новый класс функциональных материалов: особенности синтеза, физико-химических свойств и примеры использования
    Известия Академии наук. Серия химическая. 2020. № 1. С. 17-31. (Ionic liquids with fluorine-containing anions as a new class of functional materials: features of the synthesis, physicochemical properties, and use/ S. A. Prikhod'ko, A. Yu. Shabalin, M. M. Shmakov, V. V. Bardin, N. Yu. Adonin// Russian Chemical Bulletin, 2020, V. 69, Pp 17–31 doi:10.1007/s11172-020-2719-5), IF=1.061
  731. Т.Е. Кокина, В.Ю. Комаров, Л.А. Глинская, С.Н. Бизяев, Л.А. Шелудякова, Ю.А. Еремина, Л.С. Клюшова, А.В. Ткачев
    Синтез, строение и цитотоксичность комплексов Pd(II) и Сu(II) с 1-терпенил-3-тиосемикарбазидами пинанового и пара-ментанового рядов
    Журнал структурной химии, 2020, т. 61, №1, стр.48, doi: 10.26902/JSC_id49663 (Synthesis, structure, and cytotoxicity of Pd(II) and Cu(II) complexes with 1-terpenyl-3-thiosemicarbazides of pinane and para-menthane series/ Kokina T.E., Komarov V. Yu., Glinskaya L.A., Bizyaev S.N., Sheludyakova L.A., Eremina Yu. A., Klyushova L.S., Tkachev A.V.// Journal of Structural Chemistry, 2020, V. 61, N 1, Pp 44-56 doi:10.1134/S0022476620010059), IF=0.745
  732. Т.Е. Кокина, В.Ю. Комаров, Л.А. Глинская, С.Н. Бизяев, Л.А. Шелудякова, Ю.А. Еремина, Л.С. Клюшова, А.В. Ткачев
    Синтез, строение и цитотоксичность комплексов Pd(II) и Сu(II) с 1-терпенил-3-тиосемикарбазидами пинанового и пара-ментанового рядов
    Журнал структурной химии, 2020, т. 61, №1, стр.48, doi: 10.26902/JSC_id49663 (Synthesis, structure, and cytotoxicity of Pd(II) and Cu(II) complexes with 1-terpenyl-3-thiosemicarbazides of pinane and para-menthane series/ Kokina T.E., Komarov V. Yu., Glinskaya L.A., Bizyaev S.N., Sheludyakova L.A., Eremina Yu. A., Klyushova L.S., Tkachev A.V.// Journal of Structural Chemistry, 2020, V. 61, N 1, Pp 44-56 doi:10.1134/S0022476620010059), IF=0.745
  733. Т.Е. Кокина, В.Ю. Комаров, Л.А. Глинская, С.Н. Бизяев, Л.А. Шелудякова, Ю.А. Еремина, Л.С. Клюшова, А.В. Ткачев
    Синтез, строение и цитотоксичность комплексов Pd(II) и Сu(II) с 1-терпенил-3-тиосемикарбазидами пинанового и пара-ментанового рядов
    Журнал структурной химии, 2020, т. 61, №1, стр.48, doi: 10.26902/JSC_id49663 (Synthesis, structure, and cytotoxicity of Pd(II) and Cu(II) complexes with 1-terpenyl-3-thiosemicarbazides of pinane and para-menthane series/ Kokina T.E., Komarov V. Yu., Glinskaya L.A., Bizyaev S.N., Sheludyakova L.A., Eremina Yu. A., Klyushova L.S., Tkachev A.V.// Journal of Structural Chemistry, 2020, V. 61, N 1, Pp 44-56 doi:10.1134/S0022476620010059), IF=0.745
  734. Т.Е. Кокина, В.Ю. Комаров, Л.А. Глинская, С.Н. Бизяев, Л.А. Шелудякова, Ю.А. Еремина, Л.С. Клюшова, А.В. Ткачев
    Синтез, строение и цитотоксичность комплексов Pd(II) и Сu(II) с 1-терпенил-3-тиосемикарбазидами пинанового и пара-ментанового рядов
    Журнал структурной химии, 2020, т. 61, №1, стр.48, doi: 10.26902/JSC_id49663 (Synthesis, structure, and cytotoxicity of Pd(II) and Cu(II) complexes with 1-terpenyl-3-thiosemicarbazides of pinane and para-menthane series/ Kokina T.E., Komarov V. Yu., Glinskaya L.A., Bizyaev S.N., Sheludyakova L.A., Eremina Yu. A., Klyushova L.S., Tkachev A.V.// Journal of Structural Chemistry, 2020, V. 61, N 1, Pp 44-56 doi:10.1134/S0022476620010059), IF=0.745
  735. Т.Е. Кокина, В.Ю. Комаров, Л.А. Глинская, С.Н. Бизяев, Л.А. Шелудякова, Ю.А. Еремина, Л.С. Клюшова, А.В. Ткачев
    Синтез, строение и цитотоксичность комплексов Pd(II) и Сu(II) с 1-терпенил-3-тиосемикарбазидами пинанового и пара-ментанового рядов
    Журнал структурной химии, 2020, т. 61, №1, стр.48, doi: 10.26902/JSC_id49663 (Synthesis, structure, and cytotoxicity of Pd(II) and Cu(II) complexes with 1-terpenyl-3-thiosemicarbazides of pinane and para-menthane series/ Kokina T.E., Komarov V. Yu., Glinskaya L.A., Bizyaev S.N., Sheludyakova L.A., Eremina Yu. A., Klyushova L.S., Tkachev A.V.// Journal of Structural Chemistry, 2020, V. 61, N 1, Pp 44-56 doi:10.1134/S0022476620010059), IF=0.745
  736. Т.Е. Кокина, В.Ю. Комаров, Л.А. Глинская, С.Н. Бизяев, Л.А. Шелудякова, Ю.А. Еремина, Л.С. Клюшова, А.В. Ткачев
    Синтез, строение и цитотоксичность комплексов Pd(II) и Сu(II) с 1-терпенил-3-тиосемикарбазидами пинанового и пара-ментанового рядов
    Журнал структурной химии, 2020, т. 61, №1, стр.48, doi: 10.26902/JSC_id49663 (Synthesis, structure, and cytotoxicity of Pd(II) and Cu(II) complexes with 1-terpenyl-3-thiosemicarbazides of pinane and para-menthane series/ Kokina T.E., Komarov V. Yu., Glinskaya L.A., Bizyaev S.N., Sheludyakova L.A., Eremina Yu. A., Klyushova L.S., Tkachev A.V.// Journal of Structural Chemistry, 2020, V. 61, N 1, Pp 44-56 doi:10.1134/S0022476620010059), IF=0.745
  737. L. Politanskaya, E. Tretyakov, Ch. Xi
    Synthesis of polyfluorinated o-hydroxyacetophenones - convenient precursors of 3-benzylidene-2-phenylchroman-4-ones
    Journal of Fluorine Chemistry, V. 229, January 2020, 109435 doi:10.1016/j.jfluchem.2019.109435, IF=2.332
  738. A.A. Okhina, A.D. Rogachev, O.I. Yarovaya, M.V. Khvostov, T.G. Tolstikova, A.G. Pokrovsky, V.A. Khazanov, N.F. Salakhutdinov
    Development and validation of an LC-MS/MS method for the quantitative analysis of the anti-influenza agent camphecene in rat plasma and its application to study the blood-to-plasma distribution of the agent
    Journal of Pharmaceutical and Biomedical Analysis, 2020, V. 180, 113039 doi:10.1016/j.jpba.2019.113039, IF=3.209
  739. A.A. Okhina, A.D. Rogachev, O.I. Yarovaya, M.V. Khvostov, T.G. Tolstikova, A.G. Pokrovsky, V.A. Khazanov, N.F. Salakhutdinov
    Development and validation of an LC-MS/MS method for the quantitative analysis of the anti-influenza agent camphecene in rat plasma and its application to study the blood-to-plasma distribution of the agent
    Journal of Pharmaceutical and Biomedical Analysis, 2020, V. 180, 113039 doi:10.1016/j.jpba.2019.113039, IF=3.209

2019

Reviews, articles

  1. O.A. Krumkacheva, G.Yu. Shevelev, A.A. Lomzov, N.S. Dyrkheeva, A.A. Kuzhelev, V.V. Koval, V.M. Tormyshev, Yu.F. Polienko, M.V. Fedin, D.V. Pyshnyi, O.I. Lavrik, E.G. Bagryanskaya
    DNA complexes with human apurinic/apyrimidinic endonuclease 1: structural insights revealed by pulsed dipolar EPR with orthogonal spin labeling
    Nucleic Acids Research,2019, V. 47, N 15, Pp 7767-7780 doi:10.1093/nar/gkz620, IF=11.147
  2. O.A. Krumkacheva, G.Yu. Shevelev, A.A. Lomzov, N.S. Dyrkheeva, A.A. Kuzhelev, V.V. Koval, V.M. Tormyshev, Yu.F. Polienko, M.V. Fedin, D.V. Pyshnyi, O.I. Lavrik, E.G. Bagryanskaya
    DNA complexes with human apurinic/apyrimidinic endonuclease 1: structural insights revealed by pulsed dipolar EPR with orthogonal spin labeling
    Nucleic Acids Research,2019, V. 47, N 15, Pp 7767-7780 doi:10.1093/nar/gkz620, IF=11.147
  3. O.A. Krumkacheva, G.Yu. Shevelev, A.A. Lomzov, N.S. Dyrkheeva, A.A. Kuzhelev, V.V. Koval, V.M. Tormyshev, Yu.F. Polienko, M.V. Fedin, D.V. Pyshnyi, O.I. Lavrik, E.G. Bagryanskaya
    DNA complexes with human apurinic/apyrimidinic endonuclease 1: structural insights revealed by pulsed dipolar EPR with orthogonal spin labeling
    Nucleic Acids Research,2019, V. 47, N 15, Pp 7767-7780 doi:10.1093/nar/gkz620, IF=11.147
  4. O.A. Krumkacheva, G.Yu. Shevelev, A.A. Lomzov, N.S. Dyrkheeva, A.A. Kuzhelev, V.V. Koval, V.M. Tormyshev, Yu.F. Polienko, M.V. Fedin, D.V. Pyshnyi, O.I. Lavrik, E.G. Bagryanskaya
    DNA complexes with human apurinic/apyrimidinic endonuclease 1: structural insights revealed by pulsed dipolar EPR with orthogonal spin labeling
    Nucleic Acids Research,2019, V. 47, N 15, Pp 7767-7780 doi:10.1093/nar/gkz620, IF=11.147
  5. O.A. Krumkacheva, G.Yu. Shevelev, A.A. Lomzov, N.S. Dyrkheeva, A.A. Kuzhelev, V.V. Koval, V.M. Tormyshev, Yu.F. Polienko, M.V. Fedin, D.V. Pyshnyi, O.I. Lavrik, E.G. Bagryanskaya
    DNA complexes with human apurinic/apyrimidinic endonuclease 1: structural insights revealed by pulsed dipolar EPR with orthogonal spin labeling
    Nucleic Acids Research,2019, V. 47, N 15, Pp 7767-7780 doi:10.1093/nar/gkz620, IF=11.147
  6. O.A. Krumkacheva, G.Yu. Shevelev, A.A. Lomzov, N.S. Dyrkheeva, A.A. Kuzhelev, V.V. Koval, V.M. Tormyshev, Yu.F. Polienko, M.V. Fedin, D.V. Pyshnyi, O.I. Lavrik, E.G. Bagryanskaya
    DNA complexes with human apurinic/apyrimidinic endonuclease 1: structural insights revealed by pulsed dipolar EPR with orthogonal spin labeling
    Nucleic Acids Research,2019, V. 47, N 15, Pp 7767-7780 doi:10.1093/nar/gkz620, IF=11.147
  7. O.A. Krumkacheva, G.Yu. Shevelev, A.A. Lomzov, N.S. Dyrkheeva, A.A. Kuzhelev, V.V. Koval, V.M. Tormyshev, Yu.F. Polienko, M.V. Fedin, D.V. Pyshnyi, O.I. Lavrik, E.G. Bagryanskaya
    DNA complexes with human apurinic/apyrimidinic endonuclease 1: structural insights revealed by pulsed dipolar EPR with orthogonal spin labeling
    Nucleic Acids Research,2019, V. 47, N 15, Pp 7767-7780 doi:10.1093/nar/gkz620, IF=11.147
  8. M.S. Kazantsev, A.A. Sonina, I.P. Koskin, P.S. Sherin, T.V. Rybalova, E. Benassi, E.A. Mostovich
    Stimuli responsive aggregation-induced emission of bis(4-((9H-fluoren-9-ylidene)methyl)phenyl)thiophene single crystals
    Mater. Chem. Front., 2019, V. 3, N 8, Pp 1545-1554 doi:10.1039/C9QM00198K
  9. M.S. Kazantsev, A.A. Sonina, I.P. Koskin, P.S. Sherin, T.V. Rybalova, E. Benassi, E.A. Mostovich
    Stimuli responsive aggregation-induced emission of bis(4-((9H-fluoren-9-ylidene)methyl)phenyl)thiophene single crystals
    Mater. Chem. Front., 2019, V. 3, N 8, Pp 1545-1554 doi:10.1039/C9QM00198K
  10. V.V. Bardin, N.Yu. Adonin
    The preparation of pentafluorophenyldihaloboranes from pentafluorophenylmercurials C6F5HgR and BX3: the dramatic dependence of the reaction direction on the ligand R
    Monatshefte für Chemie - Chemical Monthly, 2019, V.150, N 8, pp 1523-1531 doi:10.1007/s00706-019-02476-6, IF=1.501
  11. Yu.S. Demidova, I.L. Simakova, M. Estrada, S. Beloshapkin, E.V. Suslov, K.P. Volcho, N.F. Salakhutdinov, A. Simakov, D.Yu. Murzin
    One-Pot Myrtenol Amination over Au, Au-Pd and Pd Nanoparticles Supported on Alumina
    Catalysis Letters, 2019, V. 149, N 12, pp 3454-3464 doi:10.1007/s10562-019-02958-6, IF=2.371
  12. Yu.S. Demidova, I.L. Simakova, M. Estrada, S. Beloshapkin, E.V. Suslov, K.P. Volcho, N.F. Salakhutdinov, A. Simakov, D.Yu. Murzin
    One-Pot Myrtenol Amination over Au, Au-Pd and Pd Nanoparticles Supported on Alumina
    Catalysis Letters, 2019, V. 149, N 12, pp 3454-3464 doi:10.1007/s10562-019-02958-6, IF=2.371
  13. Yu.S. Demidova, I.L. Simakova, M. Estrada, S. Beloshapkin, E.V. Suslov, K.P. Volcho, N.F. Salakhutdinov, A. Simakov, D.Yu. Murzin
    One-Pot Myrtenol Amination over Au, Au-Pd and Pd Nanoparticles Supported on Alumina
    Catalysis Letters, 2019, V. 149, N 12, pp 3454-3464 doi:10.1007/s10562-019-02958-6, IF=2.371
  14. Yu.S. Demidova, I.L. Simakova, M. Estrada, S. Beloshapkin, E.V. Suslov, K.P. Volcho, N.F. Salakhutdinov, A. Simakov, D.Yu. Murzin
    One-Pot Myrtenol Amination over Au, Au-Pd and Pd Nanoparticles Supported on Alumina
    Catalysis Letters, 2019, V. 149, N 12, pp 3454-3464 doi:10.1007/s10562-019-02958-6, IF=2.371
  15. Yu.S. Demidova, I.L. Simakova, M. Estrada, S. Beloshapkin, E.V. Suslov, K.P. Volcho, N.F. Salakhutdinov, A. Simakov, D.Yu. Murzin
    One-Pot Myrtenol Amination over Au, Au-Pd and Pd Nanoparticles Supported on Alumina
    Catalysis Letters, 2019, V. 149, N 12, pp 3454-3464 doi:10.1007/s10562-019-02958-6, IF=2.371
  16. Yu.S. Demidova, I.L. Simakova, M. Estrada, S. Beloshapkin, E.V. Suslov, K.P. Volcho, N.F. Salakhutdinov, A. Simakov, D.Yu. Murzin
    One-Pot Myrtenol Amination over Au, Au-Pd and Pd Nanoparticles Supported on Alumina
    Catalysis Letters, 2019, V. 149, N 12, pp 3454-3464 doi:10.1007/s10562-019-02958-6, IF=2.371
  17. S.V. Nikitin, J. Sanchez-Marquez, I.I. Oleynik, I. Oleynik, E.G. Bagryanskaya
    A screening DFT study of the para-substituent effect on local hyper-softness in bis(phenoxy-imine) titanium complexes to get insights about their catalytic activity in ethylene polymerization
    Molecular Catalysis, 2019, V. 469, Pp 57-67 doi:10.1016/j.mcat.2019.02.024, IF=2.938
  18. V.I. Borovkov, A.I. Taratayko, Yu.N. Molin
    Radiation-Induced Fluorescence from Doped Polyolefins on a Nanosecond Timescale: Kinetics of the Processes Involving Geminate Radical Ions
    The Journal of Physical Chemistry B, Just Accepted ( June 17, 2019) doi:10.1021/acs.jpcb.9b03914, IF=2.923
  19. V.I. Borovkov, A.I. Taratayko, Yu.N. Molin
    Radiation-Induced Fluorescence from Doped Polyolefins on a Nanosecond Timescale: Kinetics of the Processes Involving Geminate Radical Ions
    The Journal of Physical Chemistry B, Just Accepted ( June 17, 2019) doi:10.1021/acs.jpcb.9b03914, IF=2.923
  20. I. V. Beregovaya, L. N. Shchegoleva, D.A. Ovchinnikov, S.V. Blinkova, V.I. Borovkov, R.Andreev, V.A. Bagryansky, Yu.N. Molin
    Dimer Radical Anions of Polyfluoroarenes. Two More to a Small Family
    The Journal of Physical Chemistry A, 2019, 123, 51, 10968-10975 doi:10.1021/acs.jpca.9b09906, IF=2.641
  21. I. V. Beregovaya, L. N. Shchegoleva, D.A. Ovchinnikov, S.V. Blinkova, V.I. Borovkov, R.Andreev, V.A. Bagryansky, Yu.N. Molin
    Dimer Radical Anions of Polyfluoroarenes. Two More to a Small Family
    The Journal of Physical Chemistry A, 2019, 123, 51, 10968-10975 doi:10.1021/acs.jpca.9b09906, IF=2.641
  22. I. V. Beregovaya, L. N. Shchegoleva, D.A. Ovchinnikov, S.V. Blinkova, V.I. Borovkov, R.Andreev, V.A. Bagryansky, Yu.N. Molin
    Dimer Radical Anions of Polyfluoroarenes. Two More to a Small Family
    The Journal of Physical Chemistry A, 2019, 123, 51, 10968-10975 doi:10.1021/acs.jpca.9b09906, IF=2.641
  23. I. V. Beregovaya, L. N. Shchegoleva, D.A. Ovchinnikov, S.V. Blinkova, V.I. Borovkov, R.Andreev, V.A. Bagryansky, Yu.N. Molin
    Dimer Radical Anions of Polyfluoroarenes. Two More to a Small Family
    The Journal of Physical Chemistry A, 2019, 123, 51, 10968-10975 doi:10.1021/acs.jpca.9b09906, IF=2.641
  24. I. V. Beregovaya, L. N. Shchegoleva, D.A. Ovchinnikov, S.V. Blinkova, V.I. Borovkov, R.Andreev, V.A. Bagryansky, Yu.N. Molin
    Dimer Radical Anions of Polyfluoroarenes. Two More to a Small Family
    The Journal of Physical Chemistry A, 2019, 123, 51, 10968-10975 doi:10.1021/acs.jpca.9b09906, IF=2.641
  25. A.G. Maryasov, M.K. Bowman, M.V. Fedin, S.L. Veber
    Theoretical Basis for Switching a Kramers Single Molecular Magnet by Circularly-Polarized Radiation
    Materials 2019, 12(23), 3865 doi:10.3390/ma12233865, IF=2.971
  26. A.G. Maryasov, M.K. Bowman, M.V. Fedin, S.L. Veber
    Theoretical Basis for Switching a Kramers Single Molecular Magnet by Circularly-Polarized Radiation
    Materials 2019, 12(23), 3865 doi:10.3390/ma12233865, IF=2.971
  27. A.G. Maryasov, M.K. Bowman, M.V. Fedin, S.L. Veber
    Theoretical Basis for Switching a Kramers Single Molecular Magnet by Circularly-Polarized Radiation
    Materials 2019, 12(23), 3865 doi:10.3390/ma12233865, IF=2.971
  28. A.A. Malygin, O.A. Krumkacheva, D.M. Graifer, I.O. Timofeev, A.S. Ochkasova, M.I. Meschaninova, A.G. Venyaminova, M.V. Fedin, M. Bowman, G.G. Karpova, E.G. Bagryanskaya
    Exploring the interactions of short RNAs with the human 40S ribosomal subunit near the mRNA entry site by EPR spectroscopy
    Nucleic Acids Research, 2019, V. 47, N 22, Pp 11850-11860 doi:10.1093/nar/gkz1039, IF=11.147
  29. V.A. Bagryansky, V.I. Borovkov, A.O. Bessmertnykh, I.S. Tretyakova, I.V. Beregovaya, Yu.N. Molin
    Interaction of spin-correlated radical pair with a third radical: Combined effect of spin-exchange interaction and spin-selective reaction
    Journal of Chemical Physics, , 2019, V. 151, N 22, 224308 doi:10.1063/1.5127812, IF=2.997
  30. V.A. Bagryansky, V.I. Borovkov, A.O. Bessmertnykh, I.S. Tretyakova, I.V. Beregovaya, Yu.N. Molin
    Interaction of spin-correlated radical pair with a third radical: Combined effect of spin-exchange interaction and spin-selective reaction
    Journal of Chemical Physics, , 2019, V. 151, N 22, 224308 doi:10.1063/1.5127812, IF=2.997
  31. V.A. Bagryansky, V.I. Borovkov, A.O. Bessmertnykh, I.S. Tretyakova, I.V. Beregovaya, Yu.N. Molin
    Interaction of spin-correlated radical pair with a third radical: Combined effect of spin-exchange interaction and spin-selective reaction
    Journal of Chemical Physics, , 2019, V. 151, N 22, 224308 doi:10.1063/1.5127812, IF=2.997
  32. V.A. Bagryansky, V.I. Borovkov, A.O. Bessmertnykh, I.S. Tretyakova, I.V. Beregovaya, Yu.N. Molin
    Interaction of spin-correlated radical pair with a third radical: Combined effect of spin-exchange interaction and spin-selective reaction
    Journal of Chemical Physics, , 2019, V. 151, N 22, 224308 doi:10.1063/1.5127812, IF=2.997
  33. V.A. Bagryansky, V.I. Borovkov, A.O. Bessmertnykh, I.S. Tretyakova, I.V. Beregovaya, Yu.N. Molin
    Interaction of spin-correlated radical pair with a third radical: Combined effect of spin-exchange interaction and spin-selective reaction
    Journal of Chemical Physics, , 2019, V. 151, N 22, 224308 doi:10.1063/1.5127812, IF=2.997
  34. E. Tretyakov, P. Fedyushin, E. Panteleeva, L. Gurskaya, T. Rybalova, A. Bogomyakov, E. Zaytseva, M. Kazantsev, I. Shundrina, V. Ovcharenko
    Aromatic SNF-Approach to Fluorinated Phenyl tert-Butyl Nitroxides
    Molecules 2019, 24(24), 4493 doi:10.3390/molecules24244493, IF=3.59
  35. E. Tretyakov, P. Fedyushin, E. Panteleeva, L. Gurskaya, T. Rybalova, A. Bogomyakov, E. Zaytseva, M. Kazantsev, I. Shundrina, V. Ovcharenko
    Aromatic SNF-Approach to Fluorinated Phenyl tert-Butyl Nitroxides
    Molecules 2019, 24(24), 4493 doi:10.3390/molecules24244493, IF=3.59
  36. A.A. Gorodetskii, T.D. Eubank, B. Driesschaert, M. Poncelet, E. Ellis, V.V. Khramtsov, A.A. Bobko
    Development of multifunctional Overhauser-enhanced magnetic resonance imaging for concurrent in vivo mapping of tumor interstitial oxygenation, acidosis and inorganic phosphate concentration
    Scientific Reports, 2019, V. 9, Issue 1, Art.number 12093 doi:10.1038/s41598-019-48524-3, IF=4.11
  37. A.A. Gorodetskii, T.D. Eubank, B. Driesschaert, M. Poncelet, E. Ellis, V.V. Khramtsov, A.A. Bobko
    Development of multifunctional Overhauser-enhanced magnetic resonance imaging for concurrent in vivo mapping of tumor interstitial oxygenation, acidosis and inorganic phosphate concentration
    Scientific Reports, 2019, V. 9, Issue 1, Art.number 12093 doi:10.1038/s41598-019-48524-3, IF=4.11
  38. A.A. Gorodetskii, T.D. Eubank, B. Driesschaert, M. Poncelet, E. Ellis, V.V. Khramtsov, A.A. Bobko
    Development of multifunctional Overhauser-enhanced magnetic resonance imaging for concurrent in vivo mapping of tumor interstitial oxygenation, acidosis and inorganic phosphate concentration
    Scientific Reports, 2019, V. 9, Issue 1, Art.number 12093 doi:10.1038/s41598-019-48524-3, IF=4.11
  39. A.A. Gorodetskii, T.D. Eubank, B. Driesschaert, M. Poncelet, E. Ellis, V.V. Khramtsov, A.A. Bobko
    Development of multifunctional Overhauser-enhanced magnetic resonance imaging for concurrent in vivo mapping of tumor interstitial oxygenation, acidosis and inorganic phosphate concentration
    Scientific Reports, 2019, V. 9, Issue 1, Art.number 12093 doi:10.1038/s41598-019-48524-3, IF=4.11
  40. A.A. Gorodetskii, T.D. Eubank, B. Driesschaert, M. Poncelet, E. Ellis, V.V. Khramtsov, A.A. Bobko
    Development of multifunctional Overhauser-enhanced magnetic resonance imaging for concurrent in vivo mapping of tumor interstitial oxygenation, acidosis and inorganic phosphate concentration
    Scientific Reports, 2019, V. 9, Issue 1, Art.number 12093 doi:10.1038/s41598-019-48524-3, IF=4.11
  41. A.A. Gorodetskii, T.D. Eubank, B. Driesschaert, M. Poncelet, E. Ellis, V.V. Khramtsov, A.A. Bobko
    Development of multifunctional Overhauser-enhanced magnetic resonance imaging for concurrent in vivo mapping of tumor interstitial oxygenation, acidosis and inorganic phosphate concentration
    Scientific Reports, 2019, V. 9, Issue 1, Art.number 12093 doi:10.1038/s41598-019-48524-3, IF=4.11
  42. A.Yu.Sidorenko,A.V.Kravtsova,I.V.Il'ina,J.Warna,D.V.Korchagina,Yu.V.Gatilov,K.P.Volcho,N.F.Salakhutdinov,D.Yu.Murzin, V.E.Agabekov
    Clay nanotubes catalyzed solvent-free synthesis of octahydro-2H-chromenols with pharmaceutical potential from (-)-isopulegol and ketones
    Journal of Catalysis, 2019, V. 380, Pp 145-152 doi:10.1016/j.jcat.2019.10.015, IF=7.723
  43. A.Yu.Sidorenko,A.V.Kravtsova,I.V.Il'ina,J.Warna,D.V.Korchagina,Yu.V.Gatilov,K.P.Volcho,N.F.Salakhutdinov,D.Yu.Murzin, V.E.Agabekov
    Clay nanotubes catalyzed solvent-free synthesis of octahydro-2H-chromenols with pharmaceutical potential from (-)-isopulegol and ketones
    Journal of Catalysis, 2019, V. 380, Pp 145-152 doi:10.1016/j.jcat.2019.10.015, IF=7.723
  44. A.Yu.Sidorenko,A.V.Kravtsova,I.V.Il'ina,J.Warna,D.V.Korchagina,Yu.V.Gatilov,K.P.Volcho,N.F.Salakhutdinov,D.Yu.Murzin, V.E.Agabekov
    Clay nanotubes catalyzed solvent-free synthesis of octahydro-2H-chromenols with pharmaceutical potential from (-)-isopulegol and ketones
    Journal of Catalysis, 2019, V. 380, Pp 145-152 doi:10.1016/j.jcat.2019.10.015, IF=7.723
  45. A.Yu.Sidorenko,A.V.Kravtsova,I.V.Il'ina,J.Warna,D.V.Korchagina,Yu.V.Gatilov,K.P.Volcho,N.F.Salakhutdinov,D.Yu.Murzin, V.E.Agabekov
    Clay nanotubes catalyzed solvent-free synthesis of octahydro-2H-chromenols with pharmaceutical potential from (-)-isopulegol and ketones
    Journal of Catalysis, 2019, V. 380, Pp 145-152 doi:10.1016/j.jcat.2019.10.015, IF=7.723
  46. A.Yu.Sidorenko,A.V.Kravtsova,I.V.Il'ina,J.Warna,D.V.Korchagina,Yu.V.Gatilov,K.P.Volcho,N.F.Salakhutdinov,D.Yu.Murzin, V.E.Agabekov
    Clay nanotubes catalyzed solvent-free synthesis of octahydro-2H-chromenols with pharmaceutical potential from (-)-isopulegol and ketones
    Journal of Catalysis, 2019, V. 380, Pp 145-152 doi:10.1016/j.jcat.2019.10.015, IF=7.723
  47. A. Zaikovskii, S. Novopashin, V. Maltsev, T. Kardash, I. Shundrina
    Tin-carbon nanomaterial formation in a helium atmosphere during arc-discharge
    RSC Adv., 2019, V. 9, N 63, Pp 36621-36630 doi:10.1039/C9RA05485E, IF=3.049
  48. A. Zaikovskii, S. Novopashin, V. Maltsev, T. Kardash, I. Shundrina
    Tin-carbon nanomaterial formation in a helium atmosphere during arc-discharge
    RSC Adv., 2019, V. 9, N 63, Pp 36621-36630 doi:10.1039/C9RA05485E, IF=3.049
  49. A. Zaikovskii, S. Novopashin, V. Maltsev, T. Kardash, I. Shundrina
    Tin-carbon nanomaterial formation in a helium atmosphere during arc-discharge
    RSC Adv., 2019, V. 9, N 63, Pp 36621-36630 doi:10.1039/C9RA05485E, IF=3.049
  50. A. Zaikovskii, S. Novopashin, V. Maltsev, T. Kardash, I. Shundrina
    Tin-carbon nanomaterial formation in a helium atmosphere during arc-discharge
    RSC Adv., 2019, V. 9, N 63, Pp 36621-36630 doi:10.1039/C9RA05485E, IF=3.049
  51. G.T. Sukhanov, Yu.V. Filippova, A.G. Sukhanova, I.Yu. Bagryanskaya, K.K. Bosov
    Synthesis of 1-(Adamantan-1-yl)-1H-1,2,3-Triazoles and their Salts by Adamantylation in AdOH–HClO4 and AdOH–H2SO44 Systems
    Chemistry of Heterocyclic Compounds, 2019, V. 55, N 12, pp 1197-1203 doi:10.1007/s10593-019-02601-7, IF=1.491
  52. G.T. Sukhanov, Yu.V. Filippova, A.G. Sukhanova, I.Yu. Bagryanskaya, K.K. Bosov
    Synthesis of 1-(Adamantan-1-yl)-1H-1,2,3-Triazoles and their Salts by Adamantylation in AdOH–HClO4 and AdOH–H2SO44 Systems
    Chemistry of Heterocyclic Compounds, 2019, V. 55, N 12, pp 1197-1203 doi:10.1007/s10593-019-02601-7, IF=1.491
  53. G.T. Sukhanov, Yu.V. Filippova, A.G. Sukhanova, I.Yu. Bagryanskaya, K.K. Bosov
    Synthesis of 1-(Adamantan-1-yl)-1H-1,2,3-Triazoles and their Salts by Adamantylation in AdOH–HClO4 and AdOH–H2SO44 Systems
    Chemistry of Heterocyclic Compounds, 2019, V. 55, N 12, pp 1197-1203 doi:10.1007/s10593-019-02601-7, IF=1.491
  54. G.T. Sukhanov, Yu.V. Filippova, A.G. Sukhanova, I.Yu. Bagryanskaya, K.K. Bosov
    Synthesis of 1-(Adamantan-1-yl)-1H-1,2,3-Triazoles and their Salts by Adamantylation in AdOH–HClO4 and AdOH–H2SO44 Systems
    Chemistry of Heterocyclic Compounds, 2019, V. 55, N 12, pp 1197-1203 doi:10.1007/s10593-019-02601-7, IF=1.491
  55. V.V. Chernyshov, Y.V. Gatilov, O.I. Yarovaya, I.P. Koskin, S.S. Yarovoy, K.A. Brylev, N.F. Salakhutdinov
    The first example of the stereoselective synthesis and crystal structure of a spirobi­cyclo­quinazolinone based on (–)-fenchone and anthranilamide
    Acta Crystallographica Section C, V. C75, Part 12, Pp 1675-1680 doi:10.1107/S2053229619015766, IF=0.93
  56. V.V. Chernyshov, Y.V. Gatilov, O.I. Yarovaya, I.P. Koskin, S.S. Yarovoy, K.A. Brylev, N.F. Salakhutdinov
    The first example of the stereoselective synthesis and crystal structure of a spirobi­cyclo­quinazolinone based on (–)-fenchone and anthranilamide
    Acta Crystallographica Section C, V. C75, Part 12, Pp 1675-1680 doi:10.1107/S2053229619015766, IF=0.93
  57. Н.А. Панкрушина, О.И. Ломовский, Т.П. Шахтшнейдер
    Физическая активация процессов экстракции и органического синтеза
    Химия в интересах устойчивого развития. 2019. Т. 27. № 6. С. 704-715. (Physical Activation of Extraction and Organic Synthesis Processes/ Pankrushina N. A., Lomovsky O. I., Shakhtshneider T. P// Chemistry for Sustainable Development, 2019, V. 27, № 6, P. 704-715. (In Russian) doi:10.15372/KhUR2019194)
  58. Н.А. Панкрушина, О.И. Ломовский, Т.П. Шахтшнейдер
    Физическая активация процессов экстракции и органического синтеза
    Химия в интересах устойчивого развития. 2019. Т. 27. № 6. С. 704-715. (Physical Activation of Extraction and Organic Synthesis Processes/ Pankrushina N. A., Lomovsky O. I., Shakhtshneider T. P// Chemistry for Sustainable Development, 2019, V. 27, № 6, P. 704-715. (In Russian) doi:10.15372/KhUR2019194)
  59. A. Kulikov, N. Sinyakova, E. Kulikova, T. Khomenko, N. Salakhutdinov, V. Kulikov, K. Volcho
    Effects of Acute and Chronic Treatment of Novel Psychotropic Drug, 8- (Trifluoromethyl)-1, 2, 3, 4, 5-benzopentathiepin-6-amine Hydrochloride (TC-2153), on the Behavior of Zebrafish (Danio Rerio): A Comparison with Fluoxetine
    Letters in Drug Design & Discovery, 2019, V.16, N 12, Pp.1321-1328 doi:10.2174/1570180816666190221162952, IF=0.953
  60. A. Kulikov, N. Sinyakova, E. Kulikova, T. Khomenko, N. Salakhutdinov, V. Kulikov, K. Volcho
    Effects of Acute and Chronic Treatment of Novel Psychotropic Drug, 8- (Trifluoromethyl)-1, 2, 3, 4, 5-benzopentathiepin-6-amine Hydrochloride (TC-2153), on the Behavior of Zebrafish (Danio Rerio): A Comparison with Fluoxetine
    Letters in Drug Design & Discovery, 2019, V.16, N 12, Pp.1321-1328 doi:10.2174/1570180816666190221162952, IF=0.953
  61. A. Kulikov, N. Sinyakova, E. Kulikova, T. Khomenko, N. Salakhutdinov, V. Kulikov, K. Volcho
    Effects of Acute and Chronic Treatment of Novel Psychotropic Drug, 8- (Trifluoromethyl)-1, 2, 3, 4, 5-benzopentathiepin-6-amine Hydrochloride (TC-2153), on the Behavior of Zebrafish (Danio Rerio): A Comparison with Fluoxetine
    Letters in Drug Design & Discovery, 2019, V.16, N 12, Pp.1321-1328 doi:10.2174/1570180816666190221162952, IF=0.953
  62. A. Kulikov, N. Sinyakova, E. Kulikova, T. Khomenko, N. Salakhutdinov, V. Kulikov, K. Volcho
    Effects of Acute and Chronic Treatment of Novel Psychotropic Drug, 8- (Trifluoromethyl)-1, 2, 3, 4, 5-benzopentathiepin-6-amine Hydrochloride (TC-2153), on the Behavior of Zebrafish (Danio Rerio): A Comparison with Fluoxetine
    Letters in Drug Design & Discovery, 2019, V.16, N 12, Pp.1321-1328 doi:10.2174/1570180816666190221162952, IF=0.953
  63. O.I. Yarovaya, A.S. Sokolova, I.Ya. Mainagashev, A.S. Volobueva, K. Lantseva, S.S. Borisevich, A.A. Shtro, V.V. Zarubaev, N.F. Salakhutdinov
    Synthesis and structure-activity relationships of novel camphecene analogues as anti-influenza agents
    Bioorganic & Medicinal Chemistry Letters, 1019, V. 29, N 23, 126745 doi:10.1016/j.bmcl.2019.126745, IF=2.447
  64. O.I. Yarovaya, A.S. Sokolova, I.Ya. Mainagashev, A.S. Volobueva, K. Lantseva, S.S. Borisevich, A.A. Shtro, V.V. Zarubaev, N.F. Salakhutdinov
    Synthesis and structure-activity relationships of novel camphecene analogues as anti-influenza agents
    Bioorganic & Medicinal Chemistry Letters, 1019, V. 29, N 23, 126745 doi:10.1016/j.bmcl.2019.126745, IF=2.447
  65. O.I. Yarovaya, A.S. Sokolova, I.Ya. Mainagashev, A.S. Volobueva, K. Lantseva, S.S. Borisevich, A.A. Shtro, V.V. Zarubaev, N.F. Salakhutdinov
    Synthesis and structure-activity relationships of novel camphecene analogues as anti-influenza agents
    Bioorganic & Medicinal Chemistry Letters, 1019, V. 29, N 23, 126745 doi:10.1016/j.bmcl.2019.126745, IF=2.447
  66. O.I. Yarovaya, A.S. Sokolova, I.Ya. Mainagashev, A.S. Volobueva, K. Lantseva, S.S. Borisevich, A.A. Shtro, V.V. Zarubaev, N.F. Salakhutdinov
    Synthesis and structure-activity relationships of novel camphecene analogues as anti-influenza agents
    Bioorganic & Medicinal Chemistry Letters, 1019, V. 29, N 23, 126745 doi:10.1016/j.bmcl.2019.126745, IF=2.447
  67. O.I. Yarovaya, A.S. Sokolova, I.Ya. Mainagashev, A.S. Volobueva, K. Lantseva, S.S. Borisevich, A.A. Shtro, V.V. Zarubaev, N.F. Salakhutdinov
    Synthesis and structure-activity relationships of novel camphecene analogues as anti-influenza agents
    Bioorganic & Medicinal Chemistry Letters, 1019, V. 29, N 23, 126745 doi:10.1016/j.bmcl.2019.126745, IF=2.447
  68. A.V. Artem'ev, M.P. Davydova, A.S. Berezin, V.K. Brel, V.P. Morgalyuk, I.Yu. Bagryanskaya, D.G. Samsonenko
    Luminescence of the Mn2+ ion in non-Oh and Td coordination environments: the missing case of square pyramid
    Dalton Trans., 2019, V. 48, N 43, Pp 16448-16456 doi:10.1039/C9DT03283E, IF=4.052
  69. A.V. Artem'ev, M.P. Davydova, A.S. Berezin, V.K. Brel, V.P. Morgalyuk, I.Yu. Bagryanskaya, D.G. Samsonenko
    Luminescence of the Mn2+ ion in non-Oh and Td coordination environments: the missing case of square pyramid
    Dalton Trans., 2019, V. 48, N 43, Pp 16448-16456 doi:10.1039/C9DT03283E, IF=4.052
  70. A.V. Artem'ev, M.P. Davydova, A.S. Berezin, V.K. Brel, V.P. Morgalyuk, I.Yu. Bagryanskaya, D.G. Samsonenko
    Luminescence of the Mn2+ ion in non-Oh and Td coordination environments: the missing case of square pyramid
    Dalton Trans., 2019, V. 48, N 43, Pp 16448-16456 doi:10.1039/C9DT03283E, IF=4.052
  71. A.V. Artem'ev, M.P. Davydova, A.S. Berezin, V.K. Brel, V.P. Morgalyuk, I.Yu. Bagryanskaya, D.G. Samsonenko
    Luminescence of the Mn2+ ion in non-Oh and Td coordination environments: the missing case of square pyramid
    Dalton Trans., 2019, V. 48, N 43, Pp 16448-16456 doi:10.1039/C9DT03283E, IF=4.052
  72. A.V. Artem'ev, M.P. Davydova, A.S. Berezin, V.K. Brel, V.P. Morgalyuk, I.Yu. Bagryanskaya, D.G. Samsonenko
    Luminescence of the Mn2+ ion in non-Oh and Td coordination environments: the missing case of square pyramid
    Dalton Trans., 2019, V. 48, N 43, Pp 16448-16456 doi:10.1039/C9DT03283E, IF=4.052
  73. V.I. Borovkov, L.N. Shchegoleva
    Magnetic Resonance Characteristics of Negative Polarons in Neat Poly(3-hexyl-thiophene)
    Journal of Physical Chemistry C, 2019, 123, 46, 28058-28065 doi:10.1021/acs.jpcc.9b08331, IF=4.309
  74. I. Sokol, A. Sokol, T. Bul'bak, A. Nefyodov, P. Zaikin, A. Tomilenko
    C- and N-bearing Species in Reduced Fluids in the Simplified C-O-H-N System and in Natural Pelite at Upper Mantle P-T Conditions
    Minerals 2019, 9(11), 712 doi:10.3390/min9110712, IF=2.25
  75. I. Sokol, A. Sokol, T. Bul'bak, A. Nefyodov, P. Zaikin, A. Tomilenko
    C- and N-bearing Species in Reduced Fluids in the Simplified C-O-H-N System and in Natural Pelite at Upper Mantle P-T Conditions
    Minerals 2019, 9(11), 712 doi:10.3390/min9110712, IF=2.25
  76. I. Sokol, A. Sokol, T. Bul'bak, A. Nefyodov, P. Zaikin, A. Tomilenko
    C- and N-bearing Species in Reduced Fluids in the Simplified C-O-H-N System and in Natural Pelite at Upper Mantle P-T Conditions
    Minerals 2019, 9(11), 712 doi:10.3390/min9110712, IF=2.25
  77. I. Sokol, A. Sokol, T. Bul'bak, A. Nefyodov, P. Zaikin, A. Tomilenko
    C- and N-bearing Species in Reduced Fluids in the Simplified C-O-H-N System and in Natural Pelite at Upper Mantle P-T Conditions
    Minerals 2019, 9(11), 712 doi:10.3390/min9110712, IF=2.25
  78. A. V.Lastovka,A. D.Rogachev,I. V.Il'ina,A.Kabir,K.P.Volcho,V. P.Fadeeva,A.G.Pokrovsky,N. F.Salakhutdinov,K. G.Furtonc
    Comparison of dried matrix spots and fabric phase sorptive extraction methods for quantitation of highly potent analgesic activity agent (2R,4aR,7R,8aR)-4,7-dimethyl-2-(thiophen-2-yl)octahydro-2H-chromen-4-ol in rat whole blood and plasma using LC–MS/MS
    Journal of Chromatography B, 2019, V. 1132, Art. Number 121813 doi:10.1016/j.jchromb.2019.121813, IF=2.789
  79. A. V.Lastovka,A. D.Rogachev,I. V.Il'ina,A.Kabir,K.P.Volcho,V. P.Fadeeva,A.G.Pokrovsky,N. F.Salakhutdinov,K. G.Furtonc
    Comparison of dried matrix spots and fabric phase sorptive extraction methods for quantitation of highly potent analgesic activity agent (2R,4aR,7R,8aR)-4,7-dimethyl-2-(thiophen-2-yl)octahydro-2H-chromen-4-ol in rat whole blood and plasma using LC–MS/MS
    Journal of Chromatography B, 2019, V. 1132, Art. Number 121813 doi:10.1016/j.jchromb.2019.121813, IF=2.789
  80. A. V.Lastovka,A. D.Rogachev,I. V.Il'ina,A.Kabir,K.P.Volcho,V. P.Fadeeva,A.G.Pokrovsky,N. F.Salakhutdinov,K. G.Furtonc
    Comparison of dried matrix spots and fabric phase sorptive extraction methods for quantitation of highly potent analgesic activity agent (2R,4aR,7R,8aR)-4,7-dimethyl-2-(thiophen-2-yl)octahydro-2H-chromen-4-ol in rat whole blood and plasma using LC–MS/MS
    Journal of Chromatography B, 2019, V. 1132, Art. Number 121813 doi:10.1016/j.jchromb.2019.121813, IF=2.789
  81. S.A. Dobrynin, I.A. Kirilyuk, Yu.V. Gatilov, A.A. Kuzhelev, O.A. Krumkacheva, M.V. Fedin, M.K. Bowman, E.G. Bagryanskaya
    Unexpected one-pot formation of the 1H-6a,8a-epiminotri-cyclopenta[a,c,e][8]annulene system from cyclopentanone, ammonia and dimethyl fumarate. Synthesis of highly strained polycyclic nitroxide and EPR study
    Beilstein Journal of Organic Chemistry, 2019, V. 15, Pp 2664-2670 doi:10.3762/bjoc.15.259, IF=2.595
  82. S.A. Dobrynin, I.A. Kirilyuk, Yu.V. Gatilov, A.A. Kuzhelev, O.A. Krumkacheva, M.V. Fedin, M.K. Bowman, E.G. Bagryanskaya
    Unexpected one-pot formation of the 1H-6a,8a-epiminotri-cyclopenta[a,c,e][8]annulene system from cyclopentanone, ammonia and dimethyl fumarate. Synthesis of highly strained polycyclic nitroxide and EPR study
    Beilstein Journal of Organic Chemistry, 2019, V. 15, Pp 2664-2670 doi:10.3762/bjoc.15.259, IF=2.595
  83. E.P. Talsi, A.A. Bryliakova, R.V. Ottenbacher, T.V. Rybalova, K.P. Bryliakov
    Chiral Autoamplification Meets Dynamic Chirality Control to Suggest Nonautocatalytic Chemical Model of Prebiotic Chirality Amplification
    Research, 2019, V.2019. Article ID: 4756025 doi:10.34133/2019/4756025
  84. E.P. Talsi, A.A. Bryliakova, R.V. Ottenbacher, T.V. Rybalova, K.P. Bryliakov
    Chiral Autoamplification Meets Dynamic Chirality Control to Suggest Nonautocatalytic Chemical Model of Prebiotic Chirality Amplification
    Research, 2019, V.2019. Article ID: 4756025 doi:10.34133/2019/4756025
  85. E.P. Talsi, A.A. Bryliakova, R.V. Ottenbacher, T.V. Rybalova, K.P. Bryliakov
    Chiral Autoamplification Meets Dynamic Chirality Control to Suggest Nonautocatalytic Chemical Model of Prebiotic Chirality Amplification
    Research, 2019, V.2019. Article ID: 4756025 doi:10.34133/2019/4756025
  86. E.P. Talsi, A.A. Bryliakova, R.V. Ottenbacher, T.V. Rybalova, K.P. Bryliakov
    Chiral Autoamplification Meets Dynamic Chirality Control to Suggest Nonautocatalytic Chemical Model of Prebiotic Chirality Amplification
    Research, 2019, V.2019. Article ID: 4756025 doi:10.34133/2019/4756025
  87. M.V. Kruchinina, A.A. Gromov, Ya.I. Prudnikova, S.A. Kurilovich, V.N. Kruchinin, V.M. Generalov, M.V. Shashkov, A.S. Sokolova, I.N. Yakovina, N.A. Bannova, G.V. Shuvalov
    Electrical and viscoelastic parameters of erythrocytes in combination with the fatty acid profile of their membranes and serum as potentialbiomarkers for the diagnosis of colorectal cancer
    UNITED EUROPEAN GASTROENTEROLOGY JOURNAL, 2019, V. 7, N S8, P. 387 (27th United European Gastroenterology Week Barselona 2019) doi:10.1177/2050640619854671, IF=3.453
  88. M.V. Kruchinina, A.A. Gromov, Ya.I. Prudnikova, S.A. Kurilovich, V.N. Kruchinin, V.M. Generalov, M.V. Shashkov, A.S. Sokolova, I.N. Yakovina, N.A. Bannova, G.V. Shuvalov
    Electrical and viscoelastic parameters of erythrocytes in combination with the fatty acid profile of their membranes and serum as potentialbiomarkers for the diagnosis of colorectal cancer
    UNITED EUROPEAN GASTROENTEROLOGY JOURNAL, 2019, V. 7, N S8, P. 387 (27th United European Gastroenterology Week Barselona 2019) doi:10.1177/2050640619854671, IF=3.453
  89. M.V. Kruchinina, A.A. Gromov, Ya.I. Prudnikova, S.A. Kurilovich, V.N. Kruchinin, V.M. Generalov, M.V. Shashkov, A.S. Sokolova, I.N. Yakovina, N.A. Bannova, G.V. Shuvalov
    Electrical and viscoelastic parameters of erythrocytes in combination with the fatty acid profile of their membranes and serum as potentialbiomarkers for the diagnosis of colorectal cancer
    UNITED EUROPEAN GASTROENTEROLOGY JOURNAL, 2019, V. 7, N S8, P. 387 (27th United European Gastroenterology Week Barselona 2019) doi:10.1177/2050640619854671, IF=3.453
  90. M.V. Kruchinina, A.A. Gromov, Ya.I. Prudnikova, S.A. Kurilovich, V.N. Kruchinin, V.M. Generalov, M.V. Shashkov, A.S. Sokolova, I.N. Yakovina, N.A. Bannova, G.V. Shuvalov
    Electrical and viscoelastic parameters of erythrocytes in combination with the fatty acid profile of their membranes and serum as potentialbiomarkers for the diagnosis of colorectal cancer
    UNITED EUROPEAN GASTROENTEROLOGY JOURNAL, 2019, V. 7, N S8, P. 387 (27th United European Gastroenterology Week Barselona 2019) doi:10.1177/2050640619854671, IF=3.453
  91. M.V. Kruchinina, A.A. Gromov, Ya.I. Prudnikova, S.A. Kurilovich, V.N. Kruchinin, V.M. Generalov, M.V. Shashkov, A.S. Sokolova, I.N. Yakovina, N.A. Bannova, G.V. Shuvalov
    Electrical and viscoelastic parameters of erythrocytes in combination with the fatty acid profile of their membranes and serum as potentialbiomarkers for the diagnosis of colorectal cancer
    UNITED EUROPEAN GASTROENTEROLOGY JOURNAL, 2019, V. 7, N S8, P. 387 (27th United European Gastroenterology Week Barselona 2019) doi:10.1177/2050640619854671, IF=3.453
  92. M.V. Kruchinina, A.A. Gromov, Ya.I. Prudnikova, S.A. Kurilovich, V.N. Kruchinin, V.M. Generalov, M.V. Shashkov, A.S. Sokolova, I.N. Yakovina, N.A. Bannova, G.V. Shuvalov
    Electrical and viscoelastic parameters of erythrocytes in combination with the fatty acid profile of their membranes and serum as potentialbiomarkers for the diagnosis of colorectal cancer
    UNITED EUROPEAN GASTROENTEROLOGY JOURNAL, 2019, V. 7, N S8, P. 387 (27th United European Gastroenterology Week Barselona 2019) doi:10.1177/2050640619854671, IF=3.453
  93. M.V. Kruchinina, A.A. Gromov, Ya.I. Prudnikova, S.A. Kurilovich, V.N. Kruchinin, V.M. Generalov, M.V. Shashkov, A.S. Sokolova, I.N. Yakovina, N.A. Bannova, G.V. Shuvalov
    Electrical and viscoelastic parameters of erythrocytes in combination with the fatty acid profile of their membranes and serum as potentialbiomarkers for the diagnosis of colorectal cancer
    UNITED EUROPEAN GASTROENTEROLOGY JOURNAL, 2019, V. 7, N S8, P. 387 (27th United European Gastroenterology Week Barselona 2019) doi:10.1177/2050640619854671, IF=3.453
  94. M.V. Kruchinina, A.A. Gromov, Ya.I. Prudnikova, S.A. Kurilovich, V.N. Kruchinin, V.M. Generalov, M.V. Shashkov, A.S. Sokolova, I.N. Yakovina, N.A. Bannova, G.V. Shuvalov
    Electrical and viscoelastic parameters of erythrocytes in combination with the fatty acid profile of their membranes and serum as potentialbiomarkers for the diagnosis of colorectal cancer
    UNITED EUROPEAN GASTROENTEROLOGY JOURNAL, 2019, V. 7, N S8, P. 387 (27th United European Gastroenterology Week Barselona 2019) doi:10.1177/2050640619854671, IF=3.453
  95. M.V. Kruchinina, A.A. Gromov, Ya.I. Prudnikova, S.A. Kurilovich, V.N. Kruchinin, V.M. Generalov, M.V. Shashkov, A.S. Sokolova, I.N. Yakovina, N.A. Bannova, G.V. Shuvalov
    Electrical and viscoelastic parameters of erythrocytes in combination with the fatty acid profile of their membranes and serum as potentialbiomarkers for the diagnosis of colorectal cancer
    UNITED EUROPEAN GASTROENTEROLOGY JOURNAL, 2019, V. 7, N S8, P. 387 (27th United European Gastroenterology Week Barselona 2019) doi:10.1177/2050640619854671, IF=3.453
  96. M.V. Kruchinina, A.A. Gromov, Ya.I. Prudnikova, S.A. Kurilovich, V.N. Kruchinin, V.M. Generalov, M.V. Shashkov, A.S. Sokolova, I.N. Yakovina, N.A. Bannova, G.V. Shuvalov
    Electrical and viscoelastic parameters of erythrocytes in combination with the fatty acid profile of their membranes and serum as potentialbiomarkers for the diagnosis of colorectal cancer
    UNITED EUROPEAN GASTROENTEROLOGY JOURNAL, 2019, V. 7, N S8, P. 387 (27th United European Gastroenterology Week Barselona 2019) doi:10.1177/2050640619854671, IF=3.453
  97. S.A. Kremis, D.S. Baev, A.V. Lipeeva, E.E. Shults, T.G. Tolstikova, O.I. Sinitsyna, A.V. Kochetov, T.S. Frolova
    Genotoxic activity of 1,2,3-triazolyl modified furocoumarins and 2,3-dihydrofurocoumarins
    Journal of biochemical and molecular toxicology, 2019, V. 33, N 11, e22396 doi:10.1002/jbt.22396, IF=2.965
  98. S.A. Kremis, D.S. Baev, A.V. Lipeeva, E.E. Shults, T.G. Tolstikova, O.I. Sinitsyna, A.V. Kochetov, T.S. Frolova
    Genotoxic activity of 1,2,3-triazolyl modified furocoumarins and 2,3-dihydrofurocoumarins
    Journal of biochemical and molecular toxicology, 2019, V. 33, N 11, e22396 doi:10.1002/jbt.22396, IF=2.965
  99. S.A. Kremis, D.S. Baev, A.V. Lipeeva, E.E. Shults, T.G. Tolstikova, O.I. Sinitsyna, A.V. Kochetov, T.S. Frolova
    Genotoxic activity of 1,2,3-triazolyl modified furocoumarins and 2,3-dihydrofurocoumarins
    Journal of biochemical and molecular toxicology, 2019, V. 33, N 11, e22396 doi:10.1002/jbt.22396, IF=2.965
  100. N. Li-Zhulanov, P. Maki-Arvela, M. Laluc, A.F. Peixoto, E. Kholkina, T. Sandberg, A. Aho, K. Volcho, N. Salakhutdinov, C. Freire, A.Yu. Sidorenko, D.Yu. Murzin
    Prins cyclization of (-)-isopulegol with benzaldehyde for production of chromenols over organosulfonic clays
    Molecular Catalysis, 2019, V. 478, 110569 doi:10.1016/j.mcat.2019.110569, IF=2.937
  101. N. Li-Zhulanov, P. Maki-Arvela, M. Laluc, A.F. Peixoto, E. Kholkina, T. Sandberg, A. Aho, K. Volcho, N. Salakhutdinov, C. Freire, A.Yu. Sidorenko, D.Yu. Murzin
    Prins cyclization of (-)-isopulegol with benzaldehyde for production of chromenols over organosulfonic clays
    Molecular Catalysis, 2019, V. 478, 110569 doi:10.1016/j.mcat.2019.110569, IF=2.937
  102. N. Li-Zhulanov, P. Maki-Arvela, M. Laluc, A.F. Peixoto, E. Kholkina, T. Sandberg, A. Aho, K. Volcho, N. Salakhutdinov, C. Freire, A.Yu. Sidorenko, D.Yu. Murzin
    Prins cyclization of (-)-isopulegol with benzaldehyde for production of chromenols over organosulfonic clays
    Molecular Catalysis, 2019, V. 478, 110569 doi:10.1016/j.mcat.2019.110569, IF=2.937
  103. N. Li-Zhulanov, P. Maki-Arvela, M. Laluc, A.F. Peixoto, E. Kholkina, T. Sandberg, A. Aho, K. Volcho, N. Salakhutdinov, C. Freire, A.Yu. Sidorenko, D.Yu. Murzin
    Prins cyclization of (-)-isopulegol with benzaldehyde for production of chromenols over organosulfonic clays
    Molecular Catalysis, 2019, V. 478, 110569 doi:10.1016/j.mcat.2019.110569, IF=2.937
  104. N. Li-Zhulanov, P. Maki-Arvela, M. Laluc, A.F. Peixoto, E. Kholkina, T. Sandberg, A. Aho, K. Volcho, N. Salakhutdinov, C. Freire, A.Yu. Sidorenko, D.Yu. Murzin
    Prins cyclization of (-)-isopulegol with benzaldehyde for production of chromenols over organosulfonic clays
    Molecular Catalysis, 2019, V. 478, 110569 doi:10.1016/j.mcat.2019.110569, IF=2.937
  105. N. Li-Zhulanov, P. Maki-Arvela, M. Laluc, A.F. Peixoto, E. Kholkina, T. Sandberg, A. Aho, K. Volcho, N. Salakhutdinov, C. Freire, A.Yu. Sidorenko, D.Yu. Murzin
    Prins cyclization of (-)-isopulegol with benzaldehyde for production of chromenols over organosulfonic clays
    Molecular Catalysis, 2019, V. 478, 110569 doi:10.1016/j.mcat.2019.110569, IF=2.937
  106. N. Li-Zhulanov, P. Maki-Arvela, M. Laluc, A.F. Peixoto, E. Kholkina, T. Sandberg, A. Aho, K. Volcho, N. Salakhutdinov, C. Freire, A.Yu. Sidorenko, D.Yu. Murzin
    Prins cyclization of (-)-isopulegol with benzaldehyde for production of chromenols over organosulfonic clays
    Molecular Catalysis, 2019, V. 478, 110569 doi:10.1016/j.mcat.2019.110569, IF=2.937
  107. N. Li-Zhulanov, P. Maki-Arvela, M. Laluc, A.F. Peixoto, E. Kholkina, T. Sandberg, A. Aho, K. Volcho, N. Salakhutdinov, C. Freire, A.Yu. Sidorenko, D.Yu. Murzin
    Prins cyclization of (-)-isopulegol with benzaldehyde for production of chromenols over organosulfonic clays
    Molecular Catalysis, 2019, V. 478, 110569 doi:10.1016/j.mcat.2019.110569, IF=2.937
  108. N. Li-Zhulanov, P. Maki-Arvela, M. Laluc, A.F. Peixoto, E. Kholkina, T. Sandberg, A. Aho, K. Volcho, N. Salakhutdinov, C. Freire, A.Yu. Sidorenko, D.Yu. Murzin
    Prins cyclization of (-)-isopulegol with benzaldehyde for production of chromenols over organosulfonic clays
    Molecular Catalysis, 2019, V. 478, 110569 doi:10.1016/j.mcat.2019.110569, IF=2.937
  109. M.E. Mironov, O.S. Oleshko, M.A. Pokrovskii, T.V. Rybalova, V.K. Pechurov, A.G. Pokrovskii, S.V. Cheresis, S.V. Mishinov, V.V. Stupak, E.E. Shults
    6-(4'-Aryl-1',2',3'-triazolyl)-spirostan-3,5-diols and 6-(4'-Aryl-1',2',3'-triazolyl)-7-hydroxyspirosta-1,4-dien-3-ones: Synthesis and analysis of their cytotoxicity
    Steroids, 2019, V. 151, Article's number 108460 doi:10.1016/j.steroids.2019.108460, IF=2.136
  110. M.E. Mironov, O.S. Oleshko, M.A. Pokrovskii, T.V. Rybalova, V.K. Pechurov, A.G. Pokrovskii, S.V. Cheresis, S.V. Mishinov, V.V. Stupak, E.E. Shults
    6-(4'-Aryl-1',2',3'-triazolyl)-spirostan-3,5-diols and 6-(4'-Aryl-1',2',3'-triazolyl)-7-hydroxyspirosta-1,4-dien-3-ones: Synthesis and analysis of their cytotoxicity
    Steroids, 2019, V. 151, Article's number 108460 doi:10.1016/j.steroids.2019.108460, IF=2.136
  111. M.E. Mironov, O.S. Oleshko, M.A. Pokrovskii, T.V. Rybalova, V.K. Pechurov, A.G. Pokrovskii, S.V. Cheresis, S.V. Mishinov, V.V. Stupak, E.E. Shults
    6-(4'-Aryl-1',2',3'-triazolyl)-spirostan-3,5-diols and 6-(4'-Aryl-1',2',3'-triazolyl)-7-hydroxyspirosta-1,4-dien-3-ones: Synthesis and analysis of their cytotoxicity
    Steroids, 2019, V. 151, Article's number 108460 doi:10.1016/j.steroids.2019.108460, IF=2.136
  112. M.E. Mironov, O.S. Oleshko, M.A. Pokrovskii, T.V. Rybalova, V.K. Pechurov, A.G. Pokrovskii, S.V. Cheresis, S.V. Mishinov, V.V. Stupak, E.E. Shults
    6-(4'-Aryl-1',2',3'-triazolyl)-spirostan-3,5-diols and 6-(4'-Aryl-1',2',3'-triazolyl)-7-hydroxyspirosta-1,4-dien-3-ones: Synthesis and analysis of their cytotoxicity
    Steroids, 2019, V. 151, Article's number 108460 doi:10.1016/j.steroids.2019.108460, IF=2.136
  113. M.E. Mironov, O.S. Oleshko, M.A. Pokrovskii, T.V. Rybalova, V.K. Pechurov, A.G. Pokrovskii, S.V. Cheresis, S.V. Mishinov, V.V. Stupak, E.E. Shults
    6-(4'-Aryl-1',2',3'-triazolyl)-spirostan-3,5-diols and 6-(4'-Aryl-1',2',3'-triazolyl)-7-hydroxyspirosta-1,4-dien-3-ones: Synthesis and analysis of their cytotoxicity
    Steroids, 2019, V. 151, Article's number 108460 doi:10.1016/j.steroids.2019.108460, IF=2.136
  114. M.E. Mironov, O.S. Oleshko, M.A. Pokrovskii, T.V. Rybalova, V.K. Pechurov, A.G. Pokrovskii, S.V. Cheresis, S.V. Mishinov, V.V. Stupak, E.E. Shults
    6-(4'-Aryl-1',2',3'-triazolyl)-spirostan-3,5-diols and 6-(4'-Aryl-1',2',3'-triazolyl)-7-hydroxyspirosta-1,4-dien-3-ones: Synthesis and analysis of their cytotoxicity
    Steroids, 2019, V. 151, Article's number 108460 doi:10.1016/j.steroids.2019.108460, IF=2.136
  115. M.E. Mironov, O.S. Oleshko, M.A. Pokrovskii, T.V. Rybalova, V.K. Pechurov, A.G. Pokrovskii, S.V. Cheresis, S.V. Mishinov, V.V. Stupak, E.E. Shults
    6-(4'-Aryl-1',2',3'-triazolyl)-spirostan-3,5-diols and 6-(4'-Aryl-1',2',3'-triazolyl)-7-hydroxyspirosta-1,4-dien-3-ones: Synthesis and analysis of their cytotoxicity
    Steroids, 2019, V. 151, Article's number 108460 doi:10.1016/j.steroids.2019.108460, IF=2.136
  116. A.V. Artem'ev, M.Z. Shafikov, A. Schinabeck, O.V. Antonova, A.S. Berezin, I.Yu. Bagryanskaya, P.E. Plusnin, H. Yersin
    Sky-blue thermally activated delayed fluorescence (TADF) based on Ag(i) complexes: strong solvation-induced emission enhancement
    Inorg. Chem. Front., 2019, V. 6, N 11, Pp 3168-3176 doi:10.1039/C9QI01069F, IF=5.934
  117. A.V. Artem'ev, M.Z. Shafikov, A. Schinabeck, O.V. Antonova, A.S. Berezin, I.Yu. Bagryanskaya, P.E. Plusnin, H. Yersin
    Sky-blue thermally activated delayed fluorescence (TADF) based on Ag(i) complexes: strong solvation-induced emission enhancement
    Inorg. Chem. Front., 2019, V. 6, N 11, Pp 3168-3176 doi:10.1039/C9QI01069F, IF=5.934
  118. A.V. Artem'ev, M.Z. Shafikov, A. Schinabeck, O.V. Antonova, A.S. Berezin, I.Yu. Bagryanskaya, P.E. Plusnin, H. Yersin
    Sky-blue thermally activated delayed fluorescence (TADF) based on Ag(i) complexes: strong solvation-induced emission enhancement
    Inorg. Chem. Front., 2019, V. 6, N 11, Pp 3168-3176 doi:10.1039/C9QI01069F, IF=5.934
  119. A.V. Artem'ev, M.Z. Shafikov, A. Schinabeck, O.V. Antonova, A.S. Berezin, I.Yu. Bagryanskaya, P.E. Plusnin, H. Yersin
    Sky-blue thermally activated delayed fluorescence (TADF) based on Ag(i) complexes: strong solvation-induced emission enhancement
    Inorg. Chem. Front., 2019, V. 6, N 11, Pp 3168-3176 doi:10.1039/C9QI01069F, IF=5.934
  120. A.V. Artem'ev, M.Z. Shafikov, A. Schinabeck, O.V. Antonova, A.S. Berezin, I.Yu. Bagryanskaya, P.E. Plusnin, H. Yersin
    Sky-blue thermally activated delayed fluorescence (TADF) based on Ag(i) complexes: strong solvation-induced emission enhancement
    Inorg. Chem. Front., 2019, V. 6, N 11, Pp 3168-3176 doi:10.1039/C9QI01069F, IF=5.934
  121. A.V. Artem'ev, M.Z. Shafikov, A. Schinabeck, O.V. Antonova, A.S. Berezin, I.Yu. Bagryanskaya, P.E. Plusnin, H. Yersin
    Sky-blue thermally activated delayed fluorescence (TADF) based on Ag(i) complexes: strong solvation-induced emission enhancement
    Inorg. Chem. Front., 2019, V. 6, N 11, Pp 3168-3176 doi:10.1039/C9QI01069F, IF=5.934
  122. A.V. Artem'ev, M.Z. Shafikov, A. Schinabeck, O.V. Antonova, A.S. Berezin, I.Yu. Bagryanskaya, P.E. Plusnin, H. Yersin
    Sky-blue thermally activated delayed fluorescence (TADF) based on Ag(i) complexes: strong solvation-induced emission enhancement
    Inorg. Chem. Front., 2019, V. 6, N 11, Pp 3168-3176 doi:10.1039/C9QI01069F, IF=5.934
  123. O.I. Artyushin, A.A. Moiseeva, V.V. Zarubaev, A.V. Slita, A.V. Galochkina, A.A. Muryleva, S.S. Borisevich, O.I. Yarovaya, N.F. Salakhutdinov, V.K. Brel
    Synthesis of Camphecene and Cytisine Conjugates Using Click Chemistry Methodology and Study of Their Antiviral Activity
    Chemistry & Biodiversity, 2019, V. 16, N 11, e1900340 doi:10.1002/cbdv.201900340, IF=1.449
  124. O.I. Artyushin, A.A. Moiseeva, V.V. Zarubaev, A.V. Slita, A.V. Galochkina, A.A. Muryleva, S.S. Borisevich, O.I. Yarovaya, N.F. Salakhutdinov, V.K. Brel
    Synthesis of Camphecene and Cytisine Conjugates Using Click Chemistry Methodology and Study of Their Antiviral Activity
    Chemistry & Biodiversity, 2019, V. 16, N 11, e1900340 doi:10.1002/cbdv.201900340, IF=1.449
  125. O.I. Artyushin, A.A. Moiseeva, V.V. Zarubaev, A.V. Slita, A.V. Galochkina, A.A. Muryleva, S.S. Borisevich, O.I. Yarovaya, N.F. Salakhutdinov, V.K. Brel
    Synthesis of Camphecene and Cytisine Conjugates Using Click Chemistry Methodology and Study of Their Antiviral Activity
    Chemistry & Biodiversity, 2019, V. 16, N 11, e1900340 doi:10.1002/cbdv.201900340, IF=1.449
  126. O.I. Artyushin, A.A. Moiseeva, V.V. Zarubaev, A.V. Slita, A.V. Galochkina, A.A. Muryleva, S.S. Borisevich, O.I. Yarovaya, N.F. Salakhutdinov, V.K. Brel
    Synthesis of Camphecene and Cytisine Conjugates Using Click Chemistry Methodology and Study of Their Antiviral Activity
    Chemistry & Biodiversity, 2019, V. 16, N 11, e1900340 doi:10.1002/cbdv.201900340, IF=1.449
  127. O.I. Artyushin, A.A. Moiseeva, V.V. Zarubaev, A.V. Slita, A.V. Galochkina, A.A. Muryleva, S.S. Borisevich, O.I. Yarovaya, N.F. Salakhutdinov, V.K. Brel
    Synthesis of Camphecene and Cytisine Conjugates Using Click Chemistry Methodology and Study of Their Antiviral Activity
    Chemistry & Biodiversity, 2019, V. 16, N 11, e1900340 doi:10.1002/cbdv.201900340, IF=1.449
  128. O.I. Artyushin, A.A. Moiseeva, V.V. Zarubaev, A.V. Slita, A.V. Galochkina, A.A. Muryleva, S.S. Borisevich, O.I. Yarovaya, N.F. Salakhutdinov, V.K. Brel
    Synthesis of Camphecene and Cytisine Conjugates Using Click Chemistry Methodology and Study of Their Antiviral Activity
    Chemistry & Biodiversity, 2019, V. 16, N 11, e1900340 doi:10.1002/cbdv.201900340, IF=1.449
  129. O.I. Artyushin, A.A. Moiseeva, V.V. Zarubaev, A.V. Slita, A.V. Galochkina, A.A. Muryleva, S.S. Borisevich, O.I. Yarovaya, N.F. Salakhutdinov, V.K. Brel
    Synthesis of Camphecene and Cytisine Conjugates Using Click Chemistry Methodology and Study of Their Antiviral Activity
    Chemistry & Biodiversity, 2019, V. 16, N 11, e1900340 doi:10.1002/cbdv.201900340, IF=1.449
  130. O.I. Artyushin, A.A. Moiseeva, V.V. Zarubaev, A.V. Slita, A.V. Galochkina, A.A. Muryleva, S.S. Borisevich, O.I. Yarovaya, N.F. Salakhutdinov, V.K. Brel
    Synthesis of Camphecene and Cytisine Conjugates Using Click Chemistry Methodology and Study of Their Antiviral Activity
    Chemistry & Biodiversity, 2019, V. 16, N 11, e1900340 doi:10.1002/cbdv.201900340, IF=1.449
  131. A.L. Shatsauskas, E.R. Saibulina, Yu.V. Gatilov, A.S. Kostyuchenko, A.S. Fisyuk
    Synthesis of benzo[c][1,7]naphthyridine derivatives
    Chemistry of Heterocyclic Compounds, 2019, V. 55, N 11, pp 1080-1086 doi:10.1007/s10593-019-02581-8, IF=1.492
  132. A.L. Shatsauskas, E.R. Saibulina, Yu.V. Gatilov, A.S. Kostyuchenko, A.S. Fisyuk
    Synthesis of benzo[c][1,7]naphthyridine derivatives
    Chemistry of Heterocyclic Compounds, 2019, V. 55, N 11, pp 1080-1086 doi:10.1007/s10593-019-02581-8, IF=1.492
  133. A.L. Shatsauskas, E.R. Saibulina, Yu.V. Gatilov, A.S. Kostyuchenko, A.S. Fisyuk
    Synthesis of benzo[c][1,7]naphthyridine derivatives
    Chemistry of Heterocyclic Compounds, 2019, V. 55, N 11, pp 1080-1086 doi:10.1007/s10593-019-02581-8, IF=1.492
  134. A.L. Shatsauskas, E.R. Saibulina, Yu.V. Gatilov, A.S. Kostyuchenko, A.S. Fisyuk
    Synthesis of benzo[c][1,7]naphthyridine derivatives
    Chemistry of Heterocyclic Compounds, 2019, V. 55, N 11, pp 1080-1086 doi:10.1007/s10593-019-02581-8, IF=1.492
  135. M.A. Bazhenov, A.V. Shernyukov, M.S. Kupryushkin, D.V. Pyshnyi
    Study of the Staudinger Reaction and Reveal of Key Factors Affecting the Efficacy of Automatic Synthesis of Phosphoryl Guanidinic Oligonucleotide Analogs
    Russian Journal of Bioorganic Chemistry, 2019, V. 45, N 6, Pp 699-708 doi:10.1134/S1068162019060074, IF=0.794
  136. M.A. Bazhenov, A.V. Shernyukov, M.S. Kupryushkin, D.V. Pyshnyi
    Study of the Staudinger Reaction and Reveal of Key Factors Affecting the Efficacy of Automatic Synthesis of Phosphoryl Guanidinic Oligonucleotide Analogs
    Russian Journal of Bioorganic Chemistry, 2019, V. 45, N 6, Pp 699-708 doi:10.1134/S1068162019060074, IF=0.794
  137. А.А. Чепанова, Н.С. Ли-Жуланов, А.С. Сухих,, A. Zafar, J. Reynisson, А.Л. Захаренко, О.Д. Захарова, Д.В. Корчагина, К.П. Волчо, Н.А. Салахутдинов, О.И. Лаврик
    Эффективные ингибиторы тирозил-днк-фосфодиэстеразы 1 на основе монотерпеноидов как потенциальные агенты для противоопухолевой терапии
    Биоорганическая химия, 2019, т. 45, №6, С. 647-655 (Effective Inhibitors of Tyrosyl-DNA Phosphodiesterase 1 Based on Monoterpenoids as Potential Agents for Antitumor Therapy/ A.A. Chepanova, N.S. Li-Zhulanov, A.S. Sukhikh, A. Zafar, J. Reynisson, A.L. Zakharenko, O.D. Zakharova, D.V. Korchagina, K.P. Volcho, N.F. Salakhutdinov, O.I. Lavrik// Russian Journal of Bioorganic Chemistry, 2019, Vol. 45, No. 6, pp. 647-655. doi:10.1134/S1068162019060104), IF=0.794
  138. А.А. Чепанова, Н.С. Ли-Жуланов, А.С. Сухих,, A. Zafar, J. Reynisson, А.Л. Захаренко, О.Д. Захарова, Д.В. Корчагина, К.П. Волчо, Н.А. Салахутдинов, О.И. Лаврик
    Эффективные ингибиторы тирозил-днк-фосфодиэстеразы 1 на основе монотерпеноидов как потенциальные агенты для противоопухолевой терапии
    Биоорганическая химия, 2019, т. 45, №6, С. 647-655 (Effective Inhibitors of Tyrosyl-DNA Phosphodiesterase 1 Based on Monoterpenoids as Potential Agents for Antitumor Therapy/ A.A. Chepanova, N.S. Li-Zhulanov, A.S. Sukhikh, A. Zafar, J. Reynisson, A.L. Zakharenko, O.D. Zakharova, D.V. Korchagina, K.P. Volcho, N.F. Salakhutdinov, O.I. Lavrik// Russian Journal of Bioorganic Chemistry, 2019, Vol. 45, No. 6, pp. 647-655. doi:10.1134/S1068162019060104), IF=0.794
  139. А.А. Чепанова, Н.С. Ли-Жуланов, А.С. Сухих,, A. Zafar, J. Reynisson, А.Л. Захаренко, О.Д. Захарова, Д.В. Корчагина, К.П. Волчо, Н.А. Салахутдинов, О.И. Лаврик
    Эффективные ингибиторы тирозил-днк-фосфодиэстеразы 1 на основе монотерпеноидов как потенциальные агенты для противоопухолевой терапии
    Биоорганическая химия, 2019, т. 45, №6, С. 647-655 (Effective Inhibitors of Tyrosyl-DNA Phosphodiesterase 1 Based on Monoterpenoids as Potential Agents for Antitumor Therapy/ A.A. Chepanova, N.S. Li-Zhulanov, A.S. Sukhikh, A. Zafar, J. Reynisson, A.L. Zakharenko, O.D. Zakharova, D.V. Korchagina, K.P. Volcho, N.F. Salakhutdinov, O.I. Lavrik// Russian Journal of Bioorganic Chemistry, 2019, Vol. 45, No. 6, pp. 647-655. doi:10.1134/S1068162019060104), IF=0.794
  140. А.А. Чепанова, Н.С. Ли-Жуланов, А.С. Сухих,, A. Zafar, J. Reynisson, А.Л. Захаренко, О.Д. Захарова, Д.В. Корчагина, К.П. Волчо, Н.А. Салахутдинов, О.И. Лаврик
    Эффективные ингибиторы тирозил-днк-фосфодиэстеразы 1 на основе монотерпеноидов как потенциальные агенты для противоопухолевой терапии
    Биоорганическая химия, 2019, т. 45, №6, С. 647-655 (Effective Inhibitors of Tyrosyl-DNA Phosphodiesterase 1 Based on Monoterpenoids as Potential Agents for Antitumor Therapy/ A.A. Chepanova, N.S. Li-Zhulanov, A.S. Sukhikh, A. Zafar, J. Reynisson, A.L. Zakharenko, O.D. Zakharova, D.V. Korchagina, K.P. Volcho, N.F. Salakhutdinov, O.I. Lavrik// Russian Journal of Bioorganic Chemistry, 2019, Vol. 45, No. 6, pp. 647-655. doi:10.1134/S1068162019060104), IF=0.794
  141. А.А. Чепанова, Н.С. Ли-Жуланов, А.С. Сухих,, A. Zafar, J. Reynisson, А.Л. Захаренко, О.Д. Захарова, Д.В. Корчагина, К.П. Волчо, Н.А. Салахутдинов, О.И. Лаврик
    Эффективные ингибиторы тирозил-днк-фосфодиэстеразы 1 на основе монотерпеноидов как потенциальные агенты для противоопухолевой терапии
    Биоорганическая химия, 2019, т. 45, №6, С. 647-655 (Effective Inhibitors of Tyrosyl-DNA Phosphodiesterase 1 Based on Monoterpenoids as Potential Agents for Antitumor Therapy/ A.A. Chepanova, N.S. Li-Zhulanov, A.S. Sukhikh, A. Zafar, J. Reynisson, A.L. Zakharenko, O.D. Zakharova, D.V. Korchagina, K.P. Volcho, N.F. Salakhutdinov, O.I. Lavrik// Russian Journal of Bioorganic Chemistry, 2019, Vol. 45, No. 6, pp. 647-655. doi:10.1134/S1068162019060104), IF=0.794
  142. А.А. Чепанова, Н.С. Ли-Жуланов, А.С. Сухих,, A. Zafar, J. Reynisson, А.Л. Захаренко, О.Д. Захарова, Д.В. Корчагина, К.П. Волчо, Н.А. Салахутдинов, О.И. Лаврик
    Эффективные ингибиторы тирозил-днк-фосфодиэстеразы 1 на основе монотерпеноидов как потенциальные агенты для противоопухолевой терапии
    Биоорганическая химия, 2019, т. 45, №6, С. 647-655 (Effective Inhibitors of Tyrosyl-DNA Phosphodiesterase 1 Based on Monoterpenoids as Potential Agents for Antitumor Therapy/ A.A. Chepanova, N.S. Li-Zhulanov, A.S. Sukhikh, A. Zafar, J. Reynisson, A.L. Zakharenko, O.D. Zakharova, D.V. Korchagina, K.P. Volcho, N.F. Salakhutdinov, O.I. Lavrik// Russian Journal of Bioorganic Chemistry, 2019, Vol. 45, No. 6, pp. 647-655. doi:10.1134/S1068162019060104), IF=0.794
  143. А.А. Чепанова, Н.С. Ли-Жуланов, А.С. Сухих,, A. Zafar, J. Reynisson, А.Л. Захаренко, О.Д. Захарова, Д.В. Корчагина, К.П. Волчо, Н.А. Салахутдинов, О.И. Лаврик
    Эффективные ингибиторы тирозил-днк-фосфодиэстеразы 1 на основе монотерпеноидов как потенциальные агенты для противоопухолевой терапии
    Биоорганическая химия, 2019, т. 45, №6, С. 647-655 (Effective Inhibitors of Tyrosyl-DNA Phosphodiesterase 1 Based on Monoterpenoids as Potential Agents for Antitumor Therapy/ A.A. Chepanova, N.S. Li-Zhulanov, A.S. Sukhikh, A. Zafar, J. Reynisson, A.L. Zakharenko, O.D. Zakharova, D.V. Korchagina, K.P. Volcho, N.F. Salakhutdinov, O.I. Lavrik// Russian Journal of Bioorganic Chemistry, 2019, Vol. 45, No. 6, pp. 647-655. doi:10.1134/S1068162019060104), IF=0.794
  144. М.В. Хвостов, Т.Г. Толстикова, С.А. Борисов, А.В. Душкин
    Применение природных полисахаридов в фармацевтике
    Биоорганическая химия, 2019, том 45, № 6, с. 563-575 (doi:10.1134/S0132342319060241) (Application of Natural Polysaccharides in Pharmaceutics/ M.V. Khvostov, T.G. Tolstikova, S.A. Borisov, A.V. Dushkin// Russian Journal of Bioorganic Chemistry, 2019, V. 45, N 6, Pp 438-450 doi:10.1134/S1068162019060219), IF=0.794
  145. Т.П. Кукина, И.В. Хан
    Липофильные компоненты мытников PEDICULARIS STRIATA PALLAS и PEDICULARIS FLAVA PALLAS
    Химия растительного сырья. 2019. № 4. С. 113-118. (Lipophilic constituents of pedicularis striata pallas и pedicularis flava pallas/ Kukina, T.P., Khan, I.V.// Khimiya Rastitel'nogo Syr'ya, Issue 4, 1 January 2020, Pages 113-118 doi:10.14258/jcprm.2019044952)
  146. П.М. Васильев, О.А. Лузина, Д.А. Бабков, Д.Т. Аппазова, Н.Ф. Салахутдинов, А.А. Спасов
    Исследование зависимости между структурой хемотипов некоторых природных соединений и спектром их таргетных активностей, соотносимых с гипогликемическим действием
    Журнал структурной химии. 2019. Т. 60. № 11. С. 1901-1906 DOI: 10.26902/JSC_id48260. (Studying dependences between the chemotype structure of some natural compounds and the spectrum of their targeted activities correlated with the hypoglycemic effect/ P.M. Vasilyev, O.A. Luzina, D.A. Babkov, D.T. Appazova, N.F. Salakhutdinov, A.A. Spasov// J Struct Chem., 2019, V. 60, N 11, Pp 1827-1832 doi:10.1134/S0022476619110179), IF=0.541
  147. П.М. Васильев, О.А. Лузина, Д.А. Бабков, Д.Т. Аппазова, Н.Ф. Салахутдинов, А.А. Спасов
    Исследование зависимости между структурой хемотипов некоторых природных соединений и спектром их таргетных активностей, соотносимых с гипогликемическим действием
    Журнал структурной химии. 2019. Т. 60. № 11. С. 1901-1906 DOI: 10.26902/JSC_id48260. (Studying dependences between the chemotype structure of some natural compounds and the spectrum of their targeted activities correlated with the hypoglycemic effect/ P.M. Vasilyev, O.A. Luzina, D.A. Babkov, D.T. Appazova, N.F. Salakhutdinov, A.A. Spasov// J Struct Chem., 2019, V. 60, N 11, Pp 1827-1832 doi:10.1134/S0022476619110179), IF=0.541
  148. П.М. Васильев, О.А. Лузина, Д.А. Бабков, Д.Т. Аппазова, Н.Ф. Салахутдинов, А.А. Спасов
    Исследование зависимости между структурой хемотипов некоторых природных соединений и спектром их таргетных активностей, соотносимых с гипогликемическим действием
    Журнал структурной химии. 2019. Т. 60. № 11. С. 1901-1906 DOI: 10.26902/JSC_id48260. (Studying dependences between the chemotype structure of some natural compounds and the spectrum of their targeted activities correlated with the hypoglycemic effect/ P.M. Vasilyev, O.A. Luzina, D.A. Babkov, D.T. Appazova, N.F. Salakhutdinov, A.A. Spasov// J Struct Chem., 2019, V. 60, N 11, Pp 1827-1832 doi:10.1134/S0022476619110179), IF=0.541
  149. П.М. Васильев, О.А. Лузина, Д.А. Бабков, Д.Т. Аппазова, Н.Ф. Салахутдинов, А.А. Спасов
    Исследование зависимости между структурой хемотипов некоторых природных соединений и спектром их таргетных активностей, соотносимых с гипогликемическим действием
    Журнал структурной химии. 2019. Т. 60. № 11. С. 1901-1906 DOI: 10.26902/JSC_id48260. (Studying dependences between the chemotype structure of some natural compounds and the spectrum of their targeted activities correlated with the hypoglycemic effect/ P.M. Vasilyev, O.A. Luzina, D.A. Babkov, D.T. Appazova, N.F. Salakhutdinov, A.A. Spasov// J Struct Chem., 2019, V. 60, N 11, Pp 1827-1832 doi:10.1134/S0022476619110179), IF=0.541
  150. Л.М. Горностаев, О.И. Фоминых, Т.И. Лаврикова, Ю.Г. Халявина, Ю.В. Гатилов, Г.А. Сташина
    Особенности взаимодействия 2-амино-1,4-нафтохинонов с 2,2-дигидрокси-1h-инден-1,3(2h)-дионом
    Журнал органической химии. 2019. Т. 55. № 11. С. 1751-1761. (Peculiarities of Interaction of 2-Amino-1,4-naphthoquinones with 2,2-Dihydroxy-1H-inden-1,3(2H)-dione/ L.M. Gornostaev, O.I. Fominykh, T.I. Lavrikova, Yu.G. Khalyavina, Yu.V. Gatilov, G.A.. Stashina// Russian Journal of Organic Chemistry, 2019, Vol. 55, No. 11, pp. 1716-1725 (doi:10.1134/S0514749219110132) doi:10.1134/S1070428019110125), IF=0.751
  151. Л.М. Горностаев, О.И. Фоминых, Т.И. Лаврикова, Ю.Г. Халявина, Ю.В. Гатилов, Г.А. Сташина
    Особенности взаимодействия 2-амино-1,4-нафтохинонов с 2,2-дигидрокси-1h-инден-1,3(2h)-дионом
    Журнал органической химии. 2019. Т. 55. № 11. С. 1751-1761. (Peculiarities of Interaction of 2-Amino-1,4-naphthoquinones with 2,2-Dihydroxy-1H-inden-1,3(2H)-dione/ L.M. Gornostaev, O.I. Fominykh, T.I. Lavrikova, Yu.G. Khalyavina, Yu.V. Gatilov, G.A.. Stashina// Russian Journal of Organic Chemistry, 2019, Vol. 55, No. 11, pp. 1716-1725 (doi:10.1134/S0514749219110132) doi:10.1134/S1070428019110125), IF=0.751
  152. Л.М. Горностаев, О.И. Фоминых, Т.И. Лаврикова, Ю.Г. Халявина, Ю.В. Гатилов, Г.А. Сташина
    Особенности взаимодействия 2-амино-1,4-нафтохинонов с 2,2-дигидрокси-1h-инден-1,3(2h)-дионом
    Журнал органической химии. 2019. Т. 55. № 11. С. 1751-1761. (Peculiarities of Interaction of 2-Amino-1,4-naphthoquinones with 2,2-Dihydroxy-1H-inden-1,3(2H)-dione/ L.M. Gornostaev, O.I. Fominykh, T.I. Lavrikova, Yu.G. Khalyavina, Yu.V. Gatilov, G.A.. Stashina// Russian Journal of Organic Chemistry, 2019, Vol. 55, No. 11, pp. 1716-1725 (doi:10.1134/S0514749219110132) doi:10.1134/S1070428019110125), IF=0.751
  153. Л.М. Горностаев, О.И. Фоминых, Т.И. Лаврикова, Ю.Г. Халявина, Ю.В. Гатилов, Г.А. Сташина
    Особенности взаимодействия 2-амино-1,4-нафтохинонов с 2,2-дигидрокси-1h-инден-1,3(2h)-дионом
    Журнал органической химии. 2019. Т. 55. № 11. С. 1751-1761. (Peculiarities of Interaction of 2-Amino-1,4-naphthoquinones with 2,2-Dihydroxy-1H-inden-1,3(2H)-dione/ L.M. Gornostaev, O.I. Fominykh, T.I. Lavrikova, Yu.G. Khalyavina, Yu.V. Gatilov, G.A.. Stashina// Russian Journal of Organic Chemistry, 2019, Vol. 55, No. 11, pp. 1716-1725 (doi:10.1134/S0514749219110132) doi:10.1134/S1070428019110125), IF=0.751
  154. Л.М. Горностаев, О.И. Фоминых, Т.И. Лаврикова, Ю.Г. Халявина, Ю.В. Гатилов, Г.А. Сташина
    Особенности взаимодействия 2-амино-1,4-нафтохинонов с 2,2-дигидрокси-1h-инден-1,3(2h)-дионом
    Журнал органической химии. 2019. Т. 55. № 11. С. 1751-1761. (Peculiarities of Interaction of 2-Amino-1,4-naphthoquinones with 2,2-Dihydroxy-1H-inden-1,3(2H)-dione/ L.M. Gornostaev, O.I. Fominykh, T.I. Lavrikova, Yu.G. Khalyavina, Yu.V. Gatilov, G.A.. Stashina// Russian Journal of Organic Chemistry, 2019, Vol. 55, No. 11, pp. 1716-1725 (doi:10.1134/S0514749219110132) doi:10.1134/S1070428019110125), IF=0.751
  155. L. Politanskaya, N. Troshkova, E. Tretyakov, Ch. Xi
    Synthesis of polyfluorinated bezofurans
    Journal of Fluorine Chemistry, Volume 227, November 2019, 109371 doi:10.1016/j.jfluchem.2019.109371, IF=2.055
  156. M.M. Shmakov, V.V. Bardin, S.A. Prikhod'ko, N.Yu. Adonin
    Preparation of heptafluoronaphthyllithiums and -magnesiums: An unexpected difference in the reactivity of isomers C10F7H and C10F7Br towards organolithium and organomagnesium compounds
    Journal of Organometallic Chemistry, 2019, V. 899, 120889 doi:10.1016/j.jorganchem.2019.120889, IF=2.65
  157. M.M. Shmakov, V.V. Bardin, S.A. Prikhod'ko, N.Yu. Adonin
    Preparation of heptafluoronaphthyllithiums and -magnesiums: An unexpected difference in the reactivity of isomers C10F7H and C10F7Br towards organolithium and organomagnesium compounds
    Journal of Organometallic Chemistry, 2019, V. 899, 120889 doi:10.1016/j.jorganchem.2019.120889, IF=2.65
  158. M.M. Shmakov, V.V. Bardin, S.A. Prikhod'ko, N.Yu. Adonin
    Preparation of heptafluoronaphthyllithiums and -magnesiums: An unexpected difference in the reactivity of isomers C10F7H and C10F7Br towards organolithium and organomagnesium compounds
    Journal of Organometallic Chemistry, 2019, V. 899, 120889 doi:10.1016/j.jorganchem.2019.120889, IF=2.65
  159. A.S. Filimonov, A.A. Chepanova, O.A. Luzina, A.L. Zakharenko, O.D. Zakharova, E.S. Ilina, N.S. Dyrkheeva, M.S. Kuprushkin, A.V. Kolotaev, D.S. Khachatryan, J. Patel, I.K. H. Leung, R. Chand, D.M. Ayine-Tora, J. Reynisson, K.P. Volcho, N.F. Salakhutdinov, O.I. Lavrik
    New Hydrazinothiazole Derivatives of Usnic Acid as Potent Tdp1 Inhibitors
    Molecules 2019, 24(20), 3711 doi:10.3390/molecules24203711, IF=3.59
  160. A.S. Filimonov, A.A. Chepanova, O.A. Luzina, A.L. Zakharenko, O.D. Zakharova, E.S. Ilina, N.S. Dyrkheeva, M.S. Kuprushkin, A.V. Kolotaev, D.S. Khachatryan, J. Patel, I.K. H. Leung, R. Chand, D.M. Ayine-Tora, J. Reynisson, K.P. Volcho, N.F. Salakhutdinov, O.I. Lavrik
    New Hydrazinothiazole Derivatives of Usnic Acid as Potent Tdp1 Inhibitors
    Molecules 2019, 24(20), 3711 doi:10.3390/molecules24203711, IF=3.59
  161. A.S. Filimonov, A.A. Chepanova, O.A. Luzina, A.L. Zakharenko, O.D. Zakharova, E.S. Ilina, N.S. Dyrkheeva, M.S. Kuprushkin, A.V. Kolotaev, D.S. Khachatryan, J. Patel, I.K. H. Leung, R. Chand, D.M. Ayine-Tora, J. Reynisson, K.P. Volcho, N.F. Salakhutdinov, O.I. Lavrik
    New Hydrazinothiazole Derivatives of Usnic Acid as Potent Tdp1 Inhibitors
    Molecules 2019, 24(20), 3711 doi:10.3390/molecules24203711, IF=3.59
  162. A.S. Filimonov, A.A. Chepanova, O.A. Luzina, A.L. Zakharenko, O.D. Zakharova, E.S. Ilina, N.S. Dyrkheeva, M.S. Kuprushkin, A.V. Kolotaev, D.S. Khachatryan, J. Patel, I.K. H. Leung, R. Chand, D.M. Ayine-Tora, J. Reynisson, K.P. Volcho, N.F. Salakhutdinov, O.I. Lavrik
    New Hydrazinothiazole Derivatives of Usnic Acid as Potent Tdp1 Inhibitors
    Molecules 2019, 24(20), 3711 doi:10.3390/molecules24203711, IF=3.59
  163. A.S. Filimonov, A.A. Chepanova, O.A. Luzina, A.L. Zakharenko, O.D. Zakharova, E.S. Ilina, N.S. Dyrkheeva, M.S. Kuprushkin, A.V. Kolotaev, D.S. Khachatryan, J. Patel, I.K. H. Leung, R. Chand, D.M. Ayine-Tora, J. Reynisson, K.P. Volcho, N.F. Salakhutdinov, O.I. Lavrik
    New Hydrazinothiazole Derivatives of Usnic Acid as Potent Tdp1 Inhibitors
    Molecules 2019, 24(20), 3711 doi:10.3390/molecules24203711, IF=3.59
  164. A.S. Filimonov, A.A. Chepanova, O.A. Luzina, A.L. Zakharenko, O.D. Zakharova, E.S. Ilina, N.S. Dyrkheeva, M.S. Kuprushkin, A.V. Kolotaev, D.S. Khachatryan, J. Patel, I.K. H. Leung, R. Chand, D.M. Ayine-Tora, J. Reynisson, K.P. Volcho, N.F. Salakhutdinov, O.I. Lavrik
    New Hydrazinothiazole Derivatives of Usnic Acid as Potent Tdp1 Inhibitors
    Molecules 2019, 24(20), 3711 doi:10.3390/molecules24203711, IF=3.59
  165. A.S. Filimonov, A.A. Chepanova, O.A. Luzina, A.L. Zakharenko, O.D. Zakharova, E.S. Ilina, N.S. Dyrkheeva, M.S. Kuprushkin, A.V. Kolotaev, D.S. Khachatryan, J. Patel, I.K. H. Leung, R. Chand, D.M. Ayine-Tora, J. Reynisson, K.P. Volcho, N.F. Salakhutdinov, O.I. Lavrik
    New Hydrazinothiazole Derivatives of Usnic Acid as Potent Tdp1 Inhibitors
    Molecules 2019, 24(20), 3711 doi:10.3390/molecules24203711, IF=3.59
  166. A.S. Filimonov, A.A. Chepanova, O.A. Luzina, A.L. Zakharenko, O.D. Zakharova, E.S. Ilina, N.S. Dyrkheeva, M.S. Kuprushkin, A.V. Kolotaev, D.S. Khachatryan, J. Patel, I.K. H. Leung, R. Chand, D.M. Ayine-Tora, J. Reynisson, K.P. Volcho, N.F. Salakhutdinov, O.I. Lavrik
    New Hydrazinothiazole Derivatives of Usnic Acid as Potent Tdp1 Inhibitors
    Molecules 2019, 24(20), 3711 doi:10.3390/molecules24203711, IF=3.59
  167. A.S. Filimonov, A.A. Chepanova, O.A. Luzina, A.L. Zakharenko, O.D. Zakharova, E.S. Ilina, N.S. Dyrkheeva, M.S. Kuprushkin, A.V. Kolotaev, D.S. Khachatryan, J. Patel, I.K. H. Leung, R. Chand, D.M. Ayine-Tora, J. Reynisson, K.P. Volcho, N.F. Salakhutdinov, O.I. Lavrik
    New Hydrazinothiazole Derivatives of Usnic Acid as Potent Tdp1 Inhibitors
    Molecules 2019, 24(20), 3711 doi:10.3390/molecules24203711, IF=3.59
  168. A.S. Filimonov, A.A. Chepanova, O.A. Luzina, A.L. Zakharenko, O.D. Zakharova, E.S. Ilina, N.S. Dyrkheeva, M.S. Kuprushkin, A.V. Kolotaev, D.S. Khachatryan, J. Patel, I.K. H. Leung, R. Chand, D.M. Ayine-Tora, J. Reynisson, K.P. Volcho, N.F. Salakhutdinov, O.I. Lavrik
    New Hydrazinothiazole Derivatives of Usnic Acid as Potent Tdp1 Inhibitors
    Molecules 2019, 24(20), 3711 doi:10.3390/molecules24203711, IF=3.59
  169. A.S. Filimonov, A.A. Chepanova, O.A. Luzina, A.L. Zakharenko, O.D. Zakharova, E.S. Ilina, N.S. Dyrkheeva, M.S. Kuprushkin, A.V. Kolotaev, D.S. Khachatryan, J. Patel, I.K. H. Leung, R. Chand, D.M. Ayine-Tora, J. Reynisson, K.P. Volcho, N.F. Salakhutdinov, O.I. Lavrik
    New Hydrazinothiazole Derivatives of Usnic Acid as Potent Tdp1 Inhibitors
    Molecules 2019, 24(20), 3711 doi:10.3390/molecules24203711, IF=3.59
  170. A.S. Filimonov, A.A. Chepanova, O.A. Luzina, A.L. Zakharenko, O.D. Zakharova, E.S. Ilina, N.S. Dyrkheeva, M.S. Kuprushkin, A.V. Kolotaev, D.S. Khachatryan, J. Patel, I.K. H. Leung, R. Chand, D.M. Ayine-Tora, J. Reynisson, K.P. Volcho, N.F. Salakhutdinov, O.I. Lavrik
    New Hydrazinothiazole Derivatives of Usnic Acid as Potent Tdp1 Inhibitors
    Molecules 2019, 24(20), 3711 doi:10.3390/molecules24203711, IF=3.59
  171. A.S. Filimonov, A.A. Chepanova, O.A. Luzina, A.L. Zakharenko, O.D. Zakharova, E.S. Ilina, N.S. Dyrkheeva, M.S. Kuprushkin, A.V. Kolotaev, D.S. Khachatryan, J. Patel, I.K. H. Leung, R. Chand, D.M. Ayine-Tora, J. Reynisson, K.P. Volcho, N.F. Salakhutdinov, O.I. Lavrik
    New Hydrazinothiazole Derivatives of Usnic Acid as Potent Tdp1 Inhibitors
    Molecules 2019, 24(20), 3711 doi:10.3390/molecules24203711, IF=3.59
  172. A.V. Lipeeva, D.O. Zakharov, Yu.V. Gatilov, M.A. Pokrovskii, A.G. Pokrovskii, E.E. Shults
    Design and Synthesis of 3-(N-Substituted)aminocoumarins as Anticancer Agents from 3-Bromopeuruthenicin
    ChemistrySelect, 2019, V. 4, N 34, Pp 10197-10201 doi:10.1002/slct.201901377, IF=1.716
  173. A.V. Lipeeva, D.O. Zakharov, Yu.V. Gatilov, M.A. Pokrovskii, A.G. Pokrovskii, E.E. Shults
    Design and Synthesis of 3-(N-Substituted)aminocoumarins as Anticancer Agents from 3-Bromopeuruthenicin
    ChemistrySelect, 2019, V. 4, N 34, Pp 10197-10201 doi:10.1002/slct.201901377, IF=1.716
  174. O.V. Ardashov, A.V. Pavlova, A.K. Mahato, Yu. Sidorova, E.A. Morozova, D.V. Korchagina, G.E. Salnikov, A.M. Genaev, O.S. Patrusheva, N. Li-Zhulanov, T.G. Tolstikova, K.P. Volcho, N. Salakhutdinov
    A novel small molecule supports the survival of cultured dopamine neurons and may restore the dopaminergic innervation of the brain in the MPTP mouse model of Parkinson's disease
    ACS Chemical Neuroscience, 2019, V. 10, N 10, Pp 4337-4349 doi:10.1021/acschemneuro.9b00396, IF=3.861
  175. O.V. Ardashov, A.V. Pavlova, A.K. Mahato, Yu. Sidorova, E.A. Morozova, D.V. Korchagina, G.E. Salnikov, A.M. Genaev, O.S. Patrusheva, N. Li-Zhulanov, T.G. Tolstikova, K.P. Volcho, N. Salakhutdinov
    A novel small molecule supports the survival of cultured dopamine neurons and may restore the dopaminergic innervation of the brain in the MPTP mouse model of Parkinson's disease
    ACS Chemical Neuroscience, 2019, V. 10, N 10, Pp 4337-4349 doi:10.1021/acschemneuro.9b00396, IF=3.861
  176. S.A. Popov, M.D. Semenova, D.S. Baev, I.V. Sorokina, N.A. Zhukova, T.S. Frolova, T.G. Tolstikova, E.E. Shults, M. Turks
    Lupane-type conjugates with aminoacids, 1,3,4- oxadiazole and 1,2,5-oxadiazole-2-oxide derivatives: synthesis, anti-inflammatory activity and in silico evaluation of target affinity
    Steroids, 2019, V.150, 108443 doi:10.1016/j.steroids.2019.108443, IF=2.136
  177. S.A. Popov, M.D. Semenova, D.S. Baev, I.V. Sorokina, N.A. Zhukova, T.S. Frolova, T.G. Tolstikova, E.E. Shults, M. Turks
    Lupane-type conjugates with aminoacids, 1,3,4- oxadiazole and 1,2,5-oxadiazole-2-oxide derivatives: synthesis, anti-inflammatory activity and in silico evaluation of target affinity
    Steroids, 2019, V.150, 108443 doi:10.1016/j.steroids.2019.108443, IF=2.136
  178. A.V. Artem'ev, M.R. Ryzhikov, A.S. Berezin, I.E. Kolesnikov, D.G. Samsonenko, I.Yu. Bagryanskaya
    Photoluminescence of Ag(I) complexes with a square-planar coordination geometry: the first observation
    Inorg. Chem. Front., 2019, V. 6, N 10, Pp 2855-2864 doi:10.1039/C9QI00657E, IF=5.934
  179. A.V. Artem'ev, M.R. Ryzhikov, A.S. Berezin, I.E. Kolesnikov, D.G. Samsonenko, I.Yu. Bagryanskaya
    Photoluminescence of Ag(I) complexes with a square-planar coordination geometry: the first observation
    Inorg. Chem. Front., 2019, V. 6, N 10, Pp 2855-2864 doi:10.1039/C9QI00657E, IF=5.934
  180. A.V. Artem'ev, M.R. Ryzhikov, A.S. Berezin, I.E. Kolesnikov, D.G. Samsonenko, I.Yu. Bagryanskaya
    Photoluminescence of Ag(I) complexes with a square-planar coordination geometry: the first observation
    Inorg. Chem. Front., 2019, V. 6, N 10, Pp 2855-2864 doi:10.1039/C9QI00657E, IF=5.934
  181. A.V. Artem'ev, M.R. Ryzhikov, A.S. Berezin, I.E. Kolesnikov, D.G. Samsonenko, I.Yu. Bagryanskaya
    Photoluminescence of Ag(I) complexes with a square-planar coordination geometry: the first observation
    Inorg. Chem. Front., 2019, V. 6, N 10, Pp 2855-2864 doi:10.1039/C9QI00657E, IF=5.934
  182. A.V. Artem'ev, M.R. Ryzhikov, A.S. Berezin, I.E. Kolesnikov, D.G. Samsonenko, I.Yu. Bagryanskaya
    Photoluminescence of Ag(I) complexes with a square-planar coordination geometry: the first observation
    Inorg. Chem. Front., 2019, V. 6, N 10, Pp 2855-2864 doi:10.1039/C9QI00657E, IF=5.934
  183. M.F. Kasakin, A.D. Rogachev, E.V. Predtechenskaya, V.J. Zaigraev, V.V. Koval, A.G. Pokrovsky
    Targeted metabolomics approach for identification of relapsing–remitting multiple sclerosis markers and evaluation of diagnostic models
    Med. Chem. Commun., 2019, N. 10, 1803-1809 doi:10.1039/C9MD00253G, IF=2.394
  184. M.F. Kasakin, A.D. Rogachev, E.V. Predtechenskaya, V.J. Zaigraev, V.V. Koval, A.G. Pokrovsky
    Targeted metabolomics approach for identification of relapsing–remitting multiple sclerosis markers and evaluation of diagnostic models
    Med. Chem. Commun., 2019, N. 10, 1803-1809 doi:10.1039/C9MD00253G, IF=2.394
  185. M.F. Kasakin, A.D. Rogachev, E.V. Predtechenskaya, V.J. Zaigraev, V.V. Koval, A.G. Pokrovsky
    Targeted metabolomics approach for identification of relapsing–remitting multiple sclerosis markers and evaluation of diagnostic models
    Med. Chem. Commun., 2019, N. 10, 1803-1809 doi:10.1039/C9MD00253G, IF=2.394
  186. M.F. Kasakin, A.D. Rogachev, E.V. Predtechenskaya, V.J. Zaigraev, V.V. Koval, A.G. Pokrovsky
    Targeted metabolomics approach for identification of relapsing–remitting multiple sclerosis markers and evaluation of diagnostic models
    Med. Chem. Commun., 2019, N. 10, 1803-1809 doi:10.1039/C9MD00253G, IF=2.394
  187. M.F. Kasakin, A.D. Rogachev, E.V. Predtechenskaya, V.J. Zaigraev, V.V. Koval, A.G. Pokrovsky
    Targeted metabolomics approach for identification of relapsing–remitting multiple sclerosis markers and evaluation of diagnostic models
    Med. Chem. Commun., 2019, N. 10, 1803-1809 doi:10.1039/C9MD00253G, IF=2.394
  188. N.A. Semenov, E.A. Radiush, E.A. Chulanova, A.M. Z. Slawin, J.D. Woollins, E.M. Kadilenko, I.Yu. Bagryanskaya, I.G. Irtegova, A.S. Bogomyakov, L.A. Shundrin, N.P. Gritsan, A.V. Zibarev
    Design, synthesis and isolation of a new 1,2,5-selenadiazolidyl and structural and magnetic characterization of its alkali-metal salts
    New J. Chem., 2019, V. 43, N 41, Pp 16331-16337 doi:10.1039/C9NJ04069B, IF=3.69
  189. N.A. Semenov, E.A. Radiush, E.A. Chulanova, A.M. Z. Slawin, J.D. Woollins, E.M. Kadilenko, I.Yu. Bagryanskaya, I.G. Irtegova, A.S. Bogomyakov, L.A. Shundrin, N.P. Gritsan, A.V. Zibarev
    Design, synthesis and isolation of a new 1,2,5-selenadiazolidyl and structural and magnetic characterization of its alkali-metal salts
    New J. Chem., 2019, V. 43, N 41, Pp 16331-16337 doi:10.1039/C9NJ04069B, IF=3.69
  190. N.A. Semenov, E.A. Radiush, E.A. Chulanova, A.M. Z. Slawin, J.D. Woollins, E.M. Kadilenko, I.Yu. Bagryanskaya, I.G. Irtegova, A.S. Bogomyakov, L.A. Shundrin, N.P. Gritsan, A.V. Zibarev
    Design, synthesis and isolation of a new 1,2,5-selenadiazolidyl and structural and magnetic characterization of its alkali-metal salts
    New J. Chem., 2019, V. 43, N 41, Pp 16331-16337 doi:10.1039/C9NJ04069B, IF=3.69
  191. N.A. Semenov, E.A. Radiush, E.A. Chulanova, A.M. Z. Slawin, J.D. Woollins, E.M. Kadilenko, I.Yu. Bagryanskaya, I.G. Irtegova, A.S. Bogomyakov, L.A. Shundrin, N.P. Gritsan, A.V. Zibarev
    Design, synthesis and isolation of a new 1,2,5-selenadiazolidyl and structural and magnetic characterization of its alkali-metal salts
    New J. Chem., 2019, V. 43, N 41, Pp 16331-16337 doi:10.1039/C9NJ04069B, IF=3.69
  192. N.A. Semenov, E.A. Radiush, E.A. Chulanova, A.M. Z. Slawin, J.D. Woollins, E.M. Kadilenko, I.Yu. Bagryanskaya, I.G. Irtegova, A.S. Bogomyakov, L.A. Shundrin, N.P. Gritsan, A.V. Zibarev
    Design, synthesis and isolation of a new 1,2,5-selenadiazolidyl and structural and magnetic characterization of its alkali-metal salts
    New J. Chem., 2019, V. 43, N 41, Pp 16331-16337 doi:10.1039/C9NJ04069B, IF=3.69
  193. М.А. Ленский, Э.Э. Шульц, Д.В. Корабельников, А.В. Ожогин, А.Н. Новицкий
    Синтез полиэфиров двухатомных фенолов и борной кислоты и их взаимодействие с формальдегидом
    Высокомолекулярные соединения. Серия Б. 2019. Т. 61. № 5. С. 335-344 (Synthesis of Polyesters of Diatomic Phenols and Boric Acid and Their Interaction with Formaldehyde/ M. A. Lenskiy, E. E. Shul'ts, D. V. Korabel'nikov, A. V. Ozhogin, A. N. Novitskiy// Polymer Science, Series B, 2019, V. 61, N 5, pp 530-539 doi:10.1134/S1560090419050105), IF=0.907
  194. М.А. Ленский, Э.Э. Шульц, Д.В. Корабельников, А.В. Ожогин, А.Н. Новицкий
    Синтез полиэфиров двухатомных фенолов и борной кислоты и их взаимодействие с формальдегидом
    Высокомолекулярные соединения. Серия Б. 2019. Т. 61. № 5. С. 335-344 (Synthesis of Polyesters of Diatomic Phenols and Boric Acid and Their Interaction with Formaldehyde/ M. A. Lenskiy, E. E. Shul'ts, D. V. Korabel'nikov, A. V. Ozhogin, A. N. Novitskiy// Polymer Science, Series B, 2019, V. 61, N 5, pp 530-539 doi:10.1134/S1560090419050105), IF=0.907
  195. М.А. Ленский, Э.Э. Шульц, Д.В. Корабельников, А.В. Ожогин, А.Н. Новицкий
    Синтез полиэфиров двухатомных фенолов и борной кислоты и их взаимодействие с формальдегидом
    Высокомолекулярные соединения. Серия Б. 2019. Т. 61. № 5. С. 335-344 (Synthesis of Polyesters of Diatomic Phenols and Boric Acid and Their Interaction with Formaldehyde/ M. A. Lenskiy, E. E. Shul'ts, D. V. Korabel'nikov, A. V. Ozhogin, A. N. Novitskiy// Polymer Science, Series B, 2019, V. 61, N 5, pp 530-539 doi:10.1134/S1560090419050105), IF=0.907
  196. М.А. Ленский, Э.Э. Шульц, Д.В. Корабельников, А.В. Ожогин, А.Н. Новицкий
    Синтез полиэфиров двухатомных фенолов и борной кислоты и их взаимодействие с формальдегидом
    Высокомолекулярные соединения. Серия Б. 2019. Т. 61. № 5. С. 335-344 (Synthesis of Polyesters of Diatomic Phenols and Boric Acid and Their Interaction with Formaldehyde/ M. A. Lenskiy, E. E. Shul'ts, D. V. Korabel'nikov, A. V. Ozhogin, A. N. Novitskiy// Polymer Science, Series B, 2019, V. 61, N 5, pp 530-539 doi:10.1134/S1560090419050105), IF=0.907
  197. Е.В. Карпова, И.К. Шундрина, Е. Орлова, А. Коновалов
    Ароматические и минеральные вещества в тканях образцов яровой мягкой пшеницы Triticum aestivum L., различающихся по устойчивости к бурой ржавчине (возбудитель Puccinia triticina Erikss.)
    Химия растительного сырья, 2019, 4, стр. 87-95 doi:10.14258/jcprm.2019045238
  198. Е.В. Карпова, И.К. Шундрина, Е. Орлова, А. Коновалов
    Ароматические и минеральные вещества в тканях образцов яровой мягкой пшеницы Triticum aestivum L., различающихся по устойчивости к бурой ржавчине (возбудитель Puccinia triticina Erikss.)
    Химия растительного сырья, 2019, 4, стр. 87-95 doi:10.14258/jcprm.2019045238
  199. Т.В. Родионова, Д.С. Одинцов, А.Ю. Манаков, В.Ю. Комаров
    Ионные клатратные гидраты нитрата тетра-н-бутиламмония (TBANO3) и смешанного TBA(NO3,OH): новые сверхструктуры тетрагональной структуры I
    Журнал структурной химии, 2019, Т. 60, N 10, Сс 1726-1735 DOI: 10.26902/JSC_id48002 (Ionic Clathrate Hydrates of Tetra-n-Butylammonium Nitrate (TBANO3) and Mixed TBA(NO3,OH): Novel Superstructures of Tetragonal Structure I/ T. V. Rodionova, D. S. Odintsov, A. Yu. Manakov, V. Yu. Komarov// Journal of Structural Chemistry, V. 60, N 10, pp 1660-1669 doi:10.1134/S0022476619100123), IF=0.541
  200. Т.В. Родионова, Д.С. Одинцов, А.Ю. Манаков, В.Ю. Комаров
    Ионные клатратные гидраты нитрата тетра-н-бутиламмония (TBANO3) и смешанного TBA(NO3,OH): новые сверхструктуры тетрагональной структуры I
    Журнал структурной химии, 2019, Т. 60, N 10, Сс 1726-1735 DOI: 10.26902/JSC_id48002 (Ionic Clathrate Hydrates of Tetra-n-Butylammonium Nitrate (TBANO3) and Mixed TBA(NO3,OH): Novel Superstructures of Tetragonal Structure I/ T. V. Rodionova, D. S. Odintsov, A. Yu. Manakov, V. Yu. Komarov// Journal of Structural Chemistry, V. 60, N 10, pp 1660-1669 doi:10.1134/S0022476619100123), IF=0.541
  201. Т.В. Родионова, Д.С. Одинцов, А.Ю. Манаков, В.Ю. Комаров
    Ионные клатратные гидраты нитрата тетра-н-бутиламмония (TBANO3) и смешанного TBA(NO3,OH): новые сверхструктуры тетрагональной структуры I
    Журнал структурной химии, 2019, Т. 60, N 10, Сс 1726-1735 DOI: 10.26902/JSC_id48002 (Ionic Clathrate Hydrates of Tetra-n-Butylammonium Nitrate (TBANO3) and Mixed TBA(NO3,OH): Novel Superstructures of Tetragonal Structure I/ T. V. Rodionova, D. S. Odintsov, A. Yu. Manakov, V. Yu. Komarov// Journal of Structural Chemistry, V. 60, N 10, pp 1660-1669 doi:10.1134/S0022476619100123), IF=0.541
  202. Рудаков Д.А., Генаев А.М., Дикусар Е.А., Зверева Т.Д., Зубрейчук З.П., Поткин В.И.
    Галогенирование и μh-таутомерия 7-бензил-7,8-дикарба-нидо-ундекаборат(-1) аниона
    Журнал органической химии. 2019. Т. 55. № 10. С. 1540-1550 (Halogenation and μH-Tautomerism of 7-Benzyl-7,8-dicarba-nido-undecaborate(-1) Anion/ D.A. Rudakov, A.M. Genaev, E.A. Dikusar, T.D. Zvereva, Z.P. Zubreichuk, V.I.Potkin// Russian Journal of Organic Chemistry, 2019, V. 55, N 10, pp 1495-1503 doi:10.1134/S1070428019100075), IF=0.751
  203. Рудаков Д.А., Генаев А.М., Дикусар Е.А., Зверева Т.Д., Зубрейчук З.П., Поткин В.И.
    Галогенирование и μh-таутомерия 7-бензил-7,8-дикарба-нидо-ундекаборат(-1) аниона
    Журнал органической химии. 2019. Т. 55. № 10. С. 1540-1550 (Halogenation and μH-Tautomerism of 7-Benzyl-7,8-dicarba-nido-undecaborate(-1) Anion/ D.A. Rudakov, A.M. Genaev, E.A. Dikusar, T.D. Zvereva, Z.P. Zubreichuk, V.I.Potkin// Russian Journal of Organic Chemistry, 2019, V. 55, N 10, pp 1495-1503 doi:10.1134/S1070428019100075), IF=0.751
  204. Рудаков Д.А., Генаев А.М., Дикусар Е.А., Зверева Т.Д., Зубрейчук З.П., Поткин В.И.
    Галогенирование и μh-таутомерия 7-бензил-7,8-дикарба-нидо-ундекаборат(-1) аниона
    Журнал органической химии. 2019. Т. 55. № 10. С. 1540-1550 (Halogenation and μH-Tautomerism of 7-Benzyl-7,8-dicarba-nido-undecaborate(-1) Anion/ D.A. Rudakov, A.M. Genaev, E.A. Dikusar, T.D. Zvereva, Z.P. Zubreichuk, V.I.Potkin// Russian Journal of Organic Chemistry, 2019, V. 55, N 10, pp 1495-1503 doi:10.1134/S1070428019100075), IF=0.751
  205. Рудаков Д.А., Генаев А.М., Дикусар Е.А., Зверева Т.Д., Зубрейчук З.П., Поткин В.И.
    Галогенирование и μh-таутомерия 7-бензил-7,8-дикарба-нидо-ундекаборат(-1) аниона
    Журнал органической химии. 2019. Т. 55. № 10. С. 1540-1550 (Halogenation and μH-Tautomerism of 7-Benzyl-7,8-dicarba-nido-undecaborate(-1) Anion/ D.A. Rudakov, A.M. Genaev, E.A. Dikusar, T.D. Zvereva, Z.P. Zubreichuk, V.I.Potkin// Russian Journal of Organic Chemistry, 2019, V. 55, N 10, pp 1495-1503 doi:10.1134/S1070428019100075), IF=0.751
  206. В.В. Шелковников, Н.А. Орлова, И.Ю. Каргаполова, К.Д. Ерин, А.М. Максимов, А.А. Черноносов
    Формильные производные аминозамещенных полифтортрифенил-4,5-дигидро-1H-пиразолов: синтез и использование в качестве донорных блоков в структурах нелинейно-оптических хромофоров
    Журнал органической химии. 2019. Т. 55. № 10. С. 1551-1566 (Formyl Derivatives of Amino Substituted Polyfluorotriphenyl4,5-dihydro-1H-pyrazoles: Synthesis and Use as Donor Blocks in the Structures of Nonlinear Optical Chromophores/ V.V. Shelkovnikov, N.A, Orlova, I.Yu. Kargapolova, K.D. Erin, A.M. Maksimov, A.A.Chernonosov// Russian Journal of Organic Chemistry, 2019, V. 55, N 10, pp 1504-1517 doi:10.1134/S1070428019100087), IF=0.751
  207. В.В. Шелковников, Н.А. Орлова, И.Ю. Каргаполова, К.Д. Ерин, А.М. Максимов, А.А. Черноносов
    Формильные производные аминозамещенных полифтортрифенил-4,5-дигидро-1H-пиразолов: синтез и использование в качестве донорных блоков в структурах нелинейно-оптических хромофоров
    Журнал органической химии. 2019. Т. 55. № 10. С. 1551-1566 (Formyl Derivatives of Amino Substituted Polyfluorotriphenyl4,5-dihydro-1H-pyrazoles: Synthesis and Use as Donor Blocks in the Structures of Nonlinear Optical Chromophores/ V.V. Shelkovnikov, N.A, Orlova, I.Yu. Kargapolova, K.D. Erin, A.M. Maksimov, A.A.Chernonosov// Russian Journal of Organic Chemistry, 2019, V. 55, N 10, pp 1504-1517 doi:10.1134/S1070428019100087), IF=0.751
  208. O. Zakharova, G. Nevinsky, L. Politanskaya, D. Baev, L. Ovchinnikova, E. Tretyakov
    Evaluation of antioxidant activity and cytotoxicity of polyfluorinated diarylacetylenes and indoles toward human cancer cells
    Journal of Fluorine Chemistry, V. 226, October 2019, 109353 doi:10.1016/j.jfluchem.2019.109353, IF=2.055
  209. O. Zakharova, G. Nevinsky, L. Politanskaya, D. Baev, L. Ovchinnikova, E. Tretyakov
    Evaluation of antioxidant activity and cytotoxicity of polyfluorinated diarylacetylenes and indoles toward human cancer cells
    Journal of Fluorine Chemistry, V. 226, October 2019, 109353 doi:10.1016/j.jfluchem.2019.109353, IF=2.055
  210. O. Zakharova, G. Nevinsky, L. Politanskaya, D. Baev, L. Ovchinnikova, E. Tretyakov
    Evaluation of antioxidant activity and cytotoxicity of polyfluorinated diarylacetylenes and indoles toward human cancer cells
    Journal of Fluorine Chemistry, V. 226, October 2019, 109353 doi:10.1016/j.jfluchem.2019.109353, IF=2.055
  211. E.S. Vasilyev, S.N. Bizyaev, V.Yu. Komarov, A.V. Tkachev
    Syntheses of chiral fused 4,5-diazafluorene–bis(nopinane) derivatives
    Mendeleev Commun., 2019, V. 29, N 5, Pp 584-586 doi:10.1016/j.mencom.2019.09.036, IF=2.01
  212. A.I. Titkov, O.A. Logutenko, A.M. Vorobyov, E.Yu. Gerasimov, I.K. Shundrina, N.V. Bulina, N.Z. Lyakhov
    Synthesis of ˜10 nm size Cu/Ag core-shell nanoparticles stabilized by an ethoxylated carboxylic acid for conductive ink
    Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2019, V. 577, Pp 500-508 doi:10.1016/j.colsurfa.2019.06.008, IF=3.131
  213. A.I. Titkov, O.A. Logutenko, A.M. Vorobyov, E.Yu. Gerasimov, I.K. Shundrina, N.V. Bulina, N.Z. Lyakhov
    Synthesis of ˜10 nm size Cu/Ag core-shell nanoparticles stabilized by an ethoxylated carboxylic acid for conductive ink
    Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2019, V. 577, Pp 500-508 doi:10.1016/j.colsurfa.2019.06.008, IF=3.131
  214. A.I. Titkov, O.A. Logutenko, A.M. Vorobyov, E.Yu. Gerasimov, I.K. Shundrina, N.V. Bulina, N.Z. Lyakhov
    Synthesis of ˜10 nm size Cu/Ag core-shell nanoparticles stabilized by an ethoxylated carboxylic acid for conductive ink
    Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2019, V. 577, Pp 500-508 doi:10.1016/j.colsurfa.2019.06.008, IF=3.131
  215. A.I. Titkov, O.A. Logutenko, A.M. Vorobyov, E.Yu. Gerasimov, I.K. Shundrina, N.V. Bulina, N.Z. Lyakhov
    Synthesis of ˜10 nm size Cu/Ag core-shell nanoparticles stabilized by an ethoxylated carboxylic acid for conductive ink
    Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2019, V. 577, Pp 500-508 doi:10.1016/j.colsurfa.2019.06.008, IF=3.131
  216. A.I. Titkov, O.A. Logutenko, A.M. Vorobyov, E.Yu. Gerasimov, I.K. Shundrina, N.V. Bulina, N.Z. Lyakhov
    Synthesis of ˜10 nm size Cu/Ag core-shell nanoparticles stabilized by an ethoxylated carboxylic acid for conductive ink
    Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2019, V. 577, Pp 500-508 doi:10.1016/j.colsurfa.2019.06.008, IF=3.131
  217. A.I. Titkov, O.A. Logutenko, A.M. Vorobyov, E.Yu. Gerasimov, I.K. Shundrina, N.V. Bulina, N.Z. Lyakhov
    Synthesis of ˜10 nm size Cu/Ag core-shell nanoparticles stabilized by an ethoxylated carboxylic acid for conductive ink
    Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2019, V. 577, Pp 500-508 doi:10.1016/j.colsurfa.2019.06.008, IF=3.131
  218. A.Yu. Vorob'ev, T.Yu. Dranova, A.E. Moskalensky
    Photolysis of dimethoxynitrobenzyl-"caged" acids yields fluorescent products
    SCIENTIFIC REPORTS, 2019, V. 9, Art.num 13421 doi:10.1038/s41598-019-49845-z, IF=4.11
  219. A.Yu. Vorob'ev, T.Yu. Dranova, A.E. Moskalensky
    Photolysis of dimethoxynitrobenzyl-"caged" acids yields fluorescent products
    SCIENTIFIC REPORTS, 2019, V. 9, Art.num 13421 doi:10.1038/s41598-019-49845-z, IF=4.11
  220. O.A. Krumkacheva, I.O. Timofeev, L.V. Politanskaya, Yu.F. Polienko, E.V. Tretyakov, O.Yu. Rogozhnikova, D.V. Trukhin, V.M. Tormyshev, A.S. Chubarov, E.G. Bagryanskaya, M.V. Fedin
    Triplet Fullerenes as Prospective Spin Labels for Nanoscale Distance Measurements by Pulsed Dipolar EPR
    Angewandte Chemie International Edition, 2019, V. 58, N 38, Pp 13271-13275 doi:10.1002/anie.201904152, IF=12.256
  221. O.A. Krumkacheva, I.O. Timofeev, L.V. Politanskaya, Yu.F. Polienko, E.V. Tretyakov, O.Yu. Rogozhnikova, D.V. Trukhin, V.M. Tormyshev, A.S. Chubarov, E.G. Bagryanskaya, M.V. Fedin
    Triplet Fullerenes as Prospective Spin Labels for Nanoscale Distance Measurements by Pulsed Dipolar EPR
    Angewandte Chemie International Edition, 2019, V. 58, N 38, Pp 13271-13275 doi:10.1002/anie.201904152, IF=12.256
  222. O.A. Krumkacheva, I.O. Timofeev, L.V. Politanskaya, Yu.F. Polienko, E.V. Tretyakov, O.Yu. Rogozhnikova, D.V. Trukhin, V.M. Tormyshev, A.S. Chubarov, E.G. Bagryanskaya, M.V. Fedin
    Triplet Fullerenes as Prospective Spin Labels for Nanoscale Distance Measurements by Pulsed Dipolar EPR
    Angewandte Chemie International Edition, 2019, V. 58, N 38, Pp 13271-13275 doi:10.1002/anie.201904152, IF=12.256
  223. O.A. Krumkacheva, I.O. Timofeev, L.V. Politanskaya, Yu.F. Polienko, E.V. Tretyakov, O.Yu. Rogozhnikova, D.V. Trukhin, V.M. Tormyshev, A.S. Chubarov, E.G. Bagryanskaya, M.V. Fedin
    Triplet Fullerenes as Prospective Spin Labels for Nanoscale Distance Measurements by Pulsed Dipolar EPR
    Angewandte Chemie International Edition, 2019, V. 58, N 38, Pp 13271-13275 doi:10.1002/anie.201904152, IF=12.256
  224. T.A. Vaganova, Yu.V. Gatilov, E. Benassi, I.P. Chuikov, D.P. Pishchur, E.V. Malykhin
    Impact of molecular packing rearrangement on solid-state fluorescence: polyhalogenated N-hetarylamines vs. their co-crystals with 18-crown-6
    CrystEngComm, 2019, V. 21, N 39, Pp 5931-5946 doi:10.1039/C9CE00645A, IF=3.381
  225. T.A. Vaganova, Yu.V. Gatilov, E. Benassi, I.P. Chuikov, D.P. Pishchur, E.V. Malykhin
    Impact of molecular packing rearrangement on solid-state fluorescence: polyhalogenated N-hetarylamines vs. their co-crystals with 18-crown-6
    CrystEngComm, 2019, V. 21, N 39, Pp 5931-5946 doi:10.1039/C9CE00645A, IF=3.381
  226. A. Predtetchinski, E. Predtechenskaya, I. Sorokina, A. Guzev, S. Aydagulova
    Morphologic changes and protective role of prolactin in experimental multiple sclerosis animal model
    MULTIPLE SCLEROSIS JOURNAL, 2019, V.25, S2, Pp 435-435 (P845) (35th Congress of the European-Committee-for-Treatment-and-Research-in-Multiple-Sclerosis (ECTRIMS) / 24th Annual Conference of Rehabilitation in MS Местоположение: Stockholm, SWEDEN публ.: SEP 11-13, 2019 Конференция: 35th Congress of the European-Committee-for-Treatment-and-Research-in-Multiple-Sclerosis (ECTRIMS) / 24th Annual MULTIPLE SCLEROSIS JOURNAL Том: 25 Специальный выпуск: SI Приложение: 2 Стр.: 435-435 Аннотация к встрече: P845 Conference of Rehabilitation in MS Местоположение: Stockholm, SWEDEN публ.: SEP 11-13, 2019, IF=5.649
  227. A. Predtetchinski, E. Predtechenskaya, I. Sorokina, A. Guzev, S. Aydagulova
    Morphologic changes and protective role of prolactin in experimental multiple sclerosis animal model
    MULTIPLE SCLEROSIS JOURNAL, 2019, V.25, S2, Pp 435-435 (P845) (35th Congress of the European-Committee-for-Treatment-and-Research-in-Multiple-Sclerosis (ECTRIMS) / 24th Annual Conference of Rehabilitation in MS Местоположение: Stockholm, SWEDEN публ.: SEP 11-13, 2019 Конференция: 35th Congress of the European-Committee-for-Treatment-and-Research-in-Multiple-Sclerosis (ECTRIMS) / 24th Annual MULTIPLE SCLEROSIS JOURNAL Том: 25 Специальный выпуск: SI Приложение: 2 Стр.: 435-435 Аннотация к встрече: P845 Conference of Rehabilitation in MS Местоположение: Stockholm, SWEDEN публ.: SEP 11-13, 2019, IF=5.649
  228. A. Predtetchinski, E. Predtechenskaya, I. Sorokina, A. Guzev, S. Aydagulova
    Morphologic changes and protective role of prolactin in experimental multiple sclerosis animal model
    MULTIPLE SCLEROSIS JOURNAL, 2019, V.25, S2, Pp 435-435 (P845) (35th Congress of the European-Committee-for-Treatment-and-Research-in-Multiple-Sclerosis (ECTRIMS) / 24th Annual Conference of Rehabilitation in MS Местоположение: Stockholm, SWEDEN публ.: SEP 11-13, 2019 Конференция: 35th Congress of the European-Committee-for-Treatment-and-Research-in-Multiple-Sclerosis (ECTRIMS) / 24th Annual MULTIPLE SCLEROSIS JOURNAL Том: 25 Специальный выпуск: SI Приложение: 2 Стр.: 435-435 Аннотация к встрече: P845 Conference of Rehabilitation in MS Местоположение: Stockholm, SWEDEN публ.: SEP 11-13, 2019, IF=5.649
  229. A. Predtetchinski, E. Predtechenskaya, I. Sorokina, A. Guzev, S. Aydagulova
    Morphologic changes and protective role of prolactin in experimental multiple sclerosis animal model
    MULTIPLE SCLEROSIS JOURNAL, 2019, V.25, S2, Pp 435-435 (P845) (35th Congress of the European-Committee-for-Treatment-and-Research-in-Multiple-Sclerosis (ECTRIMS) / 24th Annual Conference of Rehabilitation in MS Местоположение: Stockholm, SWEDEN публ.: SEP 11-13, 2019 Конференция: 35th Congress of the European-Committee-for-Treatment-and-Research-in-Multiple-Sclerosis (ECTRIMS) / 24th Annual MULTIPLE SCLEROSIS JOURNAL Том: 25 Специальный выпуск: SI Приложение: 2 Стр.: 435-435 Аннотация к встрече: P845 Conference of Rehabilitation in MS Местоположение: Stockholm, SWEDEN публ.: SEP 11-13, 2019, IF=5.649
  230. M.Y. Myshkin, R. Mannikko, O.A. Krumkacheva, D.S. Kulbatskii, A.O. Chugunov, A.A. Berkut, A.S. Paramonov, M.A. Shulepko, M.V. Fedin, M.G. Hanna, D.M. Kullmann, E.G. Bagryanskaya, A.S. Arseniev, M.P. Kirpichnikov, E.N. Lyukmanova, A.A. Vassilevski, Z.O. Shenkarev
    Cell-free expression of sodium channel domains for pharmacology studies. noncanonical spider toxin binding site in the second voltage-sensing domain of human nav1.4 channel
    Front. Pharmacol., 2019, V. 10, Art. number 953 doi:10.3389/fphar.2019.00953, IF=3.845
  231. M.Y. Myshkin, R. Mannikko, O.A. Krumkacheva, D.S. Kulbatskii, A.O. Chugunov, A.A. Berkut, A.S. Paramonov, M.A. Shulepko, M.V. Fedin, M.G. Hanna, D.M. Kullmann, E.G. Bagryanskaya, A.S. Arseniev, M.P. Kirpichnikov, E.N. Lyukmanova, A.A. Vassilevski, Z.O. Shenkarev
    Cell-free expression of sodium channel domains for pharmacology studies. noncanonical spider toxin binding site in the second voltage-sensing domain of human nav1.4 channel
    Front. Pharmacol., 2019, V. 10, Art. number 953 doi:10.3389/fphar.2019.00953, IF=3.845
  232. M.Y. Myshkin, R. Mannikko, O.A. Krumkacheva, D.S. Kulbatskii, A.O. Chugunov, A.A. Berkut, A.S. Paramonov, M.A. Shulepko, M.V. Fedin, M.G. Hanna, D.M. Kullmann, E.G. Bagryanskaya, A.S. Arseniev, M.P. Kirpichnikov, E.N. Lyukmanova, A.A. Vassilevski, Z.O. Shenkarev
    Cell-free expression of sodium channel domains for pharmacology studies. noncanonical spider toxin binding site in the second voltage-sensing domain of human nav1.4 channel
    Front. Pharmacol., 2019, V. 10, Art. number 953 doi:10.3389/fphar.2019.00953, IF=3.845
  233. M.Y. Myshkin, R. Mannikko, O.A. Krumkacheva, D.S. Kulbatskii, A.O. Chugunov, A.A. Berkut, A.S. Paramonov, M.A. Shulepko, M.V. Fedin, M.G. Hanna, D.M. Kullmann, E.G. Bagryanskaya, A.S. Arseniev, M.P. Kirpichnikov, E.N. Lyukmanova, A.A. Vassilevski, Z.O. Shenkarev
    Cell-free expression of sodium channel domains for pharmacology studies. noncanonical spider toxin binding site in the second voltage-sensing domain of human nav1.4 channel
    Front. Pharmacol., 2019, V. 10, Art. number 953 doi:10.3389/fphar.2019.00953, IF=3.845
  234. M.Y. Myshkin, R. Mannikko, O.A. Krumkacheva, D.S. Kulbatskii, A.O. Chugunov, A.A. Berkut, A.S. Paramonov, M.A. Shulepko, M.V. Fedin, M.G. Hanna, D.M. Kullmann, E.G. Bagryanskaya, A.S. Arseniev, M.P. Kirpichnikov, E.N. Lyukmanova, A.A. Vassilevski, Z.O. Shenkarev
    Cell-free expression of sodium channel domains for pharmacology studies. noncanonical spider toxin binding site in the second voltage-sensing domain of human nav1.4 channel
    Front. Pharmacol., 2019, V. 10, Art. number 953 doi:10.3389/fphar.2019.00953, IF=3.845
  235. M.Y. Myshkin, R. Mannikko, O.A. Krumkacheva, D.S. Kulbatskii, A.O. Chugunov, A.A. Berkut, A.S. Paramonov, M.A. Shulepko, M.V. Fedin, M.G. Hanna, D.M. Kullmann, E.G. Bagryanskaya, A.S. Arseniev, M.P. Kirpichnikov, E.N. Lyukmanova, A.A. Vassilevski, Z.O. Shenkarev
    Cell-free expression of sodium channel domains for pharmacology studies. noncanonical spider toxin binding site in the second voltage-sensing domain of human nav1.4 channel
    Front. Pharmacol., 2019, V. 10, Art. number 953 doi:10.3389/fphar.2019.00953, IF=3.845
  236. M.Y. Myshkin, R. Mannikko, O.A. Krumkacheva, D.S. Kulbatskii, A.O. Chugunov, A.A. Berkut, A.S. Paramonov, M.A. Shulepko, M.V. Fedin, M.G. Hanna, D.M. Kullmann, E.G. Bagryanskaya, A.S. Arseniev, M.P. Kirpichnikov, E.N. Lyukmanova, A.A. Vassilevski, Z.O. Shenkarev
    Cell-free expression of sodium channel domains for pharmacology studies. noncanonical spider toxin binding site in the second voltage-sensing domain of human nav1.4 channel
    Front. Pharmacol., 2019, V. 10, Art. number 953 doi:10.3389/fphar.2019.00953, IF=3.845
  237. M.Y. Myshkin, R. Mannikko, O.A. Krumkacheva, D.S. Kulbatskii, A.O. Chugunov, A.A. Berkut, A.S. Paramonov, M.A. Shulepko, M.V. Fedin, M.G. Hanna, D.M. Kullmann, E.G. Bagryanskaya, A.S. Arseniev, M.P. Kirpichnikov, E.N. Lyukmanova, A.A. Vassilevski, Z.O. Shenkarev
    Cell-free expression of sodium channel domains for pharmacology studies. noncanonical spider toxin binding site in the second voltage-sensing domain of human nav1.4 channel
    Front. Pharmacol., 2019, V. 10, Art. number 953 doi:10.3389/fphar.2019.00953, IF=3.845
  238. M.Y. Myshkin, R. Mannikko, O.A. Krumkacheva, D.S. Kulbatskii, A.O. Chugunov, A.A. Berkut, A.S. Paramonov, M.A. Shulepko, M.V. Fedin, M.G. Hanna, D.M. Kullmann, E.G. Bagryanskaya, A.S. Arseniev, M.P. Kirpichnikov, E.N. Lyukmanova, A.A. Vassilevski, Z.O. Shenkarev
    Cell-free expression of sodium channel domains for pharmacology studies. noncanonical spider toxin binding site in the second voltage-sensing domain of human nav1.4 channel
    Front. Pharmacol., 2019, V. 10, Art. number 953 doi:10.3389/fphar.2019.00953, IF=3.845
  239. M.Y. Myshkin, R. Mannikko, O.A. Krumkacheva, D.S. Kulbatskii, A.O. Chugunov, A.A. Berkut, A.S. Paramonov, M.A. Shulepko, M.V. Fedin, M.G. Hanna, D.M. Kullmann, E.G. Bagryanskaya, A.S. Arseniev, M.P. Kirpichnikov, E.N. Lyukmanova, A.A. Vassilevski, Z.O. Shenkarev
    Cell-free expression of sodium channel domains for pharmacology studies. noncanonical spider toxin binding site in the second voltage-sensing domain of human nav1.4 channel
    Front. Pharmacol., 2019, V. 10, Art. number 953 doi:10.3389/fphar.2019.00953, IF=3.845
  240. M.Y. Myshkin, R. Mannikko, O.A. Krumkacheva, D.S. Kulbatskii, A.O. Chugunov, A.A. Berkut, A.S. Paramonov, M.A. Shulepko, M.V. Fedin, M.G. Hanna, D.M. Kullmann, E.G. Bagryanskaya, A.S. Arseniev, M.P. Kirpichnikov, E.N. Lyukmanova, A.A. Vassilevski, Z.O. Shenkarev
    Cell-free expression of sodium channel domains for pharmacology studies. noncanonical spider toxin binding site in the second voltage-sensing domain of human nav1.4 channel
    Front. Pharmacol., 2019, V. 10, Art. number 953 doi:10.3389/fphar.2019.00953, IF=3.845
  241. M.Y. Myshkin, R. Mannikko, O.A. Krumkacheva, D.S. Kulbatskii, A.O. Chugunov, A.A. Berkut, A.S. Paramonov, M.A. Shulepko, M.V. Fedin, M.G. Hanna, D.M. Kullmann, E.G. Bagryanskaya, A.S. Arseniev, M.P. Kirpichnikov, E.N. Lyukmanova, A.A. Vassilevski, Z.O. Shenkarev
    Cell-free expression of sodium channel domains for pharmacology studies. noncanonical spider toxin binding site in the second voltage-sensing domain of human nav1.4 channel
    Front. Pharmacol., 2019, V. 10, Art. number 953 doi:10.3389/fphar.2019.00953, IF=3.845
  242. M.Y. Myshkin, R. Mannikko, O.A. Krumkacheva, D.S. Kulbatskii, A.O. Chugunov, A.A. Berkut, A.S. Paramonov, M.A. Shulepko, M.V. Fedin, M.G. Hanna, D.M. Kullmann, E.G. Bagryanskaya, A.S. Arseniev, M.P. Kirpichnikov, E.N. Lyukmanova, A.A. Vassilevski, Z.O. Shenkarev
    Cell-free expression of sodium channel domains for pharmacology studies. noncanonical spider toxin binding site in the second voltage-sensing domain of human nav1.4 channel
    Front. Pharmacol., 2019, V. 10, Art. number 953 doi:10.3389/fphar.2019.00953, IF=3.845
  243. M.Y. Myshkin, R. Mannikko, O.A. Krumkacheva, D.S. Kulbatskii, A.O. Chugunov, A.A. Berkut, A.S. Paramonov, M.A. Shulepko, M.V. Fedin, M.G. Hanna, D.M. Kullmann, E.G. Bagryanskaya, A.S. Arseniev, M.P. Kirpichnikov, E.N. Lyukmanova, A.A. Vassilevski, Z.O. Shenkarev
    Cell-free expression of sodium channel domains for pharmacology studies. noncanonical spider toxin binding site in the second voltage-sensing domain of human nav1.4 channel
    Front. Pharmacol., 2019, V. 10, Art. number 953 doi:10.3389/fphar.2019.00953, IF=3.845
  244. M.Y. Myshkin, R. Mannikko, O.A. Krumkacheva, D.S. Kulbatskii, A.O. Chugunov, A.A. Berkut, A.S. Paramonov, M.A. Shulepko, M.V. Fedin, M.G. Hanna, D.M. Kullmann, E.G. Bagryanskaya, A.S. Arseniev, M.P. Kirpichnikov, E.N. Lyukmanova, A.A. Vassilevski, Z.O. Shenkarev
    Cell-free expression of sodium channel domains for pharmacology studies. noncanonical spider toxin binding site in the second voltage-sensing domain of human nav1.4 channel
    Front. Pharmacol., 2019, V. 10, Art. number 953 doi:10.3389/fphar.2019.00953, IF=3.845
  245. M.Y. Myshkin, R. Mannikko, O.A. Krumkacheva, D.S. Kulbatskii, A.O. Chugunov, A.A. Berkut, A.S. Paramonov, M.A. Shulepko, M.V. Fedin, M.G. Hanna, D.M. Kullmann, E.G. Bagryanskaya, A.S. Arseniev, M.P. Kirpichnikov, E.N. Lyukmanova, A.A. Vassilevski, Z.O. Shenkarev
    Cell-free expression of sodium channel domains for pharmacology studies. noncanonical spider toxin binding site in the second voltage-sensing domain of human nav1.4 channel
    Front. Pharmacol., 2019, V. 10, Art. number 953 doi:10.3389/fphar.2019.00953, IF=3.845
  246. A.V. Markov, A.E. Kel, O.V. Salomatina, N.F. Salakhutdinov, M.A. Zenkova, E.B. Logashenko
    Deep insights into the response of human cervical carcinoma cells to a new cyano enone-bearing triterpenoid soloxolone methyl: A transcriptome analysis
    Oncotarget, 2019, V. 10, N 51, Pp 5267-5297 doi:10.18632/oncotarget.27085
  247. A.V. Markov, A.E. Kel, O.V. Salomatina, N.F. Salakhutdinov, M.A. Zenkova, E.B. Logashenko
    Deep insights into the response of human cervical carcinoma cells to a new cyano enone-bearing triterpenoid soloxolone methyl: A transcriptome analysis
    Oncotarget, 2019, V. 10, N 51, Pp 5267-5297 doi:10.18632/oncotarget.27085
  248. A.V. Markov, A.E. Kel, O.V. Salomatina, N.F. Salakhutdinov, M.A. Zenkova, E.B. Logashenko
    Deep insights into the response of human cervical carcinoma cells to a new cyano enone-bearing triterpenoid soloxolone methyl: A transcriptome analysis
    Oncotarget, 2019, V. 10, N 51, Pp 5267-5297 doi:10.18632/oncotarget.27085
  249. A.V. Markov, A.E. Kel, O.V. Salomatina, N.F. Salakhutdinov, M.A. Zenkova, E.B. Logashenko
    Deep insights into the response of human cervical carcinoma cells to a new cyano enone-bearing triterpenoid soloxolone methyl: A transcriptome analysis
    Oncotarget, 2019, V. 10, N 51, Pp 5267-5297 doi:10.18632/oncotarget.27085
  250. E. S. Vasilyev, S. N. Bizyaev, V.Yu. Komarov, Yu.V. Gatilov, A. V. Tkachev
    Chiral C2-Symmetric Diimines with 4,5-Diazafluorene Units
    Molecules 2019, 24(17), 3186 doi:10.3390/molecules24173186, IF=3.59
  251. P.V. Petunin, D.E. Votkina, M.E. Trusova, T.V. Rybalova, E.V. Amosov, M.N. Uvarov, P.S. Postnikov, M.S. Kazantsev, E.A. Mostovich
    Oxidative addition of verdazyl halogenides to Pd(PPh3)4
    New J. Chem., 2019, V.43, N 38, Pp15293-15301 doi:10.1039/C9NJ03361K, IF=3.69
  252. P.V. Petunin, D.E. Votkina, M.E. Trusova, T.V. Rybalova, E.V. Amosov, M.N. Uvarov, P.S. Postnikov, M.S. Kazantsev, E.A. Mostovich
    Oxidative addition of verdazyl halogenides to Pd(PPh3)4
    New J. Chem., 2019, V.43, N 38, Pp15293-15301 doi:10.1039/C9NJ03361K, IF=3.69
  253. P.V. Petunin, D.E. Votkina, M.E. Trusova, T.V. Rybalova, E.V. Amosov, M.N. Uvarov, P.S. Postnikov, M.S. Kazantsev, E.A. Mostovich
    Oxidative addition of verdazyl halogenides to Pd(PPh3)4
    New J. Chem., 2019, V.43, N 38, Pp15293-15301 doi:10.1039/C9NJ03361K, IF=3.69
  254. P.V. Petunin, D.E. Votkina, M.E. Trusova, T.V. Rybalova, E.V. Amosov, M.N. Uvarov, P.S. Postnikov, M.S. Kazantsev, E.A. Mostovich
    Oxidative addition of verdazyl halogenides to Pd(PPh3)4
    New J. Chem., 2019, V.43, N 38, Pp15293-15301 doi:10.1039/C9NJ03361K, IF=3.69
  255. P.V. Petunin, D.E. Votkina, M.E. Trusova, T.V. Rybalova, E.V. Amosov, M.N. Uvarov, P.S. Postnikov, M.S. Kazantsev, E.A. Mostovich
    Oxidative addition of verdazyl halogenides to Pd(PPh3)4
    New J. Chem., 2019, V.43, N 38, Pp15293-15301 doi:10.1039/C9NJ03361K, IF=3.69
  256. P.V. Petunin, D.E. Votkina, M.E. Trusova, T.V. Rybalova, E.V. Amosov, M.N. Uvarov, P.S. Postnikov, M.S. Kazantsev, E.A. Mostovich
    Oxidative addition of verdazyl halogenides to Pd(PPh3)4
    New J. Chem., 2019, V.43, N 38, Pp15293-15301 doi:10.1039/C9NJ03361K, IF=3.69
  257. E. Kulikova, N. Khotskin, N. Illarionova, I. Sorokin, K. Volcho, A. Kulikov
    The antidepressant effect of STEP inhibitor (TC-2153) and its influence on the serotoninergic 5-HT2A receptors in the brain
    IBRO Reports, V. 6, Supplement, September 2019, Page S492. P32.59 doi:10.1016/j.ibror.2019.07.1544
  258. E. Kulikova, N. Khotskin, N. Illarionova, I. Sorokin, K. Volcho, A. Kulikov
    The antidepressant effect of STEP inhibitor (TC-2153) and its influence on the serotoninergic 5-HT2A receptors in the brain
    IBRO Reports, V. 6, Supplement, September 2019, Page S492. P32.59 doi:10.1016/j.ibror.2019.07.1544
  259. E. Kulikova, N. Khotskin, N. Illarionova, I. Sorokin, K. Volcho, A. Kulikov
    The antidepressant effect of STEP inhibitor (TC-2153) and its influence on the serotoninergic 5-HT2A receptors in the brain
    IBRO Reports, V. 6, Supplement, September 2019, Page S492. P32.59 doi:10.1016/j.ibror.2019.07.1544
  260. E. Kulikova, N. Khotskin, N. Illarionova, I. Sorokin, K. Volcho, A. Kulikov
    The antidepressant effect of STEP inhibitor (TC-2153) and its influence on the serotoninergic 5-HT2A receptors in the brain
    IBRO Reports, V. 6, Supplement, September 2019, Page S492. P32.59 doi:10.1016/j.ibror.2019.07.1544
  261. E. Kulikova, N. Khotskin, N. Illarionova, I. Sorokin, K. Volcho, A. Kulikov
    The antidepressant effect of STEP inhibitor (TC-2153) and its influence on the serotoninergic 5-HT2A receptors in the brain
    IBRO Reports, V. 6, Supplement, September 2019, Page S492. P32.59 doi:10.1016/j.ibror.2019.07.1544
  262. A. Kulikov, V. Moskaliuk, R. Kozhemyakina, D. Bazovkina, E. Terenina, K. Volcho, V. Naumenko, E. Kulikova
    Effects of drug TC-2153 on the behavior and striatal-enriched tyrosine protein phosphatase in the brain of rats selectively bred for high and low aggression towards humans
    IBRO Reports, 2019, V. 6, Supplement, Page S115 doi:10.1016/j.ibror.2019.07.368
  263. A. Kulikov, V. Moskaliuk, R. Kozhemyakina, D. Bazovkina, E. Terenina, K. Volcho, V. Naumenko, E. Kulikova
    Effects of drug TC-2153 on the behavior and striatal-enriched tyrosine protein phosphatase in the brain of rats selectively bred for high and low aggression towards humans
    IBRO Reports, 2019, V. 6, Supplement, Page S115 doi:10.1016/j.ibror.2019.07.368
  264. A. Kulikov, V. Moskaliuk, R. Kozhemyakina, D. Bazovkina, E. Terenina, K. Volcho, V. Naumenko, E. Kulikova
    Effects of drug TC-2153 on the behavior and striatal-enriched tyrosine protein phosphatase in the brain of rats selectively bred for high and low aggression towards humans
    IBRO Reports, 2019, V. 6, Supplement, Page S115 doi:10.1016/j.ibror.2019.07.368
  265. A. Kulikov, V. Moskaliuk, R. Kozhemyakina, D. Bazovkina, E. Terenina, K. Volcho, V. Naumenko, E. Kulikova
    Effects of drug TC-2153 on the behavior and striatal-enriched tyrosine protein phosphatase in the brain of rats selectively bred for high and low aggression towards humans
    IBRO Reports, 2019, V. 6, Supplement, Page S115 doi:10.1016/j.ibror.2019.07.368
  266. A. Kulikov, V. Moskaliuk, R. Kozhemyakina, D. Bazovkina, E. Terenina, K. Volcho, V. Naumenko, E. Kulikova
    Effects of drug TC-2153 on the behavior and striatal-enriched tyrosine protein phosphatase in the brain of rats selectively bred for high and low aggression towards humans
    IBRO Reports, 2019, V. 6, Supplement, Page S115 doi:10.1016/j.ibror.2019.07.368
  267. A. Kulikov, V. Moskaliuk, R. Kozhemyakina, D. Bazovkina, E. Terenina, K. Volcho, V. Naumenko, E. Kulikova
    Effects of drug TC-2153 on the behavior and striatal-enriched tyrosine protein phosphatase in the brain of rats selectively bred for high and low aggression towards humans
    IBRO Reports, 2019, V. 6, Supplement, Page S115 doi:10.1016/j.ibror.2019.07.368
  268. A. Kulikov, V. Moskaliuk, R. Kozhemyakina, D. Bazovkina, E. Terenina, K. Volcho, V. Naumenko, E. Kulikova
    Effects of drug TC-2153 on the behavior and striatal-enriched tyrosine protein phosphatase in the brain of rats selectively bred for high and low aggression towards humans
    IBRO Reports, 2019, V. 6, Supplement, Page S115 doi:10.1016/j.ibror.2019.07.368
  269. E. Babaylova, A. Malygin, A. Gopanenko, D. Graifer, G. Karpova
    Tetrapeptide 60-63 of human ribosomal protein uS3 is crucial for translation initiation
    Biochimica et Biophysica Acta (BBA) - Gene Regulatory Mechanisms, 2019, V. 1862, N 9, 194411 doi:10.1016/j.bbagrm.2019.194411, IF=4.598
  270. E.V. Parkhomchuk, E.A. Prokopyeva, D.G. Gulevich, A.I. Taratayko, A.M. Baklanov, P.N. Kalinkin, S.A. Rastigeev, D.V. Kuleshov, K.A. Sashkina, V.V. Parkhomchuk
    Ultrafine organic aerosol particles inhaled by mice at low doses remain in lungs more than half an year
    Journal of Labelled Compounds & Radiopharmaceuticals, 2019, V. 62, N 11, Pp 785-793, SI doi:10.1002/jlcr.378810.1002/jlcr.3788, IF=1.291
  271. E.V. Parkhomchuk, E.A. Prokopyeva, D.G. Gulevich, A.I. Taratayko, A.M. Baklanov, P.N. Kalinkin, S.A. Rastigeev, D.V. Kuleshov, K.A. Sashkina, V.V. Parkhomchuk
    Ultrafine organic aerosol particles inhaled by mice at low doses remain in lungs more than half an year
    Journal of Labelled Compounds & Radiopharmaceuticals, 2019, V. 62, N 11, Pp 785-793, SI doi:10.1002/jlcr.378810.1002/jlcr.3788, IF=1.291
  272. E.V. Parkhomchuk, E.A. Prokopyeva, D.G. Gulevich, A.I. Taratayko, A.M. Baklanov, P.N. Kalinkin, S.A. Rastigeev, D.V. Kuleshov, K.A. Sashkina, V.V. Parkhomchuk
    Ultrafine organic aerosol particles inhaled by mice at low doses remain in lungs more than half an year
    Journal of Labelled Compounds & Radiopharmaceuticals, 2019, V. 62, N 11, Pp 785-793, SI doi:10.1002/jlcr.378810.1002/jlcr.3788, IF=1.291
  273. E.V. Parkhomchuk, E.A. Prokopyeva, D.G. Gulevich, A.I. Taratayko, A.M. Baklanov, P.N. Kalinkin, S.A. Rastigeev, D.V. Kuleshov, K.A. Sashkina, V.V. Parkhomchuk
    Ultrafine organic aerosol particles inhaled by mice at low doses remain in lungs more than half an year
    Journal of Labelled Compounds & Radiopharmaceuticals, 2019, V. 62, N 11, Pp 785-793, SI doi:10.1002/jlcr.378810.1002/jlcr.3788, IF=1.291
  274. E.V. Parkhomchuk, E.A. Prokopyeva, D.G. Gulevich, A.I. Taratayko, A.M. Baklanov, P.N. Kalinkin, S.A. Rastigeev, D.V. Kuleshov, K.A. Sashkina, V.V. Parkhomchuk
    Ultrafine organic aerosol particles inhaled by mice at low doses remain in lungs more than half an year
    Journal of Labelled Compounds & Radiopharmaceuticals, 2019, V. 62, N 11, Pp 785-793, SI doi:10.1002/jlcr.378810.1002/jlcr.3788, IF=1.291
  275. E.V. Parkhomchuk, E.A. Prokopyeva, D.G. Gulevich, A.I. Taratayko, A.M. Baklanov, P.N. Kalinkin, S.A. Rastigeev, D.V. Kuleshov, K.A. Sashkina, V.V. Parkhomchuk
    Ultrafine organic aerosol particles inhaled by mice at low doses remain in lungs more than half an year
    Journal of Labelled Compounds & Radiopharmaceuticals, 2019, V. 62, N 11, Pp 785-793, SI doi:10.1002/jlcr.378810.1002/jlcr.3788, IF=1.291
  276. E.V. Parkhomchuk, E.A. Prokopyeva, D.G. Gulevich, A.I. Taratayko, A.M. Baklanov, P.N. Kalinkin, S.A. Rastigeev, D.V. Kuleshov, K.A. Sashkina, V.V. Parkhomchuk
    Ultrafine organic aerosol particles inhaled by mice at low doses remain in lungs more than half an year
    Journal of Labelled Compounds & Radiopharmaceuticals, 2019, V. 62, N 11, Pp 785-793, SI doi:10.1002/jlcr.378810.1002/jlcr.3788, IF=1.291
  277. E.V. Parkhomchuk, E.A. Prokopyeva, D.G. Gulevich, A.I. Taratayko, A.M. Baklanov, P.N. Kalinkin, S.A. Rastigeev, D.V. Kuleshov, K.A. Sashkina, V.V. Parkhomchuk
    Ultrafine organic aerosol particles inhaled by mice at low doses remain in lungs more than half an year
    Journal of Labelled Compounds & Radiopharmaceuticals, 2019, V. 62, N 11, Pp 785-793, SI doi:10.1002/jlcr.378810.1002/jlcr.3788, IF=1.291
  278. E.V. Parkhomchuk, E.A. Prokopyeva, D.G. Gulevich, A.I. Taratayko, A.M. Baklanov, P.N. Kalinkin, S.A. Rastigeev, D.V. Kuleshov, K.A. Sashkina, V.V. Parkhomchuk
    Ultrafine organic aerosol particles inhaled by mice at low doses remain in lungs more than half an year
    Journal of Labelled Compounds & Radiopharmaceuticals, 2019, V. 62, N 11, Pp 785-793, SI doi:10.1002/jlcr.378810.1002/jlcr.3788, IF=1.291
  279. K. Kovaleva, O. Oleshko, E. Mamontova, O. Yarovaya, O. Zakharova, A. Zakharenko, A. Kononova, N. Dyrkheeva, S. Cheresiz, A. Pokrovsky, O. Lavrik, N. Salakhutdinov
    Dehydroabietylamine Ureas and Thioureas as Tyrosyl-DNA Phosphodiesterase 1 Inhibitors That Enhance the Antitumor Effect of Temozolomide on Glioblastoma Cells
    Journal of Natural Products, 2019, V. 82, N 9, Pp 2443-2450 doi:10.1021/acs.jnatprod.8b01095, IF=4.256
  280. K. Kovaleva, O. Oleshko, E. Mamontova, O. Yarovaya, O. Zakharova, A. Zakharenko, A. Kononova, N. Dyrkheeva, S. Cheresiz, A. Pokrovsky, O. Lavrik, N. Salakhutdinov
    Dehydroabietylamine Ureas and Thioureas as Tyrosyl-DNA Phosphodiesterase 1 Inhibitors That Enhance the Antitumor Effect of Temozolomide on Glioblastoma Cells
    Journal of Natural Products, 2019, V. 82, N 9, Pp 2443-2450 doi:10.1021/acs.jnatprod.8b01095, IF=4.256
  281. K. Kovaleva, O. Oleshko, E. Mamontova, O. Yarovaya, O. Zakharova, A. Zakharenko, A. Kononova, N. Dyrkheeva, S. Cheresiz, A. Pokrovsky, O. Lavrik, N. Salakhutdinov
    Dehydroabietylamine Ureas and Thioureas as Tyrosyl-DNA Phosphodiesterase 1 Inhibitors That Enhance the Antitumor Effect of Temozolomide on Glioblastoma Cells
    Journal of Natural Products, 2019, V. 82, N 9, Pp 2443-2450 doi:10.1021/acs.jnatprod.8b01095, IF=4.256
  282. K. Kovaleva, O. Oleshko, E. Mamontova, O. Yarovaya, O. Zakharova, A. Zakharenko, A. Kononova, N. Dyrkheeva, S. Cheresiz, A. Pokrovsky, O. Lavrik, N. Salakhutdinov
    Dehydroabietylamine Ureas and Thioureas as Tyrosyl-DNA Phosphodiesterase 1 Inhibitors That Enhance the Antitumor Effect of Temozolomide on Glioblastoma Cells
    Journal of Natural Products, 2019, V. 82, N 9, Pp 2443-2450 doi:10.1021/acs.jnatprod.8b01095, IF=4.256
  283. K. Kovaleva, O. Oleshko, E. Mamontova, O. Yarovaya, O. Zakharova, A. Zakharenko, A. Kononova, N. Dyrkheeva, S. Cheresiz, A. Pokrovsky, O. Lavrik, N. Salakhutdinov
    Dehydroabietylamine Ureas and Thioureas as Tyrosyl-DNA Phosphodiesterase 1 Inhibitors That Enhance the Antitumor Effect of Temozolomide on Glioblastoma Cells
    Journal of Natural Products, 2019, V. 82, N 9, Pp 2443-2450 doi:10.1021/acs.jnatprod.8b01095, IF=4.256
  284. K. Kovaleva, O. Oleshko, E. Mamontova, O. Yarovaya, O. Zakharova, A. Zakharenko, A. Kononova, N. Dyrkheeva, S. Cheresiz, A. Pokrovsky, O. Lavrik, N. Salakhutdinov
    Dehydroabietylamine Ureas and Thioureas as Tyrosyl-DNA Phosphodiesterase 1 Inhibitors That Enhance the Antitumor Effect of Temozolomide on Glioblastoma Cells
    Journal of Natural Products, 2019, V. 82, N 9, Pp 2443-2450 doi:10.1021/acs.jnatprod.8b01095, IF=4.256
  285. K. Kovaleva, O. Oleshko, E. Mamontova, O. Yarovaya, O. Zakharova, A. Zakharenko, A. Kononova, N. Dyrkheeva, S. Cheresiz, A. Pokrovsky, O. Lavrik, N. Salakhutdinov
    Dehydroabietylamine Ureas and Thioureas as Tyrosyl-DNA Phosphodiesterase 1 Inhibitors That Enhance the Antitumor Effect of Temozolomide on Glioblastoma Cells
    Journal of Natural Products, 2019, V. 82, N 9, Pp 2443-2450 doi:10.1021/acs.jnatprod.8b01095, IF=4.256
  286. K. Kovaleva, O. Oleshko, E. Mamontova, O. Yarovaya, O. Zakharova, A. Zakharenko, A. Kononova, N. Dyrkheeva, S. Cheresiz, A. Pokrovsky, O. Lavrik, N. Salakhutdinov
    Dehydroabietylamine Ureas and Thioureas as Tyrosyl-DNA Phosphodiesterase 1 Inhibitors That Enhance the Antitumor Effect of Temozolomide on Glioblastoma Cells
    Journal of Natural Products, 2019, V. 82, N 9, Pp 2443-2450 doi:10.1021/acs.jnatprod.8b01095, IF=4.256
  287. K. Kovaleva, O. Oleshko, E. Mamontova, O. Yarovaya, O. Zakharova, A. Zakharenko, A. Kononova, N. Dyrkheeva, S. Cheresiz, A. Pokrovsky, O. Lavrik, N. Salakhutdinov
    Dehydroabietylamine Ureas and Thioureas as Tyrosyl-DNA Phosphodiesterase 1 Inhibitors That Enhance the Antitumor Effect of Temozolomide on Glioblastoma Cells
    Journal of Natural Products, 2019, V. 82, N 9, Pp 2443-2450 doi:10.1021/acs.jnatprod.8b01095, IF=4.256
  288. D.S. Baranov, O.L. Krivenko, M.S. Kazantsev, D.A. Nevostruev, E.S. Kobeleva, V.A. Zinoviev, A.A. Dmitriev, N.P. Gritsan, L.V. Kulik
    Synthesis of 2,2'-[2,2'-(arenediyl)bis(anthra[2,3-b]thiophene-5,10-diylidene)]tetrapropanedinitriles and their performance as non-fullerene acceptors in organic photovoltaics
    Synthetic Metals, 2019, V. 255, 116097 doi:10.1016/j.synthmet.2019.06.013, IF=2.87
  289. D.S. Baranov, O.L. Krivenko, M.S. Kazantsev, D.A. Nevostruev, E.S. Kobeleva, V.A. Zinoviev, A.A. Dmitriev, N.P. Gritsan, L.V. Kulik
    Synthesis of 2,2'-[2,2'-(arenediyl)bis(anthra[2,3-b]thiophene-5,10-diylidene)]tetrapropanedinitriles and their performance as non-fullerene acceptors in organic photovoltaics
    Synthetic Metals, 2019, V. 255, 116097 doi:10.1016/j.synthmet.2019.06.013, IF=2.87
  290. D.S. Baranov, O.L. Krivenko, M.S. Kazantsev, D.A. Nevostruev, E.S. Kobeleva, V.A. Zinoviev, A.A. Dmitriev, N.P. Gritsan, L.V. Kulik
    Synthesis of 2,2'-[2,2'-(arenediyl)bis(anthra[2,3-b]thiophene-5,10-diylidene)]tetrapropanedinitriles and their performance as non-fullerene acceptors in organic photovoltaics
    Synthetic Metals, 2019, V. 255, 116097 doi:10.1016/j.synthmet.2019.06.013, IF=2.87
  291. D.S. Baranov, O.L. Krivenko, M.S. Kazantsev, D.A. Nevostruev, E.S. Kobeleva, V.A. Zinoviev, A.A. Dmitriev, N.P. Gritsan, L.V. Kulik
    Synthesis of 2,2'-[2,2'-(arenediyl)bis(anthra[2,3-b]thiophene-5,10-diylidene)]tetrapropanedinitriles and their performance as non-fullerene acceptors in organic photovoltaics
    Synthetic Metals, 2019, V. 255, 116097 doi:10.1016/j.synthmet.2019.06.013, IF=2.87
  292. D.S. Baranov, O.L. Krivenko, M.S. Kazantsev, D.A. Nevostruev, E.S. Kobeleva, V.A. Zinoviev, A.A. Dmitriev, N.P. Gritsan, L.V. Kulik
    Synthesis of 2,2'-[2,2'-(arenediyl)bis(anthra[2,3-b]thiophene-5,10-diylidene)]tetrapropanedinitriles and their performance as non-fullerene acceptors in organic photovoltaics
    Synthetic Metals, 2019, V. 255, 116097 doi:10.1016/j.synthmet.2019.06.013, IF=2.87
  293. D.S. Baranov, O.L. Krivenko, M.S. Kazantsev, D.A. Nevostruev, E.S. Kobeleva, V.A. Zinoviev, A.A. Dmitriev, N.P. Gritsan, L.V. Kulik
    Synthesis of 2,2'-[2,2'-(arenediyl)bis(anthra[2,3-b]thiophene-5,10-diylidene)]tetrapropanedinitriles and their performance as non-fullerene acceptors in organic photovoltaics
    Synthetic Metals, 2019, V. 255, 116097 doi:10.1016/j.synthmet.2019.06.013, IF=2.87
  294. D.S. Baranov, O.L. Krivenko, M.S. Kazantsev, D.A. Nevostruev, E.S. Kobeleva, V.A. Zinoviev, A.A. Dmitriev, N.P. Gritsan, L.V. Kulik
    Synthesis of 2,2'-[2,2'-(arenediyl)bis(anthra[2,3-b]thiophene-5,10-diylidene)]tetrapropanedinitriles and their performance as non-fullerene acceptors in organic photovoltaics
    Synthetic Metals, 2019, V. 255, 116097 doi:10.1016/j.synthmet.2019.06.013, IF=2.87
  295. D.S. Baranov, O.L. Krivenko, M.S. Kazantsev, D.A. Nevostruev, E.S. Kobeleva, V.A. Zinoviev, A.A. Dmitriev, N.P. Gritsan, L.V. Kulik
    Synthesis of 2,2'-[2,2'-(arenediyl)bis(anthra[2,3-b]thiophene-5,10-diylidene)]tetrapropanedinitriles and their performance as non-fullerene acceptors in organic photovoltaics
    Synthetic Metals, 2019, V. 255, 116097 doi:10.1016/j.synthmet.2019.06.013, IF=2.87
  296. М.В. Кручинина, А.В. Азгалдян, И.О. Светлова, М.В. Шашков, А.С. Соколова, В.Н. Кручинин
    Особенности состава жирных кислот сыворотки крови и мембран эритроцитов у пациентов с воспалительными заболеваниями кишечника (пилотное исследование)
    Современные проблемы науки и образования. 2019. № 3. С. 127. doi:10.17513/spno.28868
  297. М.В. Кручинина, А.В. Азгалдян, И.О. Светлова, М.В. Шашков, А.С. Соколова, В.Н. Кручинин
    Особенности состава жирных кислот сыворотки крови и мембран эритроцитов у пациентов с воспалительными заболеваниями кишечника (пилотное исследование)
    Современные проблемы науки и образования. 2019. № 3. С. 127. doi:10.17513/spno.28868
  298. М.В. Кручинина, А.В. Азгалдян, И.О. Светлова, М.В. Шашков, А.С. Соколова, В.Н. Кручинин
    Особенности состава жирных кислот сыворотки крови и мембран эритроцитов у пациентов с воспалительными заболеваниями кишечника (пилотное исследование)
    Современные проблемы науки и образования. 2019. № 3. С. 127. doi:10.17513/spno.28868
  299. М.В. Кручинина, А.В. Азгалдян, И.О. Светлова, М.В. Шашков, А.С. Соколова, В.Н. Кручинин
    Особенности состава жирных кислот сыворотки крови и мембран эритроцитов у пациентов с воспалительными заболеваниями кишечника (пилотное исследование)
    Современные проблемы науки и образования. 2019. № 3. С. 127. doi:10.17513/spno.28868
  300. М.В. Кручинина, А.В. Азгалдян, И.О. Светлова, М.В. Шашков, А.С. Соколова, В.Н. Кручинин
    Особенности состава жирных кислот сыворотки крови и мембран эритроцитов у пациентов с воспалительными заболеваниями кишечника (пилотное исследование)
    Современные проблемы науки и образования. 2019. № 3. С. 127. doi:10.17513/spno.28868
  301. A.S. Berezin, M.P. Davydova, I.Yu. Bagryanskaya, O.I. Artyushin, V.K. Brel, A.V. Artem'ev
    A red-emitting Mn(II)-based coordination polymer build on 1,2,4,5-tetrakis(diphenylphosphinyl)benzene
    Inorganic Chemistry Communications, 2019, V. 107, Article's number 107473 doi:10.1016/j.inoche.2019.107473, IF=1.795
  302. A.S. Berezin, M.P. Davydova, I.Yu. Bagryanskaya, O.I. Artyushin, V.K. Brel, A.V. Artem'ev
    A red-emitting Mn(II)-based coordination polymer build on 1,2,4,5-tetrakis(diphenylphosphinyl)benzene
    Inorganic Chemistry Communications, 2019, V. 107, Article's number 107473 doi:10.1016/j.inoche.2019.107473, IF=1.795
  303. A.S. Berezin, M.P. Davydova, I.Yu. Bagryanskaya, O.I. Artyushin, V.K. Brel, A.V. Artem'ev
    A red-emitting Mn(II)-based coordination polymer build on 1,2,4,5-tetrakis(diphenylphosphinyl)benzene
    Inorganic Chemistry Communications, 2019, V. 107, Article's number 107473 doi:10.1016/j.inoche.2019.107473, IF=1.795
  304. A.S. Berezin, M.P. Davydova, I.Yu. Bagryanskaya, O.I. Artyushin, V.K. Brel, A.V. Artem'ev
    A red-emitting Mn(II)-based coordination polymer build on 1,2,4,5-tetrakis(diphenylphosphinyl)benzene
    Inorganic Chemistry Communications, 2019, V. 107, Article's number 107473 doi:10.1016/j.inoche.2019.107473, IF=1.795
  305. A.S. Berezin, M.P. Davydova, I.Yu. Bagryanskaya, O.I. Artyushin, V.K. Brel, A.V. Artem'ev
    A red-emitting Mn(II)-based coordination polymer build on 1,2,4,5-tetrakis(diphenylphosphinyl)benzene
    Inorganic Chemistry Communications, 2019, V. 107, Article's number 107473 doi:10.1016/j.inoche.2019.107473, IF=1.795
  306. D.S.Baranov,O. L.Krivenko,D. A.Nevostruev,E.M.Glebov,M. N.Uvarov,M. S.Kazantsev,E. A.Mostovich,L. V.Kulik
    2,7-Disubstituted 1,3,6,8-tetraazabenzopyrenes: Synthesis, characterization, optical and electrochemical properties
    Dyes and Pigments, 2019, V. 168, Pp 219-227 doi:10.1016/j.dyepig.2019.04.062, IF=4.018
  307. D.S.Baranov,O. L.Krivenko,D. A.Nevostruev,E.M.Glebov,M. N.Uvarov,M. S.Kazantsev,E. A.Mostovich,L. V.Kulik
    2,7-Disubstituted 1,3,6,8-tetraazabenzopyrenes: Synthesis, characterization, optical and electrochemical properties
    Dyes and Pigments, 2019, V. 168, Pp 219-227 doi:10.1016/j.dyepig.2019.04.062, IF=4.018
  308. D.S.Baranov,O. L.Krivenko,D. A.Nevostruev,E.M.Glebov,M. N.Uvarov,M. S.Kazantsev,E. A.Mostovich,L. V.Kulik
    2,7-Disubstituted 1,3,6,8-tetraazabenzopyrenes: Synthesis, characterization, optical and electrochemical properties
    Dyes and Pigments, 2019, V. 168, Pp 219-227 doi:10.1016/j.dyepig.2019.04.062, IF=4.018
  309. D.S.Baranov,O. L.Krivenko,D. A.Nevostruev,E.M.Glebov,M. N.Uvarov,M. S.Kazantsev,E. A.Mostovich,L. V.Kulik
    2,7-Disubstituted 1,3,6,8-tetraazabenzopyrenes: Synthesis, characterization, optical and electrochemical properties
    Dyes and Pigments, 2019, V. 168, Pp 219-227 doi:10.1016/j.dyepig.2019.04.062, IF=4.018
  310. D.S.Baranov,O. L.Krivenko,D. A.Nevostruev,E.M.Glebov,M. N.Uvarov,M. S.Kazantsev,E. A.Mostovich,L. V.Kulik
    2,7-Disubstituted 1,3,6,8-tetraazabenzopyrenes: Synthesis, characterization, optical and electrochemical properties
    Dyes and Pigments, 2019, V. 168, Pp 219-227 doi:10.1016/j.dyepig.2019.04.062, IF=4.018
  311. D.S.Baranov,O. L.Krivenko,D. A.Nevostruev,E.M.Glebov,M. N.Uvarov,M. S.Kazantsev,E. A.Mostovich,L. V.Kulik
    2,7-Disubstituted 1,3,6,8-tetraazabenzopyrenes: Synthesis, characterization, optical and electrochemical properties
    Dyes and Pigments, 2019, V. 168, Pp 219-227 doi:10.1016/j.dyepig.2019.04.062, IF=4.018
  312. О.П. Молодых, И.В. Сорокина, Е.В. Виноградова, В.И. Капустина, А.А. Ходаков
    Ультраструктура печени при воздействии циклофосфамида и тритерпеноидов
    Бюллетень экспериментальной биологии и медицины. 2019. Т. 168. № 9. С. 376-382. (Ultrastructure of the liver exposed to cyclophosphamide and triterpenoids/ O.P. Molodykh, I.V. Sorokina, E.V. Vinogradova, V.I. Kapustina, A.A. Khodakov// Bulletin of Experimental Biology and Medicine, 2020, V. 168, N 3, Pp 400-405 doi:10.1007/s10517-020-04718-8), IF=0.567
  313. О.П. Молодых, И.В. Сорокина, Е.В. Виноградова, В.И. Капустина, А.А. Ходаков
    Ультраструктура печени при воздействии циклофосфамида и тритерпеноидов
    Бюллетень экспериментальной биологии и медицины. 2019. Т. 168. № 9. С. 376-382. (Ultrastructure of the liver exposed to cyclophosphamide and triterpenoids/ O.P. Molodykh, I.V. Sorokina, E.V. Vinogradova, V.I. Kapustina, A.A. Khodakov// Bulletin of Experimental Biology and Medicine, 2020, V. 168, N 3, Pp 400-405 doi:10.1007/s10517-020-04718-8), IF=0.567
  314. О.П. Молодых, И.В. Сорокина, Е.В. Виноградова, В.И. Капустина, А.А. Ходаков
    Ультраструктура печени при воздействии циклофосфамида и тритерпеноидов
    Бюллетень экспериментальной биологии и медицины. 2019. Т. 168. № 9. С. 376-382. (Ultrastructure of the liver exposed to cyclophosphamide and triterpenoids/ O.P. Molodykh, I.V. Sorokina, E.V. Vinogradova, V.I. Kapustina, A.A. Khodakov// Bulletin of Experimental Biology and Medicine, 2020, V. 168, N 3, Pp 400-405 doi:10.1007/s10517-020-04718-8), IF=0.567
  315. Т.П. Кукина, И.А. Елшин, О.И. Сальникова, И.В. Ельцов
    Алифатические и тритерпеновые продукты омыления эфирных экстрактов POPULUS NIGRA L
    Химия растительного сырья. 2019. № 3. С. 109-118. (Aliphatic and triterpenoic products of ether extracts saponification of POPULUS NIGRA L/ T. P. Kukina, I. A. Elshin , O. I. Salnikova , I. V. Eltsov// doi:10.14258/jcprm.2019034951)
  316. K. Sato, R. Hirao, I. Timofeev, O.A. Krumkacheva, E. Zaytseva, O.Yu. Rogozhnikova, V.M. Tormyshev, D.V. Trukhin, E.G. Bagryanskaya, T. Gutmann, V. Klimavicius, G. Buntkowsky, K. Sugisaki, Sh. Nakazawa, H. Matsuoka, K. Toyota, D. Shiomi, T. Takui
    Trityl-Aryl-Nitroxide Based Genuinely g-Engineered Biradicals, as Studied by Dynamic Nuclear Polarization, Multi-Frequency ESR/ENDOR, Arbitrary Wave Generator Pulse Microwave Waveform Spectroscopy and Quantum Chemical Calculations
    The Journal of Physical Chemistry A, 2019, V. 123, N 34, Pp 7507-7517 doi:10.1021/acs.jpca.9b07169, IF=2.641
  317. K. Sato, R. Hirao, I. Timofeev, O.A. Krumkacheva, E. Zaytseva, O.Yu. Rogozhnikova, V.M. Tormyshev, D.V. Trukhin, E.G. Bagryanskaya, T. Gutmann, V. Klimavicius, G. Buntkowsky, K. Sugisaki, Sh. Nakazawa, H. Matsuoka, K. Toyota, D. Shiomi, T. Takui
    Trityl-Aryl-Nitroxide Based Genuinely g-Engineered Biradicals, as Studied by Dynamic Nuclear Polarization, Multi-Frequency ESR/ENDOR, Arbitrary Wave Generator Pulse Microwave Waveform Spectroscopy and Quantum Chemical Calculations
    The Journal of Physical Chemistry A, 2019, V. 123, N 34, Pp 7507-7517 doi:10.1021/acs.jpca.9b07169, IF=2.641
  318. K. Sato, R. Hirao, I. Timofeev, O.A. Krumkacheva, E. Zaytseva, O.Yu. Rogozhnikova, V.M. Tormyshev, D.V. Trukhin, E.G. Bagryanskaya, T. Gutmann, V. Klimavicius, G. Buntkowsky, K. Sugisaki, Sh. Nakazawa, H. Matsuoka, K. Toyota, D. Shiomi, T. Takui
    Trityl-Aryl-Nitroxide Based Genuinely g-Engineered Biradicals, as Studied by Dynamic Nuclear Polarization, Multi-Frequency ESR/ENDOR, Arbitrary Wave Generator Pulse Microwave Waveform Spectroscopy and Quantum Chemical Calculations
    The Journal of Physical Chemistry A, 2019, V. 123, N 34, Pp 7507-7517 doi:10.1021/acs.jpca.9b07169, IF=2.641
  319. K. Sato, R. Hirao, I. Timofeev, O.A. Krumkacheva, E. Zaytseva, O.Yu. Rogozhnikova, V.M. Tormyshev, D.V. Trukhin, E.G. Bagryanskaya, T. Gutmann, V. Klimavicius, G. Buntkowsky, K. Sugisaki, Sh. Nakazawa, H. Matsuoka, K. Toyota, D. Shiomi, T. Takui
    Trityl-Aryl-Nitroxide Based Genuinely g-Engineered Biradicals, as Studied by Dynamic Nuclear Polarization, Multi-Frequency ESR/ENDOR, Arbitrary Wave Generator Pulse Microwave Waveform Spectroscopy and Quantum Chemical Calculations
    The Journal of Physical Chemistry A, 2019, V. 123, N 34, Pp 7507-7517 doi:10.1021/acs.jpca.9b07169, IF=2.641
  320. K. Sato, R. Hirao, I. Timofeev, O.A. Krumkacheva, E. Zaytseva, O.Yu. Rogozhnikova, V.M. Tormyshev, D.V. Trukhin, E.G. Bagryanskaya, T. Gutmann, V. Klimavicius, G. Buntkowsky, K. Sugisaki, Sh. Nakazawa, H. Matsuoka, K. Toyota, D. Shiomi, T. Takui
    Trityl-Aryl-Nitroxide Based Genuinely g-Engineered Biradicals, as Studied by Dynamic Nuclear Polarization, Multi-Frequency ESR/ENDOR, Arbitrary Wave Generator Pulse Microwave Waveform Spectroscopy and Quantum Chemical Calculations
    The Journal of Physical Chemistry A, 2019, V. 123, N 34, Pp 7507-7517 doi:10.1021/acs.jpca.9b07169, IF=2.641
  321. K. Sato, R. Hirao, I. Timofeev, O.A. Krumkacheva, E. Zaytseva, O.Yu. Rogozhnikova, V.M. Tormyshev, D.V. Trukhin, E.G. Bagryanskaya, T. Gutmann, V. Klimavicius, G. Buntkowsky, K. Sugisaki, Sh. Nakazawa, H. Matsuoka, K. Toyota, D. Shiomi, T. Takui
    Trityl-Aryl-Nitroxide Based Genuinely g-Engineered Biradicals, as Studied by Dynamic Nuclear Polarization, Multi-Frequency ESR/ENDOR, Arbitrary Wave Generator Pulse Microwave Waveform Spectroscopy and Quantum Chemical Calculations
    The Journal of Physical Chemistry A, 2019, V. 123, N 34, Pp 7507-7517 doi:10.1021/acs.jpca.9b07169, IF=2.641
  322. K. Sato, R. Hirao, I. Timofeev, O.A. Krumkacheva, E. Zaytseva, O.Yu. Rogozhnikova, V.M. Tormyshev, D.V. Trukhin, E.G. Bagryanskaya, T. Gutmann, V. Klimavicius, G. Buntkowsky, K. Sugisaki, Sh. Nakazawa, H. Matsuoka, K. Toyota, D. Shiomi, T. Takui
    Trityl-Aryl-Nitroxide Based Genuinely g-Engineered Biradicals, as Studied by Dynamic Nuclear Polarization, Multi-Frequency ESR/ENDOR, Arbitrary Wave Generator Pulse Microwave Waveform Spectroscopy and Quantum Chemical Calculations
    The Journal of Physical Chemistry A, 2019, V. 123, N 34, Pp 7507-7517 doi:10.1021/acs.jpca.9b07169, IF=2.641
  323. K. Sato, R. Hirao, I. Timofeev, O.A. Krumkacheva, E. Zaytseva, O.Yu. Rogozhnikova, V.M. Tormyshev, D.V. Trukhin, E.G. Bagryanskaya, T. Gutmann, V. Klimavicius, G. Buntkowsky, K. Sugisaki, Sh. Nakazawa, H. Matsuoka, K. Toyota, D. Shiomi, T. Takui
    Trityl-Aryl-Nitroxide Based Genuinely g-Engineered Biradicals, as Studied by Dynamic Nuclear Polarization, Multi-Frequency ESR/ENDOR, Arbitrary Wave Generator Pulse Microwave Waveform Spectroscopy and Quantum Chemical Calculations
    The Journal of Physical Chemistry A, 2019, V. 123, N 34, Pp 7507-7517 doi:10.1021/acs.jpca.9b07169, IF=2.641
  324. K. Sato, R. Hirao, I. Timofeev, O.A. Krumkacheva, E. Zaytseva, O.Yu. Rogozhnikova, V.M. Tormyshev, D.V. Trukhin, E.G. Bagryanskaya, T. Gutmann, V. Klimavicius, G. Buntkowsky, K. Sugisaki, Sh. Nakazawa, H. Matsuoka, K. Toyota, D. Shiomi, T. Takui
    Trityl-Aryl-Nitroxide Based Genuinely g-Engineered Biradicals, as Studied by Dynamic Nuclear Polarization, Multi-Frequency ESR/ENDOR, Arbitrary Wave Generator Pulse Microwave Waveform Spectroscopy and Quantum Chemical Calculations
    The Journal of Physical Chemistry A, 2019, V. 123, N 34, Pp 7507-7517 doi:10.1021/acs.jpca.9b07169, IF=2.641
  325. K. Sato, R. Hirao, I. Timofeev, O.A. Krumkacheva, E. Zaytseva, O.Yu. Rogozhnikova, V.M. Tormyshev, D.V. Trukhin, E.G. Bagryanskaya, T. Gutmann, V. Klimavicius, G. Buntkowsky, K. Sugisaki, Sh. Nakazawa, H. Matsuoka, K. Toyota, D. Shiomi, T. Takui
    Trityl-Aryl-Nitroxide Based Genuinely g-Engineered Biradicals, as Studied by Dynamic Nuclear Polarization, Multi-Frequency ESR/ENDOR, Arbitrary Wave Generator Pulse Microwave Waveform Spectroscopy and Quantum Chemical Calculations
    The Journal of Physical Chemistry A, 2019, V. 123, N 34, Pp 7507-7517 doi:10.1021/acs.jpca.9b07169, IF=2.641
  326. K. Sato, R. Hirao, I. Timofeev, O.A. Krumkacheva, E. Zaytseva, O.Yu. Rogozhnikova, V.M. Tormyshev, D.V. Trukhin, E.G. Bagryanskaya, T. Gutmann, V. Klimavicius, G. Buntkowsky, K. Sugisaki, Sh. Nakazawa, H. Matsuoka, K. Toyota, D. Shiomi, T. Takui
    Trityl-Aryl-Nitroxide Based Genuinely g-Engineered Biradicals, as Studied by Dynamic Nuclear Polarization, Multi-Frequency ESR/ENDOR, Arbitrary Wave Generator Pulse Microwave Waveform Spectroscopy and Quantum Chemical Calculations
    The Journal of Physical Chemistry A, 2019, V. 123, N 34, Pp 7507-7517 doi:10.1021/acs.jpca.9b07169, IF=2.641
  327. B.M. Urbagarova, V.V. Taraskin, E.E. Shults, L.D. Radnaeva
    Development of assay method by HPLC-DAD for the quantitative determination of chromones in Saposhnikovia divaricata radices and its validation
    IOP Conference Series: Earth and Environmental Science, 2019, V. 320, N 1, art. Num. 012056 (Conference Paper) doi:10.1088/1755-1315/320/1/012056
  328. B.M. Urbagarova, V.V. Taraskin, E.E. Shults, L.D. Radnaeva
    Development of assay method by HPLC-DAD for the quantitative determination of chromones in Saposhnikovia divaricata radices and its validation
    IOP Conference Series: Earth and Environmental Science, 2019, V. 320, N 1, art. Num. 012056 (Conference Paper) doi:10.1088/1755-1315/320/1/012056
  329. B.M. Urbagarova, V.V. Taraskin, E.E. Shults, L.D. Radnaeva
    Development of assay method by HPLC-DAD for the quantitative determination of chromones in Saposhnikovia divaricata radices and its validation
    IOP Conference Series: Earth and Environmental Science, 2019, V. 320, N 1, art. Num. 012056 (Conference Paper) doi:10.1088/1755-1315/320/1/012056
  330. D.M. Mognonov, S.V. Morozov, O. Zh. Ayurova, E.I. Chernyak, V.I. Rodionov, M.N. Grigor'eva, S.A. Stelmakh
    Thermal stability of polymer mixtures based on oxidized cellulose and polyguanidine hydrochloride
    IOP Conference Series: Earth and Environmental Science, 2019, V. 320, N 1, art. Num. 012052 (Conference Paper) doi:10.1088/1755-1315/320/1/012052
  331. D.M. Mognonov, S.V. Morozov, O. Zh. Ayurova, E.I. Chernyak, V.I. Rodionov, M.N. Grigor'eva, S.A. Stelmakh
    Thermal stability of polymer mixtures based on oxidized cellulose and polyguanidine hydrochloride
    IOP Conference Series: Earth and Environmental Science, 2019, V. 320, N 1, art. Num. 012052 (Conference Paper) doi:10.1088/1755-1315/320/1/012052
  332. D.M. Mognonov, S.V. Morozov, O. Zh. Ayurova, E.I. Chernyak, V.I. Rodionov, M.N. Grigor'eva, S.A. Stelmakh
    Thermal stability of polymer mixtures based on oxidized cellulose and polyguanidine hydrochloride
    IOP Conference Series: Earth and Environmental Science, 2019, V. 320, N 1, art. Num. 012052 (Conference Paper) doi:10.1088/1755-1315/320/1/012052
  333. D.M. Mognonov, S.V. Morozov, O. Zh. Ayurova, E.I. Chernyak, V.I. Rodionov, M.N. Grigor'eva, S.A. Stelmakh
    Thermal stability of polymer mixtures based on oxidized cellulose and polyguanidine hydrochloride
    IOP Conference Series: Earth and Environmental Science, 2019, V. 320, N 1, art. Num. 012052 (Conference Paper) doi:10.1088/1755-1315/320/1/012052
  334. Yu.V. Khoroshunova, D.A. Morozov, A.I. Taratayko, P.D. Gladkikh, Yu.I. Glazachev, I.A. Kirilyuk
    Synthesis of 1-azaspiro[4.4]nonan-1-oxyls via intramolecular 1,3-dipolar cycloaddition
    Beilstein Journal of Organic Chemistry, 2019, V. 15, Pp 2036-2042 doi:10.3762/bjoc.15.200, IF=2.595
  335. D. Polyukhov, A.S. Poryvaev, S.A. Gromilov, M.V. Fedin
    Precise Measurement and Controlled Tuning of Effective Window Sizes in ZIF-8 Framework for Efficient Separation of Xylenes
    Nano Letters, 2019, V. 19, N 9, Pp 6506-6510 doi:10.1021/acs.nanolett.9b02730, IF=12.279
  336. D. Polyukhov, A.S. Poryvaev, S.A. Gromilov, M.V. Fedin
    Precise Measurement and Controlled Tuning of Effective Window Sizes in ZIF-8 Framework for Efficient Separation of Xylenes
    Nano Letters, 2019, V. 19, N 9, Pp 6506-6510 doi:10.1021/acs.nanolett.9b02730, IF=12.279
  337. D. Polyukhov, A.S. Poryvaev, S.A. Gromilov, M.V. Fedin
    Precise Measurement and Controlled Tuning of Effective Window Sizes in ZIF-8 Framework for Efficient Separation of Xylenes
    Nano Letters, 2019, V. 19, N 9, Pp 6506-6510 doi:10.1021/acs.nanolett.9b02730, IF=12.279
  338. G. Audran, E. Bagryanskaya, I. Bagryanskaya, M. Edeleva, J.-P. Joly, S-R.A. Marque, A. Iurchenkova, P. Kaletina, S. Cherkasov, T.To. Hai, E. Tretyakov, S. Zhivetyeva
    How intramolecular coordination bonding (ICB) controls the homolysis of the C-ON bond in alkoxyamines
    RSC Adv., 2019,V. 9, N 44, Pp 25776-25789 doi:10.1039/C9RA05334D, IF=3.049
  339. G. Audran, E. Bagryanskaya, I. Bagryanskaya, M. Edeleva, J.-P. Joly, S-R.A. Marque, A. Iurchenkova, P. Kaletina, S. Cherkasov, T.To. Hai, E. Tretyakov, S. Zhivetyeva
    How intramolecular coordination bonding (ICB) controls the homolysis of the C-ON bond in alkoxyamines
    RSC Adv., 2019,V. 9, N 44, Pp 25776-25789 doi:10.1039/C9RA05334D, IF=3.049
  340. G. Audran, E. Bagryanskaya, I. Bagryanskaya, M. Edeleva, J.-P. Joly, S-R.A. Marque, A. Iurchenkova, P. Kaletina, S. Cherkasov, T.To. Hai, E. Tretyakov, S. Zhivetyeva
    How intramolecular coordination bonding (ICB) controls the homolysis of the C-ON bond in alkoxyamines
    RSC Adv., 2019,V. 9, N 44, Pp 25776-25789 doi:10.1039/C9RA05334D, IF=3.049
  341. G. Audran, E. Bagryanskaya, I. Bagryanskaya, M. Edeleva, J.-P. Joly, S-R.A. Marque, A. Iurchenkova, P. Kaletina, S. Cherkasov, T.To. Hai, E. Tretyakov, S. Zhivetyeva
    How intramolecular coordination bonding (ICB) controls the homolysis of the C-ON bond in alkoxyamines
    RSC Adv., 2019,V. 9, N 44, Pp 25776-25789 doi:10.1039/C9RA05334D, IF=3.049
  342. O.A. Chinak, A.V. Shernyukov, S.S. Ovcherenko, E.A. Sviridov, V.M. Golyshev, A.S. Fomin, I.A. Pyshnaya, E.V. Kuligina, V.A. Richter, E.G. Bagryanskaya
    Structural and Aggregation Features of a Human k-Casein Fragment with Antitumor and Cell-Penetrating Properties
    Molecules 2019, 24(16), 2919 doi:10.3390/molecules24162919, IF=3.59
  343. O.A. Chinak, A.V. Shernyukov, S.S. Ovcherenko, E.A. Sviridov, V.M. Golyshev, A.S. Fomin, I.A. Pyshnaya, E.V. Kuligina, V.A. Richter, E.G. Bagryanskaya
    Structural and Aggregation Features of a Human k-Casein Fragment with Antitumor and Cell-Penetrating Properties
    Molecules 2019, 24(16), 2919 doi:10.3390/molecules24162919, IF=3.59
  344. O.A. Chinak, A.V. Shernyukov, S.S. Ovcherenko, E.A. Sviridov, V.M. Golyshev, A.S. Fomin, I.A. Pyshnaya, E.V. Kuligina, V.A. Richter, E.G. Bagryanskaya
    Structural and Aggregation Features of a Human k-Casein Fragment with Antitumor and Cell-Penetrating Properties
    Molecules 2019, 24(16), 2919 doi:10.3390/molecules24162919, IF=3.59
  345. O.A. Chinak, A.V. Shernyukov, S.S. Ovcherenko, E.A. Sviridov, V.M. Golyshev, A.S. Fomin, I.A. Pyshnaya, E.V. Kuligina, V.A. Richter, E.G. Bagryanskaya
    Structural and Aggregation Features of a Human k-Casein Fragment with Antitumor and Cell-Penetrating Properties
    Molecules 2019, 24(16), 2919 doi:10.3390/molecules24162919, IF=3.59
  346. O.A. Chinak, A.V. Shernyukov, S.S. Ovcherenko, E.A. Sviridov, V.M. Golyshev, A.S. Fomin, I.A. Pyshnaya, E.V. Kuligina, V.A. Richter, E.G. Bagryanskaya
    Structural and Aggregation Features of a Human k-Casein Fragment with Antitumor and Cell-Penetrating Properties
    Molecules 2019, 24(16), 2919 doi:10.3390/molecules24162919, IF=3.59
  347. O.A. Chinak, A.V. Shernyukov, S.S. Ovcherenko, E.A. Sviridov, V.M. Golyshev, A.S. Fomin, I.A. Pyshnaya, E.V. Kuligina, V.A. Richter, E.G. Bagryanskaya
    Structural and Aggregation Features of a Human k-Casein Fragment with Antitumor and Cell-Penetrating Properties
    Molecules 2019, 24(16), 2919 doi:10.3390/molecules24162919, IF=3.59
  348. K. Volcho, A. Zakharenko, O. Luzina, T. Khomenko, E. Suslov, O. Salomatina, O. Zakharova, N. Li-Zhulanov, J. Reynisson, O. Lavrik, N. Salakhutdinov
    Tdp1 Inhibition as a Promising Approach to New Anticancer Drugs
    Proceedings 2019, 22(1), 35 (This article belongs to the Proceedings of The Molecules Medicinal Chemistry Symposium-Challenges in Drug Discovery Barcelona, Spain | 15-17 May 2019) doi:10.3390/proceedings2019022035
  349. K. Volcho, A. Zakharenko, O. Luzina, T. Khomenko, E. Suslov, O. Salomatina, O. Zakharova, N. Li-Zhulanov, J. Reynisson, O. Lavrik, N. Salakhutdinov
    Tdp1 Inhibition as a Promising Approach to New Anticancer Drugs
    Proceedings 2019, 22(1), 35 (This article belongs to the Proceedings of The Molecules Medicinal Chemistry Symposium-Challenges in Drug Discovery Barcelona, Spain | 15-17 May 2019) doi:10.3390/proceedings2019022035
  350. K. Volcho, A. Zakharenko, O. Luzina, T. Khomenko, E. Suslov, O. Salomatina, O. Zakharova, N. Li-Zhulanov, J. Reynisson, O. Lavrik, N. Salakhutdinov
    Tdp1 Inhibition as a Promising Approach to New Anticancer Drugs
    Proceedings 2019, 22(1), 35 (This article belongs to the Proceedings of The Molecules Medicinal Chemistry Symposium-Challenges in Drug Discovery Barcelona, Spain | 15-17 May 2019) doi:10.3390/proceedings2019022035
  351. K. Volcho, A. Zakharenko, O. Luzina, T. Khomenko, E. Suslov, O. Salomatina, O. Zakharova, N. Li-Zhulanov, J. Reynisson, O. Lavrik, N. Salakhutdinov
    Tdp1 Inhibition as a Promising Approach to New Anticancer Drugs
    Proceedings 2019, 22(1), 35 (This article belongs to the Proceedings of The Molecules Medicinal Chemistry Symposium-Challenges in Drug Discovery Barcelona, Spain | 15-17 May 2019) doi:10.3390/proceedings2019022035
  352. V. Shramko, Y. Ragino, E. Kashtanova, Y. Polonskaya, S. Morozov, E. Chernyak, A. Chernyavskyi
    The fatty acids composition in patients with coronary atherosclerosis and unstable atherosclerotic plaques
    Aterosclerosis, 2019, V. 287, E163-E163 Аннотация к встрече: EAS19-0489 doi:10.1016/j.atherosclerosis.2019.06.491, IF=4.255
  353. V. Shramko, Y. Ragino, E. Kashtanova, Y. Polonskaya, S. Morozov, E. Chernyak, A. Chernyavskyi
    The fatty acids composition in patients with coronary atherosclerosis and unstable atherosclerotic plaques
    Aterosclerosis, 2019, V. 287, E163-E163 Аннотация к встрече: EAS19-0489 doi:10.1016/j.atherosclerosis.2019.06.491, IF=4.255
  354. V. Shramko, Y. Ragino, E. Kashtanova, Y. Polonskaya, S. Morozov, E. Chernyak, A. Chernyavskyi
    The fatty acids composition in patients with coronary atherosclerosis and unstable atherosclerotic plaques
    Aterosclerosis, 2019, V. 287, E163-E163 Аннотация к встрече: EAS19-0489 doi:10.1016/j.atherosclerosis.2019.06.491, IF=4.255
  355. V. Shramko, Y. Ragino, E. Kashtanova, Y. Polonskaya, S. Morozov, E. Chernyak, A. Chernyavskyi
    The fatty acids composition in patients with coronary atherosclerosis and unstable atherosclerotic plaques
    Aterosclerosis, 2019, V. 287, E163-E163 Аннотация к встрече: EAS19-0489 doi:10.1016/j.atherosclerosis.2019.06.491, IF=4.255
  356. V. Shramko, Y. Ragino, E. Kashtanova, Y. Polonskaya, S. Morozov, E. Chernyak, A. Chernyavskyi
    The fatty acids composition in patients with coronary atherosclerosis and unstable atherosclerotic plaques
    Aterosclerosis, 2019, V. 287, E163-E163 Аннотация к встрече: EAS19-0489 doi:10.1016/j.atherosclerosis.2019.06.491, IF=4.255
  357. V. Shramko, Y. Polonskaya, E. Kashtanova, S. Morozov, A. Chernyavskyi, Y. Ragino
    Associations of polyunsaturated fatty acids with oxidative-antioxidant parameters of the blood serum in coronary atherosclerosis
    Aterosclerosis, 2019, V. 287, E286-E286 Аннотация к встрече: EAS19-1098 doi:10.1016/j.atherosclerosis.2019.06.886, IF=4.255
  358. V. Shramko, Y. Polonskaya, E. Kashtanova, S. Morozov, A. Chernyavskyi, Y. Ragino
    Associations of polyunsaturated fatty acids with oxidative-antioxidant parameters of the blood serum in coronary atherosclerosis
    Aterosclerosis, 2019, V. 287, E286-E286 Аннотация к встрече: EAS19-1098 doi:10.1016/j.atherosclerosis.2019.06.886, IF=4.255
  359. V. Shramko, Y. Polonskaya, E. Kashtanova, S. Morozov, A. Chernyavskyi, Y. Ragino
    Associations of polyunsaturated fatty acids with oxidative-antioxidant parameters of the blood serum in coronary atherosclerosis
    Aterosclerosis, 2019, V. 287, E286-E286 Аннотация к встрече: EAS19-1098 doi:10.1016/j.atherosclerosis.2019.06.886, IF=4.255
  360. V. Shramko, Y. Polonskaya, E. Kashtanova, S. Morozov, A. Chernyavskyi, Y. Ragino
    Associations of polyunsaturated fatty acids with oxidative-antioxidant parameters of the blood serum in coronary atherosclerosis
    Aterosclerosis, 2019, V. 287, E286-E286 Аннотация к встрече: EAS19-1098 doi:10.1016/j.atherosclerosis.2019.06.886, IF=4.255
  361. V. Shramko, Y. Polonskaya, E. Kashtanova, S. Morozov, A. Chernyavskyi, Y. Ragino
    Associations of polyunsaturated fatty acids with oxidative-antioxidant parameters of the blood serum in coronary atherosclerosis
    Aterosclerosis, 2019, V. 287, E286-E286 Аннотация к встрече: EAS19-1098 doi:10.1016/j.atherosclerosis.2019.06.886, IF=4.255
  362. A.A. Lomzov, M.S. Kupryushkin, A.V. Shernyukov, M.D. Nekrasov, I.S. Dovydenko, D.A. Stetsenko, D.V. Pyshnyi
    Data for isolation and properties analysis of diastereomers of a mono-substituted phosphoryl guanidine trideoxyribonucleotide
    Data in Brief, 2019, V. 25, August 2019, Article number 104148 doi:10.1016/j.dib.2019.104148
  363. A.A. Lomzov, M.S. Kupryushkin, A.V. Shernyukov, M.D. Nekrasov, I.S. Dovydenko, D.A. Stetsenko, D.V. Pyshnyi
    Data for isolation and properties analysis of diastereomers of a mono-substituted phosphoryl guanidine trideoxyribonucleotide
    Data in Brief, 2019, V. 25, August 2019, Article number 104148 doi:10.1016/j.dib.2019.104148
  364. A.A. Lomzov, M.S. Kupryushkin, A.V. Shernyukov, M.D. Nekrasov, I.S. Dovydenko, D.A. Stetsenko, D.V. Pyshnyi
    Data for isolation and properties analysis of diastereomers of a mono-substituted phosphoryl guanidine trideoxyribonucleotide
    Data in Brief, 2019, V. 25, August 2019, Article number 104148 doi:10.1016/j.dib.2019.104148
  365. A.A. Lomzov, M.S. Kupryushkin, A.V. Shernyukov, M.D. Nekrasov, I.S. Dovydenko, D.A. Stetsenko, D.V. Pyshnyi
    Data for isolation and properties analysis of diastereomers of a mono-substituted phosphoryl guanidine trideoxyribonucleotide
    Data in Brief, 2019, V. 25, August 2019, Article number 104148 doi:10.1016/j.dib.2019.104148
  366. A.A. Lomzov, M.S. Kupryushkin, A.V. Shernyukov, M.D. Nekrasov, I.S. Dovydenko, D.A. Stetsenko, D.V. Pyshnyi
    Data for isolation and properties analysis of diastereomers of a mono-substituted phosphoryl guanidine trideoxyribonucleotide
    Data in Brief, 2019, V. 25, August 2019, Article number 104148 doi:10.1016/j.dib.2019.104148
  367. A.A. Lomzov, M.S. Kupryushkin, A.V. Shernyukov, M.D. Nekrasov, I.S. Dovydenko, D.A. Stetsenko, D.V. Pyshnyi
    Data for isolation and properties analysis of diastereomers of a mono-substituted phosphoryl guanidine trideoxyribonucleotide
    Data in Brief, 2019, V. 25, August 2019, Article number 104148 doi:10.1016/j.dib.2019.104148
  368. A.I. Titkov, O.A. Logutenko, E.Yu. Gerasimov, I.K. Shundrina, E.V. Karpova, N.Z. Lyakhov
    Synthesis of silver nanoparticles stabilized by carboxylated methoxypolyethylene glycols: the role of carboxyl terminal groups in the particle size and morphology
    Journal of Inclusion Phenomena and Macrocyclic Chemistry, 2019, V. 94, N 3-4, pp 287-295, SI doi:10.1007/s10847-019-00921-x, IF=1.429
  369. A.I. Titkov, O.A. Logutenko, E.Yu. Gerasimov, I.K. Shundrina, E.V. Karpova, N.Z. Lyakhov
    Synthesis of silver nanoparticles stabilized by carboxylated methoxypolyethylene glycols: the role of carboxyl terminal groups in the particle size and morphology
    Journal of Inclusion Phenomena and Macrocyclic Chemistry, 2019, V. 94, N 3-4, pp 287-295, SI doi:10.1007/s10847-019-00921-x, IF=1.429
  370. A.I. Titkov, O.A. Logutenko, E.Yu. Gerasimov, I.K. Shundrina, E.V. Karpova, N.Z. Lyakhov
    Synthesis of silver nanoparticles stabilized by carboxylated methoxypolyethylene glycols: the role of carboxyl terminal groups in the particle size and morphology
    Journal of Inclusion Phenomena and Macrocyclic Chemistry, 2019, V. 94, N 3-4, pp 287-295, SI doi:10.1007/s10847-019-00921-x, IF=1.429
  371. A.I. Titkov, O.A. Logutenko, E.Yu. Gerasimov, I.K. Shundrina, E.V. Karpova, N.Z. Lyakhov
    Synthesis of silver nanoparticles stabilized by carboxylated methoxypolyethylene glycols: the role of carboxyl terminal groups in the particle size and morphology
    Journal of Inclusion Phenomena and Macrocyclic Chemistry, 2019, V. 94, N 3-4, pp 287-295, SI doi:10.1007/s10847-019-00921-x, IF=1.429
  372. М.В. Кручинина, А.А. Громов, М.В. Паруликова, А.В. Рабко, М.В. Шашков, А.С. Соколова, В.Н. Кручинин
    Особенности состава жирных кислот мембран эритроцитов у пациентов с резистентной артериальной гипертензией (пилотное исследование)
    Атеросклероз. 2019. Т. 15. № 2. С. 24-31. doi:10.15372/ATER20190204
  373. М.В. Кручинина, А.А. Громов, М.В. Паруликова, А.В. Рабко, М.В. Шашков, А.С. Соколова, В.Н. Кручинин
    Особенности состава жирных кислот мембран эритроцитов у пациентов с резистентной артериальной гипертензией (пилотное исследование)
    Атеросклероз. 2019. Т. 15. № 2. С. 24-31. doi:10.15372/ATER20190204
  374. М.В. Кручинина, А.А. Громов, М.В. Паруликова, А.В. Рабко, М.В. Шашков, А.С. Соколова, В.Н. Кручинин
    Особенности состава жирных кислот мембран эритроцитов у пациентов с резистентной артериальной гипертензией (пилотное исследование)
    Атеросклероз. 2019. Т. 15. № 2. С. 24-31. doi:10.15372/ATER20190204
  375. М.В. Кручинина, А.А. Громов, М.В. Паруликова, А.В. Рабко, М.В. Шашков, А.С. Соколова, В.Н. Кручинин
    Особенности состава жирных кислот мембран эритроцитов у пациентов с резистентной артериальной гипертензией (пилотное исследование)
    Атеросклероз. 2019. Т. 15. № 2. С. 24-31. doi:10.15372/ATER20190204
  376. М.В. Кручинина, А.А. Громов, М.В. Паруликова, А.В. Рабко, М.В. Шашков, А.С. Соколова, В.Н. Кручинин
    Особенности состава жирных кислот мембран эритроцитов у пациентов с резистентной артериальной гипертензией (пилотное исследование)
    Атеросклероз. 2019. Т. 15. № 2. С. 24-31. doi:10.15372/ATER20190204
  377. М.В. Кручинина, А.А. Громов, М.В. Паруликова, А.В. Рабко, М.В. Шашков, А.С. Соколова, В.Н. Кручинин
    Особенности состава жирных кислот мембран эритроцитов у пациентов с резистентной артериальной гипертензией (пилотное исследование)
    Атеросклероз. 2019. Т. 15. № 2. С. 24-31. doi:10.15372/ATER20190204
  378. A.Yu. Baranov, M.I. Rakhmanova, D.G. Samsonenko, S.F. Malysheva, N.A. Belogorlova, I.Yu. Bagryanskaya, V.P. Fedin, A.V. Artem'ev
    Silver(I) and gold(I) complexes with tris[2-(2-pyridyl)ethyl]phosphine
    Inorganica Chimica Acta, 2019, V. 494, Pp 78-83 doi:10.1016/j.ica.2019.05.015, IF=2.433
  379. A.Yu. Baranov, M.I. Rakhmanova, D.G. Samsonenko, S.F. Malysheva, N.A. Belogorlova, I.Yu. Bagryanskaya, V.P. Fedin, A.V. Artem'ev
    Silver(I) and gold(I) complexes with tris[2-(2-pyridyl)ethyl]phosphine
    Inorganica Chimica Acta, 2019, V. 494, Pp 78-83 doi:10.1016/j.ica.2019.05.015, IF=2.433
  380. A.Yu. Baranov, M.I. Rakhmanova, D.G. Samsonenko, S.F. Malysheva, N.A. Belogorlova, I.Yu. Bagryanskaya, V.P. Fedin, A.V. Artem'ev
    Silver(I) and gold(I) complexes with tris[2-(2-pyridyl)ethyl]phosphine
    Inorganica Chimica Acta, 2019, V. 494, Pp 78-83 doi:10.1016/j.ica.2019.05.015, IF=2.433
  381. A.Yu. Baranov, M.I. Rakhmanova, D.G. Samsonenko, S.F. Malysheva, N.A. Belogorlova, I.Yu. Bagryanskaya, V.P. Fedin, A.V. Artem'ev
    Silver(I) and gold(I) complexes with tris[2-(2-pyridyl)ethyl]phosphine
    Inorganica Chimica Acta, 2019, V. 494, Pp 78-83 doi:10.1016/j.ica.2019.05.015, IF=2.433
  382. A.Yu. Baranov, M.I. Rakhmanova, D.G. Samsonenko, S.F. Malysheva, N.A. Belogorlova, I.Yu. Bagryanskaya, V.P. Fedin, A.V. Artem'ev
    Silver(I) and gold(I) complexes with tris[2-(2-pyridyl)ethyl]phosphine
    Inorganica Chimica Acta, 2019, V. 494, Pp 78-83 doi:10.1016/j.ica.2019.05.015, IF=2.433
  383. A.Yu. Baranov, M.I. Rakhmanova, D.G. Samsonenko, S.F. Malysheva, N.A. Belogorlova, I.Yu. Bagryanskaya, V.P. Fedin, A.V. Artem'ev
    Silver(I) and gold(I) complexes with tris[2-(2-pyridyl)ethyl]phosphine
    Inorganica Chimica Acta, 2019, V. 494, Pp 78-83 doi:10.1016/j.ica.2019.05.015, IF=2.433
  384. A.Yu. Baranov, M.I. Rakhmanova, D.G. Samsonenko, S.F. Malysheva, N.A. Belogorlova, I.Yu. Bagryanskaya, V.P. Fedin, A.V. Artem'ev
    Silver(I) and gold(I) complexes with tris[2-(2-pyridyl)ethyl]phosphine
    Inorganica Chimica Acta, 2019, V. 494, Pp 78-83 doi:10.1016/j.ica.2019.05.015, IF=2.433
  385. T. Yokoyama, A. Taguchi, H. Kubota, N.J. Stewart, Sh. Matsumoto, I.A. Kirilyuk, H. Hirata
    Simultaneous T2* mapping of 14N- and 15N-labeled dicarboxy-PROXYLs using CW-EPR-based single-point imaging
    Journal of Magnetic Resonance, 2019, V. 305, Pp 122-130 doi:10.1016/j.jmr.2019.06.012, IF=2.689
  386. T. Yokoyama, A. Taguchi, H. Kubota, N.J. Stewart, Sh. Matsumoto, I.A. Kirilyuk, H. Hirata
    Simultaneous T2* mapping of 14N- and 15N-labeled dicarboxy-PROXYLs using CW-EPR-based single-point imaging
    Journal of Magnetic Resonance, 2019, V. 305, Pp 122-130 doi:10.1016/j.jmr.2019.06.012, IF=2.689
  387. T. Yokoyama, A. Taguchi, H. Kubota, N.J. Stewart, Sh. Matsumoto, I.A. Kirilyuk, H. Hirata
    Simultaneous T2* mapping of 14N- and 15N-labeled dicarboxy-PROXYLs using CW-EPR-based single-point imaging
    Journal of Magnetic Resonance, 2019, V. 305, Pp 122-130 doi:10.1016/j.jmr.2019.06.012, IF=2.689
  388. T. Yokoyama, A. Taguchi, H. Kubota, N.J. Stewart, Sh. Matsumoto, I.A. Kirilyuk, H. Hirata
    Simultaneous T2* mapping of 14N- and 15N-labeled dicarboxy-PROXYLs using CW-EPR-based single-point imaging
    Journal of Magnetic Resonance, 2019, V. 305, Pp 122-130 doi:10.1016/j.jmr.2019.06.012, IF=2.689
  389. T. Yokoyama, A. Taguchi, H. Kubota, N.J. Stewart, Sh. Matsumoto, I.A. Kirilyuk, H. Hirata
    Simultaneous T2* mapping of 14N- and 15N-labeled dicarboxy-PROXYLs using CW-EPR-based single-point imaging
    Journal of Magnetic Resonance, 2019, V. 305, Pp 122-130 doi:10.1016/j.jmr.2019.06.012, IF=2.689
  390. T. Yokoyama, A. Taguchi, H. Kubota, N.J. Stewart, Sh. Matsumoto, I.A. Kirilyuk, H. Hirata
    Simultaneous T2* mapping of 14N- and 15N-labeled dicarboxy-PROXYLs using CW-EPR-based single-point imaging
    Journal of Magnetic Resonance, 2019, V. 305, Pp 122-130 doi:10.1016/j.jmr.2019.06.012, IF=2.689
  391. E. Zaytseva, I. Timofeev, O. Krumkacheva, D. Parkhomenko, D. Mazhukin, K. Sato, H. Matsuoka, T. Takui, E. Bagryanskaya
    EPR and DEER Characterization of New Mixed Weakly Coupled Nitroxide Triradicals for Molecular Three-Spin Qubits
    Applied Magnetic Resonance, 2019, V. 50, N 8, pp 967-976 doi:10.1007/s00723-019-01125-9, IF=0.78
  392. E. Zaytseva, I. Timofeev, O. Krumkacheva, D. Parkhomenko, D. Mazhukin, K. Sato, H. Matsuoka, T. Takui, E. Bagryanskaya
    EPR and DEER Characterization of New Mixed Weakly Coupled Nitroxide Triradicals for Molecular Three-Spin Qubits
    Applied Magnetic Resonance, 2019, V. 50, N 8, pp 967-976 doi:10.1007/s00723-019-01125-9, IF=0.78
  393. E. Zaytseva, I. Timofeev, O. Krumkacheva, D. Parkhomenko, D. Mazhukin, K. Sato, H. Matsuoka, T. Takui, E. Bagryanskaya
    EPR and DEER Characterization of New Mixed Weakly Coupled Nitroxide Triradicals for Molecular Three-Spin Qubits
    Applied Magnetic Resonance, 2019, V. 50, N 8, pp 967-976 doi:10.1007/s00723-019-01125-9, IF=0.78
  394. E. Zaytseva, I. Timofeev, O. Krumkacheva, D. Parkhomenko, D. Mazhukin, K. Sato, H. Matsuoka, T. Takui, E. Bagryanskaya
    EPR and DEER Characterization of New Mixed Weakly Coupled Nitroxide Triradicals for Molecular Three-Spin Qubits
    Applied Magnetic Resonance, 2019, V. 50, N 8, pp 967-976 doi:10.1007/s00723-019-01125-9, IF=0.78
  395. E. Zaytseva, I. Timofeev, O. Krumkacheva, D. Parkhomenko, D. Mazhukin, K. Sato, H. Matsuoka, T. Takui, E. Bagryanskaya
    EPR and DEER Characterization of New Mixed Weakly Coupled Nitroxide Triradicals for Molecular Three-Spin Qubits
    Applied Magnetic Resonance, 2019, V. 50, N 8, pp 967-976 doi:10.1007/s00723-019-01125-9, IF=0.78
  396. Ю.А. Брылева, Л.А. Глинская, А.М. Агафонцев, М.И. Рахманова, А.С. Богомяков, Т.С. Сухих, Е.А. Горбунова, А.В. Ткачев, С.В. Ларионов
    Синтез, структура, магнитные и фотолюминесцентные свойства комплексов лантанидов(iii) с лигандом на основе 1,10-фенантролина и (+)-3-карена
    Журнал структурной химии, 2019, V. 60, N 8, pp 1366-1378 (Synthesis, Structure, Magnetic and Photoluminescent Properties of Lanthanide(III) Complexes with a Ligand Based on 1,10-Phenanthroline and (+)-3-Carene/ Yu.A. Bryleva, L.A. Glinskaya, A.M. Agafontsev, M.I. Rakhmanova, A.S. Bogomyakov, T.S. Sukhikh, E.A. Gorbunova, A.V. Tkachev, S.V. Larionov// Journal of Structural Chemistry, 2019, V. 60, N 8, pp 1314-1326 doi:10.1134/S0022476619080110), IF=0.541
  397. Ю.А. Брылева, Л.А. Глинская, А.М. Агафонцев, М.И. Рахманова, А.С. Богомяков, Т.С. Сухих, Е.А. Горбунова, А.В. Ткачев, С.В. Ларионов
    Синтез, структура, магнитные и фотолюминесцентные свойства комплексов лантанидов(iii) с лигандом на основе 1,10-фенантролина и (+)-3-карена
    Журнал структурной химии, 2019, V. 60, N 8, pp 1366-1378 (Synthesis, Structure, Magnetic and Photoluminescent Properties of Lanthanide(III) Complexes with a Ligand Based on 1,10-Phenanthroline and (+)-3-Carene/ Yu.A. Bryleva, L.A. Glinskaya, A.M. Agafontsev, M.I. Rakhmanova, A.S. Bogomyakov, T.S. Sukhikh, E.A. Gorbunova, A.V. Tkachev, S.V. Larionov// Journal of Structural Chemistry, 2019, V. 60, N 8, pp 1314-1326 doi:10.1134/S0022476619080110), IF=0.541
  398. Ю.А. Брылева, Л.А. Глинская, А.М. Агафонцев, М.И. Рахманова, А.С. Богомяков, Т.С. Сухих, Е.А. Горбунова, А.В. Ткачев, С.В. Ларионов
    Синтез, структура, магнитные и фотолюминесцентные свойства комплексов лантанидов(iii) с лигандом на основе 1,10-фенантролина и (+)-3-карена
    Журнал структурной химии, 2019, V. 60, N 8, pp 1366-1378 (Synthesis, Structure, Magnetic and Photoluminescent Properties of Lanthanide(III) Complexes with a Ligand Based on 1,10-Phenanthroline and (+)-3-Carene/ Yu.A. Bryleva, L.A. Glinskaya, A.M. Agafontsev, M.I. Rakhmanova, A.S. Bogomyakov, T.S. Sukhikh, E.A. Gorbunova, A.V. Tkachev, S.V. Larionov// Journal of Structural Chemistry, 2019, V. 60, N 8, pp 1314-1326 doi:10.1134/S0022476619080110), IF=0.541
  399. Ю.А. Брылева, Л.А. Глинская, А.М. Агафонцев, М.И. Рахманова, А.С. Богомяков, Т.С. Сухих, Е.А. Горбунова, А.В. Ткачев, С.В. Ларионов
    Синтез, структура, магнитные и фотолюминесцентные свойства комплексов лантанидов(iii) с лигандом на основе 1,10-фенантролина и (+)-3-карена
    Журнал структурной химии, 2019, V. 60, N 8, pp 1366-1378 (Synthesis, Structure, Magnetic and Photoluminescent Properties of Lanthanide(III) Complexes with a Ligand Based on 1,10-Phenanthroline and (+)-3-Carene/ Yu.A. Bryleva, L.A. Glinskaya, A.M. Agafontsev, M.I. Rakhmanova, A.S. Bogomyakov, T.S. Sukhikh, E.A. Gorbunova, A.V. Tkachev, S.V. Larionov// Journal of Structural Chemistry, 2019, V. 60, N 8, pp 1314-1326 doi:10.1134/S0022476619080110), IF=0.541
  400. Ю.А. Брылева, Л.А. Глинская, А.М. Агафонцев, М.И. Рахманова, А.С. Богомяков, Т.С. Сухих, Е.А. Горбунова, А.В. Ткачев, С.В. Ларионов
    Синтез, структура, магнитные и фотолюминесцентные свойства комплексов лантанидов(iii) с лигандом на основе 1,10-фенантролина и (+)-3-карена
    Журнал структурной химии, 2019, V. 60, N 8, pp 1366-1378 (Synthesis, Structure, Magnetic and Photoluminescent Properties of Lanthanide(III) Complexes with a Ligand Based on 1,10-Phenanthroline and (+)-3-Carene/ Yu.A. Bryleva, L.A. Glinskaya, A.M. Agafontsev, M.I. Rakhmanova, A.S. Bogomyakov, T.S. Sukhikh, E.A. Gorbunova, A.V. Tkachev, S.V. Larionov// Journal of Structural Chemistry, 2019, V. 60, N 8, pp 1314-1326 doi:10.1134/S0022476619080110), IF=0.541
  401. Ю.А. Брылева, Л.А. Глинская, А.М. Агафонцев, М.И. Рахманова, А.С. Богомяков, Т.С. Сухих, Е.А. Горбунова, А.В. Ткачев, С.В. Ларионов
    Синтез, структура, магнитные и фотолюминесцентные свойства комплексов лантанидов(iii) с лигандом на основе 1,10-фенантролина и (+)-3-карена
    Журнал структурной химии, 2019, V. 60, N 8, pp 1366-1378 (Synthesis, Structure, Magnetic and Photoluminescent Properties of Lanthanide(III) Complexes with a Ligand Based on 1,10-Phenanthroline and (+)-3-Carene/ Yu.A. Bryleva, L.A. Glinskaya, A.M. Agafontsev, M.I. Rakhmanova, A.S. Bogomyakov, T.S. Sukhikh, E.A. Gorbunova, A.V. Tkachev, S.V. Larionov// Journal of Structural Chemistry, 2019, V. 60, N 8, pp 1314-1326 doi:10.1134/S0022476619080110), IF=0.541
  402. Ю.А. Брылева, Л.А. Глинская, А.М. Агафонцев, М.И. Рахманова, А.С. Богомяков, Т.С. Сухих, Е.А. Горбунова, А.В. Ткачев, С.В. Ларионов
    Синтез, структура, магнитные и фотолюминесцентные свойства комплексов лантанидов(iii) с лигандом на основе 1,10-фенантролина и (+)-3-карена
    Журнал структурной химии, 2019, V. 60, N 8, pp 1366-1378 (Synthesis, Structure, Magnetic and Photoluminescent Properties of Lanthanide(III) Complexes with a Ligand Based on 1,10-Phenanthroline and (+)-3-Carene/ Yu.A. Bryleva, L.A. Glinskaya, A.M. Agafontsev, M.I. Rakhmanova, A.S. Bogomyakov, T.S. Sukhikh, E.A. Gorbunova, A.V. Tkachev, S.V. Larionov// Journal of Structural Chemistry, 2019, V. 60, N 8, pp 1314-1326 doi:10.1134/S0022476619080110), IF=0.541
  403. A.V. Markov, V.O. Babich, I.I. Popadyuk, O.V. Salomatina, E.B. Logashenko, N.F. Salakhutdinov, M.A. Zenkova
    Novel Derivatives of Deoxycholic Acid Bearing Linear Aliphatic Diamine and Aminoalcohol Moieties and their Cyclic Analogs at the C3 Position: Synthesis and Evaluation of Their In Vitro Antitumor Potential
    Molecules 2019, 24(14), 2644 doi:10.3390/molecules24142644, IF=3.59
  404. A.V. Markov, V.O. Babich, I.I. Popadyuk, O.V. Salomatina, E.B. Logashenko, N.F. Salakhutdinov, M.A. Zenkova
    Novel Derivatives of Deoxycholic Acid Bearing Linear Aliphatic Diamine and Aminoalcohol Moieties and their Cyclic Analogs at the C3 Position: Synthesis and Evaluation of Their In Vitro Antitumor Potential
    Molecules 2019, 24(14), 2644 doi:10.3390/molecules24142644, IF=3.59
  405. A.V. Markov, V.O. Babich, I.I. Popadyuk, O.V. Salomatina, E.B. Logashenko, N.F. Salakhutdinov, M.A. Zenkova
    Novel Derivatives of Deoxycholic Acid Bearing Linear Aliphatic Diamine and Aminoalcohol Moieties and their Cyclic Analogs at the C3 Position: Synthesis and Evaluation of Their In Vitro Antitumor Potential
    Molecules 2019, 24(14), 2644 doi:10.3390/molecules24142644, IF=3.59
  406. A.V. Markov, V.O. Babich, I.I. Popadyuk, O.V. Salomatina, E.B. Logashenko, N.F. Salakhutdinov, M.A. Zenkova
    Novel Derivatives of Deoxycholic Acid Bearing Linear Aliphatic Diamine and Aminoalcohol Moieties and their Cyclic Analogs at the C3 Position: Synthesis and Evaluation of Their In Vitro Antitumor Potential
    Molecules 2019, 24(14), 2644 doi:10.3390/molecules24142644, IF=3.59
  407. A.A. Chepanova, E.S. Mozhaitsev, A.A. Munkuev, E.V. Suslov, D.V. Korchagina, O.D. Zakharova, A.L. Zakharenko, J. Patel, D.M. Ayine-Tora, J. Reynisson, I.K. H. Leung, K.P. Volcho, N.F. Salakhutdinov, O.I. Lavrik
    The Development of Tyrosyl-DNA Phosphodiesterase 1 Inhibitors. Combination of Monoterpene and Adamantine Moieties via Amide or Thioamide Bridges
    Applied Sciences, 2019, 9(13), 2767 doi:10.3390/app9132767, IF=2.217
  408. A.A. Chepanova, E.S. Mozhaitsev, A.A. Munkuev, E.V. Suslov, D.V. Korchagina, O.D. Zakharova, A.L. Zakharenko, J. Patel, D.M. Ayine-Tora, J. Reynisson, I.K. H. Leung, K.P. Volcho, N.F. Salakhutdinov, O.I. Lavrik
    The Development of Tyrosyl-DNA Phosphodiesterase 1 Inhibitors. Combination of Monoterpene and Adamantine Moieties via Amide or Thioamide Bridges
    Applied Sciences, 2019, 9(13), 2767 doi:10.3390/app9132767, IF=2.217
  409. A.A. Chepanova, E.S. Mozhaitsev, A.A. Munkuev, E.V. Suslov, D.V. Korchagina, O.D. Zakharova, A.L. Zakharenko, J. Patel, D.M. Ayine-Tora, J. Reynisson, I.K. H. Leung, K.P. Volcho, N.F. Salakhutdinov, O.I. Lavrik
    The Development of Tyrosyl-DNA Phosphodiesterase 1 Inhibitors. Combination of Monoterpene and Adamantine Moieties via Amide or Thioamide Bridges
    Applied Sciences, 2019, 9(13), 2767 doi:10.3390/app9132767, IF=2.217
  410. A.A. Chepanova, E.S. Mozhaitsev, A.A. Munkuev, E.V. Suslov, D.V. Korchagina, O.D. Zakharova, A.L. Zakharenko, J. Patel, D.M. Ayine-Tora, J. Reynisson, I.K. H. Leung, K.P. Volcho, N.F. Salakhutdinov, O.I. Lavrik
    The Development of Tyrosyl-DNA Phosphodiesterase 1 Inhibitors. Combination of Monoterpene and Adamantine Moieties via Amide or Thioamide Bridges
    Applied Sciences, 2019, 9(13), 2767 doi:10.3390/app9132767, IF=2.217
  411. A.A. Chepanova, E.S. Mozhaitsev, A.A. Munkuev, E.V. Suslov, D.V. Korchagina, O.D. Zakharova, A.L. Zakharenko, J. Patel, D.M. Ayine-Tora, J. Reynisson, I.K. H. Leung, K.P. Volcho, N.F. Salakhutdinov, O.I. Lavrik
    The Development of Tyrosyl-DNA Phosphodiesterase 1 Inhibitors. Combination of Monoterpene and Adamantine Moieties via Amide or Thioamide Bridges
    Applied Sciences, 2019, 9(13), 2767 doi:10.3390/app9132767, IF=2.217
  412. A.A. Chepanova, E.S. Mozhaitsev, A.A. Munkuev, E.V. Suslov, D.V. Korchagina, O.D. Zakharova, A.L. Zakharenko, J. Patel, D.M. Ayine-Tora, J. Reynisson, I.K. H. Leung, K.P. Volcho, N.F. Salakhutdinov, O.I. Lavrik
    The Development of Tyrosyl-DNA Phosphodiesterase 1 Inhibitors. Combination of Monoterpene and Adamantine Moieties via Amide or Thioamide Bridges
    Applied Sciences, 2019, 9(13), 2767 doi:10.3390/app9132767, IF=2.217
  413. A.A. Chepanova, E.S. Mozhaitsev, A.A. Munkuev, E.V. Suslov, D.V. Korchagina, O.D. Zakharova, A.L. Zakharenko, J. Patel, D.M. Ayine-Tora, J. Reynisson, I.K. H. Leung, K.P. Volcho, N.F. Salakhutdinov, O.I. Lavrik
    The Development of Tyrosyl-DNA Phosphodiesterase 1 Inhibitors. Combination of Monoterpene and Adamantine Moieties via Amide or Thioamide Bridges
    Applied Sciences, 2019, 9(13), 2767 doi:10.3390/app9132767, IF=2.217
  414. A.A. Chepanova, E.S. Mozhaitsev, A.A. Munkuev, E.V. Suslov, D.V. Korchagina, O.D. Zakharova, A.L. Zakharenko, J. Patel, D.M. Ayine-Tora, J. Reynisson, I.K. H. Leung, K.P. Volcho, N.F. Salakhutdinov, O.I. Lavrik
    The Development of Tyrosyl-DNA Phosphodiesterase 1 Inhibitors. Combination of Monoterpene and Adamantine Moieties via Amide or Thioamide Bridges
    Applied Sciences, 2019, 9(13), 2767 doi:10.3390/app9132767, IF=2.217
  415. A. Ochkasova, M. Meschaninova, A. Venyaminova, A. Ivanov, D. Graifer, G. Karpova
    The human ribosome as a possible mRNA quality controller that recognizes the abasic site by protein uS3
    FEBS OPEN BIO, V. 9, Pp 163-163, Suppl. 1 Аннотация к встрече: P-11-010, WOS:000486972402108, IF=1.958
  416. M.V. Kruchinina, A.A. Gromov, M.V. Shashkov, A.S. Sokolova, V.N. Kruchinin
    Peculiarities of fatty acid profile of erythrocyte membranes in patients with resistant arterial hypertension: possible contribution to pathogenesis of the disease
    JOURNAL OF HYPERTENSION, 2019, V. 37 , Pp E108-E108, Sup. 1 (29th European Meeting of Hypertension and Cardiovascular Protection of the European-Society-of-Hypertension (ESH), Milan, ITALY, JUN 21-24, 2019) doi:10.1097/01.hjh.0000571388.53224.97
  417. M.V. Kruchinina, A.A. Gromov, M.V. Shashkov, A.S. Sokolova, V.N. Kruchinin
    Peculiarities of fatty acid profile of erythrocyte membranes in patients with resistant arterial hypertension: possible contribution to pathogenesis of the disease
    JOURNAL OF HYPERTENSION, 2019, V. 37 , Pp E108-E108, Sup. 1 (29th European Meeting of Hypertension and Cardiovascular Protection of the European-Society-of-Hypertension (ESH), Milan, ITALY, JUN 21-24, 2019) doi:10.1097/01.hjh.0000571388.53224.97
  418. M.V. Kruchinina, A.A. Gromov, M.V. Shashkov, A.S. Sokolova, V.N. Kruchinin
    Peculiarities of fatty acid profile of erythrocyte membranes in patients with resistant arterial hypertension: possible contribution to pathogenesis of the disease
    JOURNAL OF HYPERTENSION, 2019, V. 37 , Pp E108-E108, Sup. 1 (29th European Meeting of Hypertension and Cardiovascular Protection of the European-Society-of-Hypertension (ESH), Milan, ITALY, JUN 21-24, 2019) doi:10.1097/01.hjh.0000571388.53224.97
  419. M.V. Kruchinina, A.A. Gromov, M.V. Shashkov, A.S. Sokolova, V.N. Kruchinin
    Peculiarities of fatty acid profile of erythrocyte membranes in patients with resistant arterial hypertension: possible contribution to pathogenesis of the disease
    JOURNAL OF HYPERTENSION, 2019, V. 37 , Pp E108-E108, Sup. 1 (29th European Meeting of Hypertension and Cardiovascular Protection of the European-Society-of-Hypertension (ESH), Milan, ITALY, JUN 21-24, 2019) doi:10.1097/01.hjh.0000571388.53224.97
  420. M.V. Kruchinina, A.A. Gromov, Ya.I. Prudnikova, M.V. Shashkov, A.S. Sokolova, V.N. Kruchinin, I.N. Yakovina, N.A. Bannova
    Perturbation of fatty acids of erythrocyte membranes and blood serum in patients with colorectal cancer: new opportunities for diagnostics
    Annals of Oncology. 2019. Т. 30. № S4. С. 109. Аннотация к встрече: P - 003 doi:10.1093/annonc/mdz155, IF=14.196
  421. M.V. Kruchinina, A.A. Gromov, Ya.I. Prudnikova, M.V. Shashkov, A.S. Sokolova, V.N. Kruchinin, I.N. Yakovina, N.A. Bannova
    Perturbation of fatty acids of erythrocyte membranes and blood serum in patients with colorectal cancer: new opportunities for diagnostics
    Annals of Oncology. 2019. Т. 30. № S4. С. 109. Аннотация к встрече: P - 003 doi:10.1093/annonc/mdz155, IF=14.196
  422. M.V. Kruchinina, A.A. Gromov, Ya.I. Prudnikova, M.V. Shashkov, A.S. Sokolova, V.N. Kruchinin, I.N. Yakovina, N.A. Bannova
    Perturbation of fatty acids of erythrocyte membranes and blood serum in patients with colorectal cancer: new opportunities for diagnostics
    Annals of Oncology. 2019. Т. 30. № S4. С. 109. Аннотация к встрече: P - 003 doi:10.1093/annonc/mdz155, IF=14.196
  423. M.V. Kruchinina, A.A. Gromov, Ya.I. Prudnikova, M.V. Shashkov, A.S. Sokolova, V.N. Kruchinin, I.N. Yakovina, N.A. Bannova
    Perturbation of fatty acids of erythrocyte membranes and blood serum in patients with colorectal cancer: new opportunities for diagnostics
    Annals of Oncology. 2019. Т. 30. № S4. С. 109. Аннотация к встрече: P - 003 doi:10.1093/annonc/mdz155, IF=14.196
  424. M.V. Kruchinina, A.A. Gromov, Ya.I. Prudnikova, M.V. Shashkov, A.S. Sokolova, V.N. Kruchinin, I.N. Yakovina, N.A. Bannova
    Perturbation of fatty acids of erythrocyte membranes and blood serum in patients with colorectal cancer: new opportunities for diagnostics
    Annals of Oncology. 2019. Т. 30. № S4. С. 109. Аннотация к встрече: P - 003 doi:10.1093/annonc/mdz155, IF=14.196
  425. M.V. Kruchinina, A.A. Gromov, Ya.I. Prudnikova, M.V. Shashkov, A.S. Sokolova, V.N. Kruchinin, I.N. Yakovina, N.A. Bannova
    Perturbation of fatty acids of erythrocyte membranes and blood serum in patients with colorectal cancer: new opportunities for diagnostics
    Annals of Oncology. 2019. Т. 30. № S4. С. 109. Аннотация к встрече: P - 003 doi:10.1093/annonc/mdz155, IF=14.196
  426. M.V. Kruchinina, A.A. Gromov, Ya.I. Prudnikova, M.V. Shashkov, A.S. Sokolova, V.N. Kruchinin, I.N. Yakovina, N.A. Bannova
    Perturbation of fatty acids of erythrocyte membranes and blood serum in patients with colorectal cancer: new opportunities for diagnostics
    Annals of Oncology. 2019. Т. 30. № S4. С. 109. Аннотация к встрече: P - 003 doi:10.1093/annonc/mdz155, IF=14.196
  427. O.G. Tomilova, O.N. Yaroslavtseva, M.D. Ganina, M.V. Tyurin, E.I. Chernyak, I.V. Senderskiy, Yu.A. Noskov, O.V. Polenogova, Yu.B. Akhanaev, V.Yu. Kryukov, V.V. Glupov, S.V. Morozov
    Changes in antifungal defence systems during the intermoult period in the Colorado potato beetle
    Journal of Insect Physiology, 2019, V. 116, Pp 106-117 doi:10.1016/j.jinsphys.2019.05.003, IF=2.862
  428. O.G. Tomilova, O.N. Yaroslavtseva, M.D. Ganina, M.V. Tyurin, E.I. Chernyak, I.V. Senderskiy, Yu.A. Noskov, O.V. Polenogova, Yu.B. Akhanaev, V.Yu. Kryukov, V.V. Glupov, S.V. Morozov
    Changes in antifungal defence systems during the intermoult period in the Colorado potato beetle
    Journal of Insect Physiology, 2019, V. 116, Pp 106-117 doi:10.1016/j.jinsphys.2019.05.003, IF=2.862
  429. O.G. Tomilova, O.N. Yaroslavtseva, M.D. Ganina, M.V. Tyurin, E.I. Chernyak, I.V. Senderskiy, Yu.A. Noskov, O.V. Polenogova, Yu.B. Akhanaev, V.Yu. Kryukov, V.V. Glupov, S.V. Morozov
    Changes in antifungal defence systems during the intermoult period in the Colorado potato beetle
    Journal of Insect Physiology, 2019, V. 116, Pp 106-117 doi:10.1016/j.jinsphys.2019.05.003, IF=2.862
  430. O.G. Tomilova, O.N. Yaroslavtseva, M.D. Ganina, M.V. Tyurin, E.I. Chernyak, I.V. Senderskiy, Yu.A. Noskov, O.V. Polenogova, Yu.B. Akhanaev, V.Yu. Kryukov, V.V. Glupov, S.V. Morozov
    Changes in antifungal defence systems during the intermoult period in the Colorado potato beetle
    Journal of Insect Physiology, 2019, V. 116, Pp 106-117 doi:10.1016/j.jinsphys.2019.05.003, IF=2.862
  431. O.G. Tomilova, O.N. Yaroslavtseva, M.D. Ganina, M.V. Tyurin, E.I. Chernyak, I.V. Senderskiy, Yu.A. Noskov, O.V. Polenogova, Yu.B. Akhanaev, V.Yu. Kryukov, V.V. Glupov, S.V. Morozov
    Changes in antifungal defence systems during the intermoult period in the Colorado potato beetle
    Journal of Insect Physiology, 2019, V. 116, Pp 106-117 doi:10.1016/j.jinsphys.2019.05.003, IF=2.862
  432. O.G. Tomilova, O.N. Yaroslavtseva, M.D. Ganina, M.V. Tyurin, E.I. Chernyak, I.V. Senderskiy, Yu.A. Noskov, O.V. Polenogova, Yu.B. Akhanaev, V.Yu. Kryukov, V.V. Glupov, S.V. Morozov
    Changes in antifungal defence systems during the intermoult period in the Colorado potato beetle
    Journal of Insect Physiology, 2019, V. 116, Pp 106-117 doi:10.1016/j.jinsphys.2019.05.003, IF=2.862
  433. O.G. Tomilova, O.N. Yaroslavtseva, M.D. Ganina, M.V. Tyurin, E.I. Chernyak, I.V. Senderskiy, Yu.A. Noskov, O.V. Polenogova, Yu.B. Akhanaev, V.Yu. Kryukov, V.V. Glupov, S.V. Morozov
    Changes in antifungal defence systems during the intermoult period in the Colorado potato beetle
    Journal of Insect Physiology, 2019, V. 116, Pp 106-117 doi:10.1016/j.jinsphys.2019.05.003, IF=2.862
  434. O.G. Tomilova, O.N. Yaroslavtseva, M.D. Ganina, M.V. Tyurin, E.I. Chernyak, I.V. Senderskiy, Yu.A. Noskov, O.V. Polenogova, Yu.B. Akhanaev, V.Yu. Kryukov, V.V. Glupov, S.V. Morozov
    Changes in antifungal defence systems during the intermoult period in the Colorado potato beetle
    Journal of Insect Physiology, 2019, V. 116, Pp 106-117 doi:10.1016/j.jinsphys.2019.05.003, IF=2.862
  435. O.G. Tomilova, O.N. Yaroslavtseva, M.D. Ganina, M.V. Tyurin, E.I. Chernyak, I.V. Senderskiy, Yu.A. Noskov, O.V. Polenogova, Yu.B. Akhanaev, V.Yu. Kryukov, V.V. Glupov, S.V. Morozov
    Changes in antifungal defence systems during the intermoult period in the Colorado potato beetle
    Journal of Insect Physiology, 2019, V. 116, Pp 106-117 doi:10.1016/j.jinsphys.2019.05.003, IF=2.862
  436. O. Guselnikova, S.R-A. Marque, E.V. Tretyakov, D. Mares, V. Jerabek, G. Audran, J-P. Joly, M. Trusova, V. Svorcik, O. Lyutakov, P. Postnikov
    Unprecedented plasmon-induced nitroxide-mediated polymerization (PI-NMP): a method for preparation of functional surfaces
    J. Mater. Chem. A, 2019, 2019, V. 7, N 2, Pp 12414-12419 , 2019 Journal of Materials Chemistry A HOT Papers doi:10.1039/C9TA01630A, IF=10.733
  437. O. Guselnikova, S.R-A. Marque, E.V. Tretyakov, D. Mares, V. Jerabek, G. Audran, J-P. Joly, M. Trusova, V. Svorcik, O. Lyutakov, P. Postnikov
    Unprecedented plasmon-induced nitroxide-mediated polymerization (PI-NMP): a method for preparation of functional surfaces
    J. Mater. Chem. A, 2019, 2019, V. 7, N 2, Pp 12414-12419 , 2019 Journal of Materials Chemistry A HOT Papers doi:10.1039/C9TA01630A, IF=10.733
  438. O. Guselnikova, S.R-A. Marque, E.V. Tretyakov, D. Mares, V. Jerabek, G. Audran, J-P. Joly, M. Trusova, V. Svorcik, O. Lyutakov, P. Postnikov
    Unprecedented plasmon-induced nitroxide-mediated polymerization (PI-NMP): a method for preparation of functional surfaces
    J. Mater. Chem. A, 2019, 2019, V. 7, N 2, Pp 12414-12419 , 2019 Journal of Materials Chemistry A HOT Papers doi:10.1039/C9TA01630A, IF=10.733
  439. O. Guselnikova, S.R-A. Marque, E.V. Tretyakov, D. Mares, V. Jerabek, G. Audran, J-P. Joly, M. Trusova, V. Svorcik, O. Lyutakov, P. Postnikov
    Unprecedented plasmon-induced nitroxide-mediated polymerization (PI-NMP): a method for preparation of functional surfaces
    J. Mater. Chem. A, 2019, 2019, V. 7, N 2, Pp 12414-12419 , 2019 Journal of Materials Chemistry A HOT Papers doi:10.1039/C9TA01630A, IF=10.733
  440. O. Guselnikova, S.R-A. Marque, E.V. Tretyakov, D. Mares, V. Jerabek, G. Audran, J-P. Joly, M. Trusova, V. Svorcik, O. Lyutakov, P. Postnikov
    Unprecedented plasmon-induced nitroxide-mediated polymerization (PI-NMP): a method for preparation of functional surfaces
    J. Mater. Chem. A, 2019, 2019, V. 7, N 2, Pp 12414-12419 , 2019 Journal of Materials Chemistry A HOT Papers doi:10.1039/C9TA01630A, IF=10.733
  441. O. Guselnikova, S.R-A. Marque, E.V. Tretyakov, D. Mares, V. Jerabek, G. Audran, J-P. Joly, M. Trusova, V. Svorcik, O. Lyutakov, P. Postnikov
    Unprecedented plasmon-induced nitroxide-mediated polymerization (PI-NMP): a method for preparation of functional surfaces
    J. Mater. Chem. A, 2019, 2019, V. 7, N 2, Pp 12414-12419 , 2019 Journal of Materials Chemistry A HOT Papers doi:10.1039/C9TA01630A, IF=10.733
  442. O. Guselnikova, S.R-A. Marque, E.V. Tretyakov, D. Mares, V. Jerabek, G. Audran, J-P. Joly, M. Trusova, V. Svorcik, O. Lyutakov, P. Postnikov
    Unprecedented plasmon-induced nitroxide-mediated polymerization (PI-NMP): a method for preparation of functional surfaces
    J. Mater. Chem. A, 2019, 2019, V. 7, N 2, Pp 12414-12419 , 2019 Journal of Materials Chemistry A HOT Papers doi:10.1039/C9TA01630A, IF=10.733
  443. O. Guselnikova, S.R-A. Marque, E.V. Tretyakov, D. Mares, V. Jerabek, G. Audran, J-P. Joly, M. Trusova, V. Svorcik, O. Lyutakov, P. Postnikov
    Unprecedented plasmon-induced nitroxide-mediated polymerization (PI-NMP): a method for preparation of functional surfaces
    J. Mater. Chem. A, 2019, 2019, V. 7, N 2, Pp 12414-12419 , 2019 Journal of Materials Chemistry A HOT Papers doi:10.1039/C9TA01630A, IF=10.733
  444. O. Guselnikova, S.R-A. Marque, E.V. Tretyakov, D. Mares, V. Jerabek, G. Audran, J-P. Joly, M. Trusova, V. Svorcik, O. Lyutakov, P. Postnikov
    Unprecedented plasmon-induced nitroxide-mediated polymerization (PI-NMP): a method for preparation of functional surfaces
    J. Mater. Chem. A, 2019, 2019, V. 7, N 2, Pp 12414-12419 , 2019 Journal of Materials Chemistry A HOT Papers doi:10.1039/C9TA01630A, IF=10.733
  445. O. Guselnikova, S.R-A. Marque, E.V. Tretyakov, D. Mares, V. Jerabek, G. Audran, J-P. Joly, M. Trusova, V. Svorcik, O. Lyutakov, P. Postnikov
    Unprecedented plasmon-induced nitroxide-mediated polymerization (PI-NMP): a method for preparation of functional surfaces
    J. Mater. Chem. A, 2019, 2019, V. 7, N 2, Pp 12414-12419 , 2019 Journal of Materials Chemistry A HOT Papers doi:10.1039/C9TA01630A, IF=10.733
  446. T.S. Khlebnicova, Yu.A. Piven, A.V. Baranovsky, F.A. Lakhvich, I.V. Sorokina, T.G. Tolstikova
    Fluorine-containing lupane triterpenoid acid derivatives: Design, synthesis and biological evaluation as potential anti-inflammatory agents
    Steroids, V.147, July 2019, Pp 62-69 doi:10.1016/j.steroids.2018.10.001, IF=2.136
  447. T.S. Khlebnicova, Yu.A. Piven, A.V. Baranovsky, F.A. Lakhvich, I.V. Sorokina, T.G. Tolstikova
    Fluorine-containing lupane triterpenoid acid derivatives: Design, synthesis and biological evaluation as potential anti-inflammatory agents
    Steroids, V.147, July 2019, Pp 62-69 doi:10.1016/j.steroids.2018.10.001, IF=2.136
  448. T.S. Khlebnicova, Yu.A. Piven, A.V. Baranovsky, F.A. Lakhvich, I.V. Sorokina, T.G. Tolstikova
    Fluorine-containing lupane triterpenoid acid derivatives: Design, synthesis and biological evaluation as potential anti-inflammatory agents
    Steroids, V.147, July 2019, Pp 62-69 doi:10.1016/j.steroids.2018.10.001, IF=2.136
  449. T.S. Khlebnicova, Yu.A. Piven, A.V. Baranovsky, F.A. Lakhvich, I.V. Sorokina, T.G. Tolstikova
    Fluorine-containing lupane triterpenoid acid derivatives: Design, synthesis and biological evaluation as potential anti-inflammatory agents
    Steroids, V.147, July 2019, Pp 62-69 doi:10.1016/j.steroids.2018.10.001, IF=2.136
  450. M.A. Lenskiy, D.V. Korabel'nikov, A.V. Ozhogin, A.N. Novitskiy, E.E. Shul'ts
    Синтез и свойства полиметилен-п-трифенилового эфира борной кислоты
    Известия ВУЗов. "Серия Химия и химические технологии", 2019, Т. 62, N 7, Сс 31-37 (Synthesis and properties of polyethylene-p-triphenylboron ester of boric acid/ M. A. Lenskiy, E. E. Shul'ts, D. V. Korabel'nikov, A. V. Ozhogin, A. N. Novitskiy,// Izvestiya Vysshikh Uchebnykh Zavedenii, Seriya Khimiya i Khimicheskaya Tekhnologiya, 2019, V. 62, N 7, Pp 31-37 doi:10.6060/ivkkt20196207.5882)
  451. M.A. Lenskiy, D.V. Korabel'nikov, A.V. Ozhogin, A.N. Novitskiy, E.E. Shul'ts
    Синтез и свойства полиметилен-п-трифенилового эфира борной кислоты
    Известия ВУЗов. "Серия Химия и химические технологии", 2019, Т. 62, N 7, Сс 31-37 (Synthesis and properties of polyethylene-p-triphenylboron ester of boric acid/ M. A. Lenskiy, E. E. Shul'ts, D. V. Korabel'nikov, A. V. Ozhogin, A. N. Novitskiy,// Izvestiya Vysshikh Uchebnykh Zavedenii, Seriya Khimiya i Khimicheskaya Tekhnologiya, 2019, V. 62, N 7, Pp 31-37 doi:10.6060/ivkkt20196207.5882)
  452. M.A. Lenskiy, D.V. Korabel'nikov, A.V. Ozhogin, A.N. Novitskiy, E.E. Shul'ts
    Синтез и свойства полиметилен-п-трифенилового эфира борной кислоты
    Известия ВУЗов. "Серия Химия и химические технологии", 2019, Т. 62, N 7, Сс 31-37 (Synthesis and properties of polyethylene-p-triphenylboron ester of boric acid/ M. A. Lenskiy, E. E. Shul'ts, D. V. Korabel'nikov, A. V. Ozhogin, A. N. Novitskiy,// Izvestiya Vysshikh Uchebnykh Zavedenii, Seriya Khimiya i Khimicheskaya Tekhnologiya, 2019, V. 62, N 7, Pp 31-37 doi:10.6060/ivkkt20196207.5882)
  453. M.A. Lenskiy, D.V. Korabel'nikov, A.V. Ozhogin, A.N. Novitskiy, E.E. Shul'ts
    Синтез и свойства полиметилен-п-трифенилового эфира борной кислоты
    Известия ВУЗов. "Серия Химия и химические технологии", 2019, Т. 62, N 7, Сс 31-37 (Synthesis and properties of polyethylene-p-triphenylboron ester of boric acid/ M. A. Lenskiy, E. E. Shul'ts, D. V. Korabel'nikov, A. V. Ozhogin, A. N. Novitskiy,// Izvestiya Vysshikh Uchebnykh Zavedenii, Seriya Khimiya i Khimicheskaya Tekhnologiya, 2019, V. 62, N 7, Pp 31-37 doi:10.6060/ivkkt20196207.5882)
  454. A.S. Poryvaev, D.M. Polyukhov, E. Gjuzi, F. Hoffmann, M. Froba, M.V. Fedin
    Radical-Doped Metal–Organic Framework: Route to Nanoscale Defects and Magnetostructural Functionalities
    Inorganic Chemistry 2019, 58, 13, 8471-8479 doi:10.1021/acs.inorgchem.9b00696, IF=4.849
  455. A.S. Poryvaev, D.M. Polyukhov, E. Gjuzi, F. Hoffmann, M. Froba, M.V. Fedin
    Radical-Doped Metal–Organic Framework: Route to Nanoscale Defects and Magnetostructural Functionalities
    Inorganic Chemistry 2019, 58, 13, 8471-8479 doi:10.1021/acs.inorgchem.9b00696, IF=4.849
  456. A.S. Poryvaev, D.M. Polyukhov, E. Gjuzi, F. Hoffmann, M. Froba, M.V. Fedin
    Radical-Doped Metal–Organic Framework: Route to Nanoscale Defects and Magnetostructural Functionalities
    Inorganic Chemistry 2019, 58, 13, 8471-8479 doi:10.1021/acs.inorgchem.9b00696, IF=4.849
  457. A.S. Poryvaev, D.M. Polyukhov, E. Gjuzi, F. Hoffmann, M. Froba, M.V. Fedin
    Radical-Doped Metal–Organic Framework: Route to Nanoscale Defects and Magnetostructural Functionalities
    Inorganic Chemistry 2019, 58, 13, 8471-8479 doi:10.1021/acs.inorgchem.9b00696, IF=4.849
  458. A.S. Poryvaev, D.M. Polyukhov, E. Gjuzi, F. Hoffmann, M. Froba, M.V. Fedin
    Radical-Doped Metal–Organic Framework: Route to Nanoscale Defects and Magnetostructural Functionalities
    Inorganic Chemistry 2019, 58, 13, 8471-8479 doi:10.1021/acs.inorgchem.9b00696, IF=4.849
  459. А.В. Душкин, Е.С. Метелева, Т.Г. Толстикова, М.В. Хвостов, Н.Э. Поляков, Н.З. Ляхов
    Супрамолекулярные системы доставки молекул лекарственных веществ на основе водорастворимых растительных метаболитов. физико-химические, фармакологические свойства и особенности механохимического получения
    Химия в интересах устойчивого развития. 2019. Т. 27, № 3. С. 233-244. (Supramolecular systems for the delivery of the molecules of medicinal substances based on water-soluble plant metabolites. physicochemical, pharmacological properties and the features of mechanochemical preparation/ Dushkin A.V., Meteleva E.S., Tolstikova T.G., Khvostov M.V., Polyakov N.E., Lyakhov N.Z.// Chemistry for Sustainable Development, 2019. V. 27, № 3. P. 233-244. (in Russian) doi:10.15372/KhUR2019129)
  460. А.В. Душкин, Е.С. Метелева, Т.Г. Толстикова, М.В. Хвостов, Н.Э. Поляков, Н.З. Ляхов
    Супрамолекулярные системы доставки молекул лекарственных веществ на основе водорастворимых растительных метаболитов. физико-химические, фармакологические свойства и особенности механохимического получения
    Химия в интересах устойчивого развития. 2019. Т. 27, № 3. С. 233-244. (Supramolecular systems for the delivery of the molecules of medicinal substances based on water-soluble plant metabolites. physicochemical, pharmacological properties and the features of mechanochemical preparation/ Dushkin A.V., Meteleva E.S., Tolstikova T.G., Khvostov M.V., Polyakov N.E., Lyakhov N.Z.// Chemistry for Sustainable Development, 2019. V. 27, № 3. P. 233-244. (in Russian) doi:10.15372/KhUR2019129)
  461. А.В. Душкин, Е.С. Метелева, Т.Г. Толстикова, М.В. Хвостов, Н.Э. Поляков, Н.З. Ляхов
    Супрамолекулярные системы доставки молекул лекарственных веществ на основе водорастворимых растительных метаболитов. физико-химические, фармакологические свойства и особенности механохимического получения
    Химия в интересах устойчивого развития. 2019. Т. 27, № 3. С. 233-244. (Supramolecular systems for the delivery of the molecules of medicinal substances based on water-soluble plant metabolites. physicochemical, pharmacological properties and the features of mechanochemical preparation/ Dushkin A.V., Meteleva E.S., Tolstikova T.G., Khvostov M.V., Polyakov N.E., Lyakhov N.Z.// Chemistry for Sustainable Development, 2019. V. 27, № 3. P. 233-244. (in Russian) doi:10.15372/KhUR2019129)
  462. А.В. Душкин, Е.С. Метелева, Т.Г. Толстикова, М.В. Хвостов, Н.Э. Поляков, Н.З. Ляхов
    Супрамолекулярные системы доставки молекул лекарственных веществ на основе водорастворимых растительных метаболитов. физико-химические, фармакологические свойства и особенности механохимического получения
    Химия в интересах устойчивого развития. 2019. Т. 27, № 3. С. 233-244. (Supramolecular systems for the delivery of the molecules of medicinal substances based on water-soluble plant metabolites. physicochemical, pharmacological properties and the features of mechanochemical preparation/ Dushkin A.V., Meteleva E.S., Tolstikova T.G., Khvostov M.V., Polyakov N.E., Lyakhov N.Z.// Chemistry for Sustainable Development, 2019. V. 27, № 3. P. 233-244. (in Russian) doi:10.15372/KhUR2019129)
  463. Т.Е. Кокина, О.В. Саломатина, И.И. Попадюк, Л.А. Глинская, И.В. Корольков, Л.А. Шелудякова, М.И. Рахманова, Н.Ф. Салахутдинов
    Комплексы ZN(II) и СU(II) c аминопроизводными дезоксихолевой кислоты: синтез, структура, свойства
    Координационная химия. 2019. Т. 45. № 7. С. 420-426. (DOI: 10.1134/S0132344X1907003X ) (Complexes of Zn(II) and Сu(II) with the Amino Derivatives of Deoxycholic Acid: Syntheses, Structures, and Properties/ T. E. Kokina, O. V. Salomatina, I. I. Popadyuk, L. A. Glinskaya, I. V. Korol'kov, L. A. Sheludyakova, M. I. Rakhmanova, N. F. Salakhutdinov// Russian Journal of Coordination Chemistry, July 2019, V. 45, N 7, pp 505-511 doi:10.1134/S1070328419070030), IF=0.636
  464. Т.Е. Кокина, О.В. Саломатина, И.И. Попадюк, Л.А. Глинская, И.В. Корольков, Л.А. Шелудякова, М.И. Рахманова, Н.Ф. Салахутдинов
    Комплексы ZN(II) и СU(II) c аминопроизводными дезоксихолевой кислоты: синтез, структура, свойства
    Координационная химия. 2019. Т. 45. № 7. С. 420-426. (DOI: 10.1134/S0132344X1907003X ) (Complexes of Zn(II) and Сu(II) with the Amino Derivatives of Deoxycholic Acid: Syntheses, Structures, and Properties/ T. E. Kokina, O. V. Salomatina, I. I. Popadyuk, L. A. Glinskaya, I. V. Korol'kov, L. A. Sheludyakova, M. I. Rakhmanova, N. F. Salakhutdinov// Russian Journal of Coordination Chemistry, July 2019, V. 45, N 7, pp 505-511 doi:10.1134/S1070328419070030), IF=0.636
  465. Т.Е. Кокина, О.В. Саломатина, И.И. Попадюк, Л.А. Глинская, И.В. Корольков, Л.А. Шелудякова, М.И. Рахманова, Н.Ф. Салахутдинов
    Комплексы ZN(II) и СU(II) c аминопроизводными дезоксихолевой кислоты: синтез, структура, свойства
    Координационная химия. 2019. Т. 45. № 7. С. 420-426. (DOI: 10.1134/S0132344X1907003X ) (Complexes of Zn(II) and Сu(II) with the Amino Derivatives of Deoxycholic Acid: Syntheses, Structures, and Properties/ T. E. Kokina, O. V. Salomatina, I. I. Popadyuk, L. A. Glinskaya, I. V. Korol'kov, L. A. Sheludyakova, M. I. Rakhmanova, N. F. Salakhutdinov// Russian Journal of Coordination Chemistry, July 2019, V. 45, N 7, pp 505-511 doi:10.1134/S1070328419070030), IF=0.636
  466. Т.Е. Кокина, О.В. Саломатина, И.И. Попадюк, Л.А. Глинская, И.В. Корольков, Л.А. Шелудякова, М.И. Рахманова, Н.Ф. Салахутдинов
    Комплексы ZN(II) и СU(II) c аминопроизводными дезоксихолевой кислоты: синтез, структура, свойства
    Координационная химия. 2019. Т. 45. № 7. С. 420-426. (DOI: 10.1134/S0132344X1907003X ) (Complexes of Zn(II) and Сu(II) with the Amino Derivatives of Deoxycholic Acid: Syntheses, Structures, and Properties/ T. E. Kokina, O. V. Salomatina, I. I. Popadyuk, L. A. Glinskaya, I. V. Korol'kov, L. A. Sheludyakova, M. I. Rakhmanova, N. F. Salakhutdinov// Russian Journal of Coordination Chemistry, July 2019, V. 45, N 7, pp 505-511 doi:10.1134/S1070328419070030), IF=0.636
  467. Т.Е. Кокина, О.В. Саломатина, И.И. Попадюк, Л.А. Глинская, И.В. Корольков, Л.А. Шелудякова, М.И. Рахманова, Н.Ф. Салахутдинов
    Комплексы ZN(II) и СU(II) c аминопроизводными дезоксихолевой кислоты: синтез, структура, свойства
    Координационная химия. 2019. Т. 45. № 7. С. 420-426. (DOI: 10.1134/S0132344X1907003X ) (Complexes of Zn(II) and Сu(II) with the Amino Derivatives of Deoxycholic Acid: Syntheses, Structures, and Properties/ T. E. Kokina, O. V. Salomatina, I. I. Popadyuk, L. A. Glinskaya, I. V. Korol'kov, L. A. Sheludyakova, M. I. Rakhmanova, N. F. Salakhutdinov// Russian Journal of Coordination Chemistry, July 2019, V. 45, N 7, pp 505-511 doi:10.1134/S1070328419070030), IF=0.636
  468. A.Yu. Sosorev, M.K. Nuraliev, E.V. Feldman, D.R. Maslennikov, O.V. Borshchev, M.S. Skorotetcky, N.M. Surin, M.S. Kazantsev, S.A. Ponomarenko, D.Yu. Paraschuk
    Impact of terminal substituents on the electronic, vibrational and optical properties of thiophene-phenylene co-oligomers
    Physical Chemistry Chemical Physics, 2019, V. 21, N 22, Pp 11578-11588 doi:10.1039/C9CP00910H, IF=3.567
  469. A.Yu. Sosorev, M.K. Nuraliev, E.V. Feldman, D.R. Maslennikov, O.V. Borshchev, M.S. Skorotetcky, N.M. Surin, M.S. Kazantsev, S.A. Ponomarenko, D.Yu. Paraschuk
    Impact of terminal substituents on the electronic, vibrational and optical properties of thiophene-phenylene co-oligomers
    Physical Chemistry Chemical Physics, 2019, V. 21, N 22, Pp 11578-11588 doi:10.1039/C9CP00910H, IF=3.567
  470. A.Yu. Sosorev, M.K. Nuraliev, E.V. Feldman, D.R. Maslennikov, O.V. Borshchev, M.S. Skorotetcky, N.M. Surin, M.S. Kazantsev, S.A. Ponomarenko, D.Yu. Paraschuk
    Impact of terminal substituents on the electronic, vibrational and optical properties of thiophene-phenylene co-oligomers
    Physical Chemistry Chemical Physics, 2019, V. 21, N 22, Pp 11578-11588 doi:10.1039/C9CP00910H, IF=3.567
  471. A.Yu. Sosorev, M.K. Nuraliev, E.V. Feldman, D.R. Maslennikov, O.V. Borshchev, M.S. Skorotetcky, N.M. Surin, M.S. Kazantsev, S.A. Ponomarenko, D.Yu. Paraschuk
    Impact of terminal substituents on the electronic, vibrational and optical properties of thiophene-phenylene co-oligomers
    Physical Chemistry Chemical Physics, 2019, V. 21, N 22, Pp 11578-11588 doi:10.1039/C9CP00910H, IF=3.567
  472. A.Yu. Sosorev, M.K. Nuraliev, E.V. Feldman, D.R. Maslennikov, O.V. Borshchev, M.S. Skorotetcky, N.M. Surin, M.S. Kazantsev, S.A. Ponomarenko, D.Yu. Paraschuk
    Impact of terminal substituents on the electronic, vibrational and optical properties of thiophene-phenylene co-oligomers
    Physical Chemistry Chemical Physics, 2019, V. 21, N 22, Pp 11578-11588 doi:10.1039/C9CP00910H, IF=3.567
  473. A.Yu. Sosorev, M.K. Nuraliev, E.V. Feldman, D.R. Maslennikov, O.V. Borshchev, M.S. Skorotetcky, N.M. Surin, M.S. Kazantsev, S.A. Ponomarenko, D.Yu. Paraschuk
    Impact of terminal substituents on the electronic, vibrational and optical properties of thiophene-phenylene co-oligomers
    Physical Chemistry Chemical Physics, 2019, V. 21, N 22, Pp 11578-11588 doi:10.1039/C9CP00910H, IF=3.567
  474. A.Yu. Sosorev, M.K. Nuraliev, E.V. Feldman, D.R. Maslennikov, O.V. Borshchev, M.S. Skorotetcky, N.M. Surin, M.S. Kazantsev, S.A. Ponomarenko, D.Yu. Paraschuk
    Impact of terminal substituents on the electronic, vibrational and optical properties of thiophene-phenylene co-oligomers
    Physical Chemistry Chemical Physics, 2019, V. 21, N 22, Pp 11578-11588 doi:10.1039/C9CP00910H, IF=3.567
  475. A.Yu. Sosorev, M.K. Nuraliev, E.V. Feldman, D.R. Maslennikov, O.V. Borshchev, M.S. Skorotetcky, N.M. Surin, M.S. Kazantsev, S.A. Ponomarenko, D.Yu. Paraschuk
    Impact of terminal substituents on the electronic, vibrational and optical properties of thiophene-phenylene co-oligomers
    Physical Chemistry Chemical Physics, 2019, V. 21, N 22, Pp 11578-11588 doi:10.1039/C9CP00910H, IF=3.567
  476. A.Yu. Sosorev, M.K. Nuraliev, E.V. Feldman, D.R. Maslennikov, O.V. Borshchev, M.S. Skorotetcky, N.M. Surin, M.S. Kazantsev, S.A. Ponomarenko, D.Yu. Paraschuk
    Impact of terminal substituents on the electronic, vibrational and optical properties of thiophene-phenylene co-oligomers
    Physical Chemistry Chemical Physics, 2019, V. 21, N 22, Pp 11578-11588 doi:10.1039/C9CP00910H, IF=3.567
  477. A.A. Lomzov, M.S. Kupryushkin, A.V. Shernyukov, M.D. Nekrasov, I.S. Dovydenko, D.A. Stetsenko, D.V. Pyshnyi
    Diastereomers of a mono-substituted phosphoryl guanidine trideoxyribonucleotide: Isolation and properties
    Biochemical and Biophysical Research Communications, 2019, V. 513, N 4, Pp 807-811 doi:10.1016/j.bbrc.2019.04.024, IF=2.705
  478. A.A. Lomzov, M.S. Kupryushkin, A.V. Shernyukov, M.D. Nekrasov, I.S. Dovydenko, D.A. Stetsenko, D.V. Pyshnyi
    Diastereomers of a mono-substituted phosphoryl guanidine trideoxyribonucleotide: Isolation and properties
    Biochemical and Biophysical Research Communications, 2019, V. 513, N 4, Pp 807-811 doi:10.1016/j.bbrc.2019.04.024, IF=2.705
  479. A.A. Lomzov, M.S. Kupryushkin, A.V. Shernyukov, M.D. Nekrasov, I.S. Dovydenko, D.A. Stetsenko, D.V. Pyshnyi
    Diastereomers of a mono-substituted phosphoryl guanidine trideoxyribonucleotide: Isolation and properties
    Biochemical and Biophysical Research Communications, 2019, V. 513, N 4, Pp 807-811 doi:10.1016/j.bbrc.2019.04.024, IF=2.705
  480. A.A. Lomzov, M.S. Kupryushkin, A.V. Shernyukov, M.D. Nekrasov, I.S. Dovydenko, D.A. Stetsenko, D.V. Pyshnyi
    Diastereomers of a mono-substituted phosphoryl guanidine trideoxyribonucleotide: Isolation and properties
    Biochemical and Biophysical Research Communications, 2019, V. 513, N 4, Pp 807-811 doi:10.1016/j.bbrc.2019.04.024, IF=2.705
  481. A.A. Lomzov, M.S. Kupryushkin, A.V. Shernyukov, M.D. Nekrasov, I.S. Dovydenko, D.A. Stetsenko, D.V. Pyshnyi
    Diastereomers of a mono-substituted phosphoryl guanidine trideoxyribonucleotide: Isolation and properties
    Biochemical and Biophysical Research Communications, 2019, V. 513, N 4, Pp 807-811 doi:10.1016/j.bbrc.2019.04.024, IF=2.705
  482. A.A. Lomzov, M.S. Kupryushkin, A.V. Shernyukov, M.D. Nekrasov, I.S. Dovydenko, D.A. Stetsenko, D.V. Pyshnyi
    Diastereomers of a mono-substituted phosphoryl guanidine trideoxyribonucleotide: Isolation and properties
    Biochemical and Biophysical Research Communications, 2019, V. 513, N 4, Pp 807-811 doi:10.1016/j.bbrc.2019.04.024, IF=2.705
  483. N.A. Muraleva, O.S. Kozhevnikova, A.Z. Fursova, N.G. Kolosova
    Suppression of AMD-Like Pathology by Mitochondria-Targeted Antioxidant SkQ1 Is Associated with a Decrease in the Accumulation of Amyloid β and in mTOR Activity
    Antioxidants 2019, 8(6), 177 doi:10.3390/antiox8060177, IF=4.52
  484. N.A. Muraleva, O.S. Kozhevnikova, A.Z. Fursova, N.G. Kolosova
    Suppression of AMD-Like Pathology by Mitochondria-Targeted Antioxidant SkQ1 Is Associated with a Decrease in the Accumulation of Amyloid β and in mTOR Activity
    Antioxidants 2019, 8(6), 177 doi:10.3390/antiox8060177, IF=4.52
  485. N.A. Muraleva, O.S. Kozhevnikova, A.Z. Fursova, N.G. Kolosova
    Suppression of AMD-Like Pathology by Mitochondria-Targeted Antioxidant SkQ1 Is Associated with a Decrease in the Accumulation of Amyloid β and in mTOR Activity
    Antioxidants 2019, 8(6), 177 doi:10.3390/antiox8060177, IF=4.52
  486. A.G. Sokol, A.A. Tomilenko, T.A. Bul'bak, I.A. Sokol, P.A. Zaikin, G.A. Palyanova, Yu.N. Palyanov
    Hydrogenation of carbon at 5.5-7.8 GPa and 1100-1400°C: Implications to formation of hydrocarbons in reduced mantles of terrestrial planets
    Physics of the Earth and Planetary Interiors, 2019, V. 291, Pp 12-23 doi:10.1016/j.pepi.2019.04.002, IF=2.615
  487. A.G. Sokol, A.A. Tomilenko, T.A. Bul'bak, I.A. Sokol, P.A. Zaikin, G.A. Palyanova, Yu.N. Palyanov
    Hydrogenation of carbon at 5.5-7.8 GPa and 1100-1400°C: Implications to formation of hydrocarbons in reduced mantles of terrestrial planets
    Physics of the Earth and Planetary Interiors, 2019, V. 291, Pp 12-23 doi:10.1016/j.pepi.2019.04.002, IF=2.615
  488. A.G. Sokol, A.A. Tomilenko, T.A. Bul'bak, I.A. Sokol, P.A. Zaikin, G.A. Palyanova, Yu.N. Palyanov
    Hydrogenation of carbon at 5.5-7.8 GPa and 1100-1400°C: Implications to formation of hydrocarbons in reduced mantles of terrestrial planets
    Physics of the Earth and Planetary Interiors, 2019, V. 291, Pp 12-23 doi:10.1016/j.pepi.2019.04.002, IF=2.615
  489. A.G. Sokol, A.A. Tomilenko, T.A. Bul'bak, I.A. Sokol, P.A. Zaikin, G.A. Palyanova, Yu.N. Palyanov
    Hydrogenation of carbon at 5.5-7.8 GPa and 1100-1400°C: Implications to formation of hydrocarbons in reduced mantles of terrestrial planets
    Physics of the Earth and Planetary Interiors, 2019, V. 291, Pp 12-23 doi:10.1016/j.pepi.2019.04.002, IF=2.615
  490. A.G. Sokol, A.A. Tomilenko, T.A. Bul'bak, I.A. Sokol, P.A. Zaikin, G.A. Palyanova, Yu.N. Palyanov
    Hydrogenation of carbon at 5.5-7.8 GPa and 1100-1400°C: Implications to formation of hydrocarbons in reduced mantles of terrestrial planets
    Physics of the Earth and Planetary Interiors, 2019, V. 291, Pp 12-23 doi:10.1016/j.pepi.2019.04.002, IF=2.615
  491. A.G. Sokol, A.A. Tomilenko, T.A. Bul'bak, I.A. Sokol, P.A. Zaikin, G.A. Palyanova, Yu.N. Palyanov
    Hydrogenation of carbon at 5.5-7.8 GPa and 1100-1400°C: Implications to formation of hydrocarbons in reduced mantles of terrestrial planets
    Physics of the Earth and Planetary Interiors, 2019, V. 291, Pp 12-23 doi:10.1016/j.pepi.2019.04.002, IF=2.615
  492. D. Avgustinovich, M. Tsyganov, G. Vishnivetskaya, А. Кovner, I. Sorokina, I. Orlovskaya, L. Toporkova, E. Goiman, T. Tolstikova, A. Dushkin, N. Lyakhov, V. Mordvinov
    Effects of supramolecular complexation of praziquantel with disodium glycyrrhizinate on the liver fluke Opisthorchis felineus: an in vitro and in vivo study
    Acta Tropica, 2019, V.194, Pp 1-12 doi:10.1016/j.actatropica.2019.03.017, IF=2.629
  493. D. Avgustinovich, M. Tsyganov, G. Vishnivetskaya, А. Кovner, I. Sorokina, I. Orlovskaya, L. Toporkova, E. Goiman, T. Tolstikova, A. Dushkin, N. Lyakhov, V. Mordvinov
    Effects of supramolecular complexation of praziquantel with disodium glycyrrhizinate on the liver fluke Opisthorchis felineus: an in vitro and in vivo study
    Acta Tropica, 2019, V.194, Pp 1-12 doi:10.1016/j.actatropica.2019.03.017, IF=2.629
  494. D. Avgustinovich, M. Tsyganov, G. Vishnivetskaya, А. Кovner, I. Sorokina, I. Orlovskaya, L. Toporkova, E. Goiman, T. Tolstikova, A. Dushkin, N. Lyakhov, V. Mordvinov
    Effects of supramolecular complexation of praziquantel with disodium glycyrrhizinate on the liver fluke Opisthorchis felineus: an in vitro and in vivo study
    Acta Tropica, 2019, V.194, Pp 1-12 doi:10.1016/j.actatropica.2019.03.017, IF=2.629
  495. D. Avgustinovich, M. Tsyganov, G. Vishnivetskaya, А. Кovner, I. Sorokina, I. Orlovskaya, L. Toporkova, E. Goiman, T. Tolstikova, A. Dushkin, N. Lyakhov, V. Mordvinov
    Effects of supramolecular complexation of praziquantel with disodium glycyrrhizinate on the liver fluke Opisthorchis felineus: an in vitro and in vivo study
    Acta Tropica, 2019, V.194, Pp 1-12 doi:10.1016/j.actatropica.2019.03.017, IF=2.629
  496. D. Avgustinovich, M. Tsyganov, G. Vishnivetskaya, А. Кovner, I. Sorokina, I. Orlovskaya, L. Toporkova, E. Goiman, T. Tolstikova, A. Dushkin, N. Lyakhov, V. Mordvinov
    Effects of supramolecular complexation of praziquantel with disodium glycyrrhizinate on the liver fluke Opisthorchis felineus: an in vitro and in vivo study
    Acta Tropica, 2019, V.194, Pp 1-12 doi:10.1016/j.actatropica.2019.03.017, IF=2.629
  497. D. Avgustinovich, M. Tsyganov, G. Vishnivetskaya, А. Кovner, I. Sorokina, I. Orlovskaya, L. Toporkova, E. Goiman, T. Tolstikova, A. Dushkin, N. Lyakhov, V. Mordvinov
    Effects of supramolecular complexation of praziquantel with disodium glycyrrhizinate on the liver fluke Opisthorchis felineus: an in vitro and in vivo study
    Acta Tropica, 2019, V.194, Pp 1-12 doi:10.1016/j.actatropica.2019.03.017, IF=2.629
  498. D. Avgustinovich, M. Tsyganov, G. Vishnivetskaya, А. Кovner, I. Sorokina, I. Orlovskaya, L. Toporkova, E. Goiman, T. Tolstikova, A. Dushkin, N. Lyakhov, V. Mordvinov
    Effects of supramolecular complexation of praziquantel with disodium glycyrrhizinate on the liver fluke Opisthorchis felineus: an in vitro and in vivo study
    Acta Tropica, 2019, V.194, Pp 1-12 doi:10.1016/j.actatropica.2019.03.017, IF=2.629
  499. D. Avgustinovich, M. Tsyganov, G. Vishnivetskaya, А. Кovner, I. Sorokina, I. Orlovskaya, L. Toporkova, E. Goiman, T. Tolstikova, A. Dushkin, N. Lyakhov, V. Mordvinov
    Effects of supramolecular complexation of praziquantel with disodium glycyrrhizinate on the liver fluke Opisthorchis felineus: an in vitro and in vivo study
    Acta Tropica, 2019, V.194, Pp 1-12 doi:10.1016/j.actatropica.2019.03.017, IF=2.629
  500. D. Avgustinovich, M. Tsyganov, G. Vishnivetskaya, А. Кovner, I. Sorokina, I. Orlovskaya, L. Toporkova, E. Goiman, T. Tolstikova, A. Dushkin, N. Lyakhov, V. Mordvinov
    Effects of supramolecular complexation of praziquantel with disodium glycyrrhizinate on the liver fluke Opisthorchis felineus: an in vitro and in vivo study
    Acta Tropica, 2019, V.194, Pp 1-12 doi:10.1016/j.actatropica.2019.03.017, IF=2.629
  501. D. Avgustinovich, M. Tsyganov, G. Vishnivetskaya, А. Кovner, I. Sorokina, I. Orlovskaya, L. Toporkova, E. Goiman, T. Tolstikova, A. Dushkin, N. Lyakhov, V. Mordvinov
    Effects of supramolecular complexation of praziquantel with disodium glycyrrhizinate on the liver fluke Opisthorchis felineus: an in vitro and in vivo study
    Acta Tropica, 2019, V.194, Pp 1-12 doi:10.1016/j.actatropica.2019.03.017, IF=2.629
  502. V.D. Tikhova, Yu.M. Deryabina, R.S. Vasilevich, E.D. Lodygin
    Structural features of tundra and taiga soil humic acids according to IR EXPERT analytical system data
    Journal of Soils and Sediments, 2019, V. 19, N 6, pp 2697-2707 doi:10.1007/s11368-018-2097-x, IF=2.669
  503. V.D. Tikhova, Yu.M. Deryabina, R.S. Vasilevich, E.D. Lodygin
    Structural features of tundra and taiga soil humic acids according to IR EXPERT analytical system data
    Journal of Soils and Sediments, 2019, V. 19, N 6, pp 2697-2707 doi:10.1007/s11368-018-2097-x, IF=2.669
  504. T.S. Frolova, A.V. Lipeeva, D.S. Baev, S.I. Baiborodin, К.E. Orishchenko, A.V. Kochetov, O.I. Sinitsyna
    Fluorescent labeling of ursolic acid with FITC for investigation of its cytotoxic activity using confocal microscopy
    Bioorganic Chemistry, 2019, V. 87, Pp 876-887 doi:10.1016/j.bioorg.2018.11.052, IF=3.929
  505. T.S. Frolova, A.V. Lipeeva, D.S. Baev, S.I. Baiborodin, К.E. Orishchenko, A.V. Kochetov, O.I. Sinitsyna
    Fluorescent labeling of ursolic acid with FITC for investigation of its cytotoxic activity using confocal microscopy
    Bioorganic Chemistry, 2019, V. 87, Pp 876-887 doi:10.1016/j.bioorg.2018.11.052, IF=3.929
  506. T.S. Frolova, A.V. Lipeeva, D.S. Baev, S.I. Baiborodin, К.E. Orishchenko, A.V. Kochetov, O.I. Sinitsyna
    Fluorescent labeling of ursolic acid with FITC for investigation of its cytotoxic activity using confocal microscopy
    Bioorganic Chemistry, 2019, V. 87, Pp 876-887 doi:10.1016/j.bioorg.2018.11.052, IF=3.929
  507. T.S. Frolova, A.V. Lipeeva, D.S. Baev, S.I. Baiborodin, К.E. Orishchenko, A.V. Kochetov, O.I. Sinitsyna
    Fluorescent labeling of ursolic acid with FITC for investigation of its cytotoxic activity using confocal microscopy
    Bioorganic Chemistry, 2019, V. 87, Pp 876-887 doi:10.1016/j.bioorg.2018.11.052, IF=3.929
  508. A.Yu.Sidorenko, A.V.Kravtsova, A.Aho, I.Heinmaa, J.Warna, H.Pazniak, K.P.Volcho, N.F.Salakhutdinov, D.Yu.Murzin, V.E.Agabekov
    Highly selective Prins reaction over acid-modified halloysite nanotubes for synthesis of isopulegol-derived 2H-chromene compounds
    Journal of Catalysis, 2019, V. 374, Pp 360-377 doi:10.1016/j.jcat.2019.05.009, IF=7.723
  509. A.Yu.Sidorenko, A.V.Kravtsova, A.Aho, I.Heinmaa, J.Warna, H.Pazniak, K.P.Volcho, N.F.Salakhutdinov, D.Yu.Murzin, V.E.Agabekov
    Highly selective Prins reaction over acid-modified halloysite nanotubes for synthesis of isopulegol-derived 2H-chromene compounds
    Journal of Catalysis, 2019, V. 374, Pp 360-377 doi:10.1016/j.jcat.2019.05.009, IF=7.723
  510. A.Yu.Sidorenko, A.V.Kravtsova, A.Aho, I.Heinmaa, J.Warna, H.Pazniak, K.P.Volcho, N.F.Salakhutdinov, D.Yu.Murzin, V.E.Agabekov
    Highly selective Prins reaction over acid-modified halloysite nanotubes for synthesis of isopulegol-derived 2H-chromene compounds
    Journal of Catalysis, 2019, V. 374, Pp 360-377 doi:10.1016/j.jcat.2019.05.009, IF=7.723
  511. A.Yu.Sidorenko, A.V.Kravtsova, A.Aho, I.Heinmaa, J.Warna, H.Pazniak, K.P.Volcho, N.F.Salakhutdinov, D.Yu.Murzin, V.E.Agabekov
    Highly selective Prins reaction over acid-modified halloysite nanotubes for synthesis of isopulegol-derived 2H-chromene compounds
    Journal of Catalysis, 2019, V. 374, Pp 360-377 doi:10.1016/j.jcat.2019.05.009, IF=7.723
  512. A.Yu.Sidorenko, A.V.Kravtsova, A.Aho, I.Heinmaa, J.Warna, H.Pazniak, K.P.Volcho, N.F.Salakhutdinov, D.Yu.Murzin, V.E.Agabekov
    Highly selective Prins reaction over acid-modified halloysite nanotubes for synthesis of isopulegol-derived 2H-chromene compounds
    Journal of Catalysis, 2019, V. 374, Pp 360-377 doi:10.1016/j.jcat.2019.05.009, IF=7.723
  513. A.Yu.Sidorenko, A.V.Kravtsova, A.Aho, I.Heinmaa, J.Warna, H.Pazniak, K.P.Volcho, N.F.Salakhutdinov, D.Yu.Murzin, V.E.Agabekov
    Highly selective Prins reaction over acid-modified halloysite nanotubes for synthesis of isopulegol-derived 2H-chromene compounds
    Journal of Catalysis, 2019, V. 374, Pp 360-377 doi:10.1016/j.jcat.2019.05.009, IF=7.723
  514. A.Yu.Sidorenko, A.V.Kravtsova, A.Aho, I.Heinmaa, J.Warna, H.Pazniak, K.P.Volcho, N.F.Salakhutdinov, D.Yu.Murzin, V.E.Agabekov
    Highly selective Prins reaction over acid-modified halloysite nanotubes for synthesis of isopulegol-derived 2H-chromene compounds
    Journal of Catalysis, 2019, V. 374, Pp 360-377 doi:10.1016/j.jcat.2019.05.009, IF=7.723
  515. A.Yu.Sidorenko, A.V.Kravtsova, A.Aho, I.Heinmaa, J.Warna, H.Pazniak, K.P.Volcho, N.F.Salakhutdinov, D.Yu.Murzin, V.E.Agabekov
    Highly selective Prins reaction over acid-modified halloysite nanotubes for synthesis of isopulegol-derived 2H-chromene compounds
    Journal of Catalysis, 2019, V. 374, Pp 360-377 doi:10.1016/j.jcat.2019.05.009, IF=7.723
  516. С.А. Низомов, И.В. Сорокина, Н.А. Жукова, Т.Г. Толстикова, Д.Е. Семенов, А.Е. Просенко
    Морфологическая оценка простатотропной активности (3,5-диметил-4-гидрокси)бензилтиододекана на модели доброкачественной гиперплазии предстательной железы у крыс
    Бюллетень экспериментальной биологии и медицины. 2019. Т. 167. № 6. С. 772-776. (Morphological analysis of prostatotropic activity of (3,5-dimethyl-4-hydroxy) benzyltiodyododecan in the model of benign prostatic hyperplasia in rats/ S.A. Nizomov, I.V. Sorokina, N.A. Zhukova, T.G. Tolstikova, D.E. Semenov, A.E. Prosenko// Bulletin of Experimental Biology and Medicine, 2019, V. 167, N 6, pp 809-812 doi:10.1007/s10517-019-04628-4), IF=0.567
  517. С.А. Низомов, И.В. Сорокина, Н.А. Жукова, Т.Г. Толстикова, Д.Е. Семенов, А.Е. Просенко
    Морфологическая оценка простатотропной активности (3,5-диметил-4-гидрокси)бензилтиододекана на модели доброкачественной гиперплазии предстательной железы у крыс
    Бюллетень экспериментальной биологии и медицины. 2019. Т. 167. № 6. С. 772-776. (Morphological analysis of prostatotropic activity of (3,5-dimethyl-4-hydroxy) benzyltiodyododecan in the model of benign prostatic hyperplasia in rats/ S.A. Nizomov, I.V. Sorokina, N.A. Zhukova, T.G. Tolstikova, D.E. Semenov, A.E. Prosenko// Bulletin of Experimental Biology and Medicine, 2019, V. 167, N 6, pp 809-812 doi:10.1007/s10517-019-04628-4), IF=0.567
  518. A.V. Artem'v, A.S. Beresin, I.Yu. Bagryanskaya
    Synthesis, structure and emission properties of [Cu2(μ2-I)2L4] complex based on 2-(methylthio)pyrazine
    Журнал структурной химии. 2019. Т. 60. № 6. С. 1008-1012. (DOI:10.26902/JSC_id40732) (Synthesis, structure and emission properties of [Cu2(μ2-I)2L4] complex based on 2-(methylthio)pyrazine/ A. V. Artem'ev, A. S. Beresin, I. Yu. Bagryanskaya// Journal of Structural Chemistry, 2019, V. 60, N 6, pp 967-971 doi:10.1134/S0022476619060118), IF=0.541
  519. A.V. Artem'v, A.S. Beresin, I.Yu. Bagryanskaya
    Synthesis, structure and emission properties of [Cu2(μ2-I)2L4] complex based on 2-(methylthio)pyrazine
    Журнал структурной химии. 2019. Т. 60. № 6. С. 1008-1012. (DOI:10.26902/JSC_id40732) (Synthesis, structure and emission properties of [Cu2(μ2-I)2L4] complex based on 2-(methylthio)pyrazine/ A. V. Artem'ev, A. S. Beresin, I. Yu. Bagryanskaya// Journal of Structural Chemistry, 2019, V. 60, N 6, pp 967-971 doi:10.1134/S0022476619060118), IF=0.541
  520. A.M. Genaev, L.N. Shchegoleva, G.E. Salnikov, A.V. Shernyukov, L.A. Shundrin, I.K. Shundrina, Z. Zhu, K.Yu. Koltunov
    Acid-Catalyzed vs. Thermally Induced C1-C1' Bond Cleavage in 1,1'-Bi-2-naphthol. An Experimental and Theoretical Study
    J. Org. Chem., 2019, V. 84, N 11, Pp 7238-7243 doi:10.1021/acs.joc.9b00915, IF=4.745
  521. A.M. Genaev, L.N. Shchegoleva, G.E. Salnikov, A.V. Shernyukov, L.A. Shundrin, I.K. Shundrina, Z. Zhu, K.Yu. Koltunov
    Acid-Catalyzed vs. Thermally Induced C1-C1' Bond Cleavage in 1,1'-Bi-2-naphthol. An Experimental and Theoretical Study
    J. Org. Chem., 2019, V. 84, N 11, Pp 7238-7243 doi:10.1021/acs.joc.9b00915, IF=4.745
  522. S.V. Valiulin, A.A. Onischuk, A.M. Baklanov, S.N. Dubtsov, S.V. An'kov, T.G. Tolstikova, M.E. Plokhotnichenko, G.G. Dultseva, P.S. Mazunina
    Excipient-free isoniazid aerosol administration in mice: Evaporation-nucleation particle generation, pulmonary delivery and body distribution
    International Journal of Pharmaceutics, 2019, V. 563, Pp 101-109 doi:10.1016/j.ijpharm.2019.03.050, IF=4.213
  523. S.V. Valiulin, A.A. Onischuk, A.M. Baklanov, S.N. Dubtsov, S.V. An'kov, T.G. Tolstikova, M.E. Plokhotnichenko, G.G. Dultseva, P.S. Mazunina
    Excipient-free isoniazid aerosol administration in mice: Evaporation-nucleation particle generation, pulmonary delivery and body distribution
    International Journal of Pharmaceutics, 2019, V. 563, Pp 101-109 doi:10.1016/j.ijpharm.2019.03.050, IF=4.213
  524. S.V. Valiulin, A.A. Onischuk, A.M. Baklanov, S.N. Dubtsov, S.V. An'kov, T.G. Tolstikova, M.E. Plokhotnichenko, G.G. Dultseva, P.S. Mazunina
    Excipient-free isoniazid aerosol administration in mice: Evaporation-nucleation particle generation, pulmonary delivery and body distribution
    International Journal of Pharmaceutics, 2019, V. 563, Pp 101-109 doi:10.1016/j.ijpharm.2019.03.050, IF=4.213
  525. S.V. Valiulin, A.A. Onischuk, A.M. Baklanov, S.N. Dubtsov, S.V. An'kov, T.G. Tolstikova, M.E. Plokhotnichenko, G.G. Dultseva, P.S. Mazunina
    Excipient-free isoniazid aerosol administration in mice: Evaporation-nucleation particle generation, pulmonary delivery and body distribution
    International Journal of Pharmaceutics, 2019, V. 563, Pp 101-109 doi:10.1016/j.ijpharm.2019.03.050, IF=4.213
  526. S.V. Valiulin, A.A. Onischuk, A.M. Baklanov, S.N. Dubtsov, S.V. An'kov, T.G. Tolstikova, M.E. Plokhotnichenko, G.G. Dultseva, P.S. Mazunina
    Excipient-free isoniazid aerosol administration in mice: Evaporation-nucleation particle generation, pulmonary delivery and body distribution
    International Journal of Pharmaceutics, 2019, V. 563, Pp 101-109 doi:10.1016/j.ijpharm.2019.03.050, IF=4.213
  527. S.V. Valiulin, A.A. Onischuk, A.M. Baklanov, S.N. Dubtsov, S.V. An'kov, T.G. Tolstikova, M.E. Plokhotnichenko, G.G. Dultseva, P.S. Mazunina
    Excipient-free isoniazid aerosol administration in mice: Evaporation-nucleation particle generation, pulmonary delivery and body distribution
    International Journal of Pharmaceutics, 2019, V. 563, Pp 101-109 doi:10.1016/j.ijpharm.2019.03.050, IF=4.213
  528. S.V. Valiulin, A.A. Onischuk, A.M. Baklanov, S.N. Dubtsov, S.V. An'kov, T.G. Tolstikova, M.E. Plokhotnichenko, G.G. Dultseva, P.S. Mazunina
    Excipient-free isoniazid aerosol administration in mice: Evaporation-nucleation particle generation, pulmonary delivery and body distribution
    International Journal of Pharmaceutics, 2019, V. 563, Pp 101-109 doi:10.1016/j.ijpharm.2019.03.050, IF=4.213
  529. T.M. Khomenko, D.V. Korchagina, D.S. Baev, P.M. Vassiliev, K.P. Volcho, N.F. Salakhutdinov
    Antimicrobial Activity of Substituted Benzopentathiepin-6-amines
    Journal of Antibiotics, 2019, V. 72, pp 590-599 doi:10.1038/s41429-019-0191-y, IF=2.446
  530. S.V. Derevyashkin, E.A. Soboleva, V.V. Shelkovnikov, V.P. Korolkov, A.I. Malyshev, E.V. Spesivtsev
    Triacrylamide polyfluorinated chalcone derivative as high resistant light-sensitive material for technology of diffractive optical elements
    Proceedings of SPIE - The International Society for Optical Engineering, 2019, V. 11030, Num.art 110301D doi:10.1117/12.2521139
  531. S.V. Derevyashkin, E.A. Soboleva, V.V. Shelkovnikov, V.P. Korolkov, A.I. Malyshev, E.V. Spesivtsev
    Triacrylamide polyfluorinated chalcone derivative as high resistant light-sensitive material for technology of diffractive optical elements
    Proceedings of SPIE - The International Society for Optical Engineering, 2019, V. 11030, Num.art 110301D doi:10.1117/12.2521139
  532. S.V. Derevyashkin, E.A. Soboleva, V.V. Shelkovnikov, V.P. Korolkov, A.I. Malyshev, E.V. Spesivtsev
    Triacrylamide polyfluorinated chalcone derivative as high resistant light-sensitive material for technology of diffractive optical elements
    Proceedings of SPIE - The International Society for Optical Engineering, 2019, V. 11030, Num.art 110301D doi:10.1117/12.2521139
  533. T. Yamasaki, D. Buric, C. Chacon, G. Audran, D. Braguer, S.R-A. Marque, M. Carre, P. Bremond
    Chemical modifications of imidazole-containing alkoxyamines increase C–ON bond homolysis rate: effects on their cytotoxic properties in glioblastoma cells
    Bioorganic & Medicinal Chemistry, 2019, V. 27, N 10, Pp 1942-1951 doi:10.1016/j.bmc.2019.03.029, IF=2.802
  534. T. Yamasaki, D. Buric, C. Chacon, G. Audran, D. Braguer, S.R-A. Marque, M. Carre, P. Bremond
    Chemical modifications of imidazole-containing alkoxyamines increase C–ON bond homolysis rate: effects on their cytotoxic properties in glioblastoma cells
    Bioorganic & Medicinal Chemistry, 2019, V. 27, N 10, Pp 1942-1951 doi:10.1016/j.bmc.2019.03.029, IF=2.802
  535. T. Yamasaki, D. Buric, C. Chacon, G. Audran, D. Braguer, S.R-A. Marque, M. Carre, P. Bremond
    Chemical modifications of imidazole-containing alkoxyamines increase C–ON bond homolysis rate: effects on their cytotoxic properties in glioblastoma cells
    Bioorganic & Medicinal Chemistry, 2019, V. 27, N 10, Pp 1942-1951 doi:10.1016/j.bmc.2019.03.029, IF=2.802
  536. T. Yamasaki, D. Buric, C. Chacon, G. Audran, D. Braguer, S.R-A. Marque, M. Carre, P. Bremond
    Chemical modifications of imidazole-containing alkoxyamines increase C–ON bond homolysis rate: effects on their cytotoxic properties in glioblastoma cells
    Bioorganic & Medicinal Chemistry, 2019, V. 27, N 10, Pp 1942-1951 doi:10.1016/j.bmc.2019.03.029, IF=2.802
  537. T. Yamasaki, D. Buric, C. Chacon, G. Audran, D. Braguer, S.R-A. Marque, M. Carre, P. Bremond
    Chemical modifications of imidazole-containing alkoxyamines increase C–ON bond homolysis rate: effects on their cytotoxic properties in glioblastoma cells
    Bioorganic & Medicinal Chemistry, 2019, V. 27, N 10, Pp 1942-1951 doi:10.1016/j.bmc.2019.03.029, IF=2.802
  538. T. Yamasaki, D. Buric, C. Chacon, G. Audran, D. Braguer, S.R-A. Marque, M. Carre, P. Bremond
    Chemical modifications of imidazole-containing alkoxyamines increase C–ON bond homolysis rate: effects on their cytotoxic properties in glioblastoma cells
    Bioorganic & Medicinal Chemistry, 2019, V. 27, N 10, Pp 1942-1951 doi:10.1016/j.bmc.2019.03.029, IF=2.802
  539. T. Yamasaki, D. Buric, C. Chacon, G. Audran, D. Braguer, S.R-A. Marque, M. Carre, P. Bremond
    Chemical modifications of imidazole-containing alkoxyamines increase C–ON bond homolysis rate: effects on their cytotoxic properties in glioblastoma cells
    Bioorganic & Medicinal Chemistry, 2019, V. 27, N 10, Pp 1942-1951 doi:10.1016/j.bmc.2019.03.029, IF=2.802
  540. D. Stass, E. Tretyakov
    Estimation of Absolute Spin Counts in Nitronyl Nitroxide-Bearing Graphene Nanoribbons
    Magnetochemistry, 2019, 5(2), 32 (This article belongs to the Special Issue Controlling Molecular Nanomagnets) doi:10.3390/magnetochemistry5020032
  541. E. Avdeeva, E. Shults, T. Rybalova, Ya. Reshetov, E. Porokhova, I. Sukhodolo, L. Litvinova, V. Shupletsova, O. Khaziakhmatova, I. Khlusov, A. Guryev, M. Belousov
    Chelidonic Acid and Its Derivatives from Saussurea Controversa: Isolation, Structural Elucidation and Influence on the Osteogenic Differentiation of Multipotent Mesenchymal Stromal Cells In Vitro
    Biomolecules, 2019, 9(5), 189 doi:10.3390/biom9050189, IF=4.694
  542. E. Avdeeva, E. Shults, T. Rybalova, Ya. Reshetov, E. Porokhova, I. Sukhodolo, L. Litvinova, V. Shupletsova, O. Khaziakhmatova, I. Khlusov, A. Guryev, M. Belousov
    Chelidonic Acid and Its Derivatives from Saussurea Controversa: Isolation, Structural Elucidation and Influence on the Osteogenic Differentiation of Multipotent Mesenchymal Stromal Cells In Vitro
    Biomolecules, 2019, 9(5), 189 doi:10.3390/biom9050189, IF=4.694
  543. E. Avdeeva, E. Shults, T. Rybalova, Ya. Reshetov, E. Porokhova, I. Sukhodolo, L. Litvinova, V. Shupletsova, O. Khaziakhmatova, I. Khlusov, A. Guryev, M. Belousov
    Chelidonic Acid and Its Derivatives from Saussurea Controversa: Isolation, Structural Elucidation and Influence on the Osteogenic Differentiation of Multipotent Mesenchymal Stromal Cells In Vitro
    Biomolecules, 2019, 9(5), 189 doi:10.3390/biom9050189, IF=4.694
  544. E. Avdeeva, E. Shults, T. Rybalova, Ya. Reshetov, E. Porokhova, I. Sukhodolo, L. Litvinova, V. Shupletsova, O. Khaziakhmatova, I. Khlusov, A. Guryev, M. Belousov
    Chelidonic Acid and Its Derivatives from Saussurea Controversa: Isolation, Structural Elucidation and Influence on the Osteogenic Differentiation of Multipotent Mesenchymal Stromal Cells In Vitro
    Biomolecules, 2019, 9(5), 189 doi:10.3390/biom9050189, IF=4.694
  545. E. Avdeeva, E. Shults, T. Rybalova, Ya. Reshetov, E. Porokhova, I. Sukhodolo, L. Litvinova, V. Shupletsova, O. Khaziakhmatova, I. Khlusov, A. Guryev, M. Belousov
    Chelidonic Acid and Its Derivatives from Saussurea Controversa: Isolation, Structural Elucidation and Influence on the Osteogenic Differentiation of Multipotent Mesenchymal Stromal Cells In Vitro
    Biomolecules, 2019, 9(5), 189 doi:10.3390/biom9050189, IF=4.694
  546. E. Avdeeva, E. Shults, T. Rybalova, Ya. Reshetov, E. Porokhova, I. Sukhodolo, L. Litvinova, V. Shupletsova, O. Khaziakhmatova, I. Khlusov, A. Guryev, M. Belousov
    Chelidonic Acid and Its Derivatives from Saussurea Controversa: Isolation, Structural Elucidation and Influence on the Osteogenic Differentiation of Multipotent Mesenchymal Stromal Cells In Vitro
    Biomolecules, 2019, 9(5), 189 doi:10.3390/biom9050189, IF=4.694
  547. E. Avdeeva, E. Shults, T. Rybalova, Ya. Reshetov, E. Porokhova, I. Sukhodolo, L. Litvinova, V. Shupletsova, O. Khaziakhmatova, I. Khlusov, A. Guryev, M. Belousov
    Chelidonic Acid and Its Derivatives from Saussurea Controversa: Isolation, Structural Elucidation and Influence on the Osteogenic Differentiation of Multipotent Mesenchymal Stromal Cells In Vitro
    Biomolecules, 2019, 9(5), 189 doi:10.3390/biom9050189, IF=4.694
  548. E. Avdeeva, E. Shults, T. Rybalova, Ya. Reshetov, E. Porokhova, I. Sukhodolo, L. Litvinova, V. Shupletsova, O. Khaziakhmatova, I. Khlusov, A. Guryev, M. Belousov
    Chelidonic Acid and Its Derivatives from Saussurea Controversa: Isolation, Structural Elucidation and Influence on the Osteogenic Differentiation of Multipotent Mesenchymal Stromal Cells In Vitro
    Biomolecules, 2019, 9(5), 189 doi:10.3390/biom9050189, IF=4.694
  549. E. Avdeeva, E. Shults, T. Rybalova, Ya. Reshetov, E. Porokhova, I. Sukhodolo, L. Litvinova, V. Shupletsova, O. Khaziakhmatova, I. Khlusov, A. Guryev, M. Belousov
    Chelidonic Acid and Its Derivatives from Saussurea Controversa: Isolation, Structural Elucidation and Influence on the Osteogenic Differentiation of Multipotent Mesenchymal Stromal Cells In Vitro
    Biomolecules, 2019, 9(5), 189 doi:10.3390/biom9050189, IF=4.694
  550. E. Avdeeva, E. Shults, T. Rybalova, Ya. Reshetov, E. Porokhova, I. Sukhodolo, L. Litvinova, V. Shupletsova, O. Khaziakhmatova, I. Khlusov, A. Guryev, M. Belousov
    Chelidonic Acid and Its Derivatives from Saussurea Controversa: Isolation, Structural Elucidation and Influence on the Osteogenic Differentiation of Multipotent Mesenchymal Stromal Cells In Vitro
    Biomolecules, 2019, 9(5), 189 doi:10.3390/biom9050189, IF=4.694
  551. I.Yu. Fleitlikh, N.A. Grigorieva, N.I. Pavlenko, A.A. Kondrasenko, A.Ya. Tikhonov, O.A. Logutenko
    Synergistic Silver Extraction from Hydrochloric Acid Solutions with Triisobutylphosphine Sulfide in the Presence of Organic Proton-Donor Additives
    Solvent Extraction and Ion Exchange, 2019, V. 37, N 1, Pp 96-109 doi:10.1080/07366299.2019.1592925, IF=1.831
  552. I.Yu. Fleitlikh, N.A. Grigorieva, N.I. Pavlenko, A.A. Kondrasenko, A.Ya. Tikhonov, O.A. Logutenko
    Synergistic Silver Extraction from Hydrochloric Acid Solutions with Triisobutylphosphine Sulfide in the Presence of Organic Proton-Donor Additives
    Solvent Extraction and Ion Exchange, 2019, V. 37, N 1, Pp 96-109 doi:10.1080/07366299.2019.1592925, IF=1.831
  553. I.Yu. Fleitlikh, N.A. Grigorieva, N.I. Pavlenko, A.A. Kondrasenko, A.Ya. Tikhonov, O.A. Logutenko
    Synergistic Silver Extraction from Hydrochloric Acid Solutions with Triisobutylphosphine Sulfide in the Presence of Organic Proton-Donor Additives
    Solvent Extraction and Ion Exchange, 2019, V. 37, N 1, Pp 96-109 doi:10.1080/07366299.2019.1592925, IF=1.831
  554. I.Yu. Fleitlikh, N.A. Grigorieva, N.I. Pavlenko, A.A. Kondrasenko, A.Ya. Tikhonov, O.A. Logutenko
    Synergistic Silver Extraction from Hydrochloric Acid Solutions with Triisobutylphosphine Sulfide in the Presence of Organic Proton-Donor Additives
    Solvent Extraction and Ion Exchange, 2019, V. 37, N 1, Pp 96-109 doi:10.1080/07366299.2019.1592925, IF=1.831
  555. I.Yu. Fleitlikh, N.A. Grigorieva, N.I. Pavlenko, A.A. Kondrasenko, A.Ya. Tikhonov, O.A. Logutenko
    Synergistic Silver Extraction from Hydrochloric Acid Solutions with Triisobutylphosphine Sulfide in the Presence of Organic Proton-Donor Additives
    Solvent Extraction and Ion Exchange, 2019, V. 37, N 1, Pp 96-109 doi:10.1080/07366299.2019.1592925, IF=1.831
  556. P. Maki-Arvela, N. Shcherban, Ch. Lozachmeur, K. Eranen, A. Aho, A. Smeds, N. Kumar, J. Peltonen, M. Peurla, V. Russo, K.P. Volcho, D.Yu. Murzin
    Aldol Condensation of Cyclopentanone with Valeraldehyde Over Metal Oxides
    Catalysis Letters, 2019, V. 149, N 5, pp 1383-1395 doi:10.1007/s10562-019-02701-1, IF=2.372
  557. P. Maki-Arvela, N. Shcherban, Ch. Lozachmeur, K. Eranen, A. Aho, A. Smeds, N. Kumar, J. Peltonen, M. Peurla, V. Russo, K.P. Volcho, D.Yu. Murzin
    Aldol Condensation of Cyclopentanone with Valeraldehyde Over Metal Oxides
    Catalysis Letters, 2019, V. 149, N 5, pp 1383-1395 doi:10.1007/s10562-019-02701-1, IF=2.372
  558. P. Maki-Arvela, N. Shcherban, Ch. Lozachmeur, K. Eranen, A. Aho, A. Smeds, N. Kumar, J. Peltonen, M. Peurla, V. Russo, K.P. Volcho, D.Yu. Murzin
    Aldol Condensation of Cyclopentanone with Valeraldehyde Over Metal Oxides
    Catalysis Letters, 2019, V. 149, N 5, pp 1383-1395 doi:10.1007/s10562-019-02701-1, IF=2.372
  559. P. Maki-Arvela, N. Shcherban, Ch. Lozachmeur, K. Eranen, A. Aho, A. Smeds, N. Kumar, J. Peltonen, M. Peurla, V. Russo, K.P. Volcho, D.Yu. Murzin
    Aldol Condensation of Cyclopentanone with Valeraldehyde Over Metal Oxides
    Catalysis Letters, 2019, V. 149, N 5, pp 1383-1395 doi:10.1007/s10562-019-02701-1, IF=2.372
  560. P. Maki-Arvela, N. Shcherban, Ch. Lozachmeur, K. Eranen, A. Aho, A. Smeds, N. Kumar, J. Peltonen, M. Peurla, V. Russo, K.P. Volcho, D.Yu. Murzin
    Aldol Condensation of Cyclopentanone with Valeraldehyde Over Metal Oxides
    Catalysis Letters, 2019, V. 149, N 5, pp 1383-1395 doi:10.1007/s10562-019-02701-1, IF=2.372
  561. P. Maki-Arvela, N. Shcherban, Ch. Lozachmeur, K. Eranen, A. Aho, A. Smeds, N. Kumar, J. Peltonen, M. Peurla, V. Russo, K.P. Volcho, D.Yu. Murzin
    Aldol Condensation of Cyclopentanone with Valeraldehyde Over Metal Oxides
    Catalysis Letters, 2019, V. 149, N 5, pp 1383-1395 doi:10.1007/s10562-019-02701-1, IF=2.372
  562. P. Maki-Arvela, N. Shcherban, Ch. Lozachmeur, K. Eranen, A. Aho, A. Smeds, N. Kumar, J. Peltonen, M. Peurla, V. Russo, K.P. Volcho, D.Yu. Murzin
    Aldol Condensation of Cyclopentanone with Valeraldehyde Over Metal Oxides
    Catalysis Letters, 2019, V. 149, N 5, pp 1383-1395 doi:10.1007/s10562-019-02701-1, IF=2.372
  563. P. Maki-Arvela, N. Shcherban, Ch. Lozachmeur, K. Eranen, A. Aho, A. Smeds, N. Kumar, J. Peltonen, M. Peurla, V. Russo, K.P. Volcho, D.Yu. Murzin
    Aldol Condensation of Cyclopentanone with Valeraldehyde Over Metal Oxides
    Catalysis Letters, 2019, V. 149, N 5, pp 1383-1395 doi:10.1007/s10562-019-02701-1, IF=2.372
  564. P. Maki-Arvela, N. Shcherban, Ch. Lozachmeur, K. Eranen, A. Aho, A. Smeds, N. Kumar, J. Peltonen, M. Peurla, V. Russo, K.P. Volcho, D.Yu. Murzin
    Aldol Condensation of Cyclopentanone with Valeraldehyde Over Metal Oxides
    Catalysis Letters, 2019, V. 149, N 5, pp 1383-1395 doi:10.1007/s10562-019-02701-1, IF=2.372
  565. P. Maki-Arvela, N. Shcherban, Ch. Lozachmeur, K. Eranen, A. Aho, A. Smeds, N. Kumar, J. Peltonen, M. Peurla, V. Russo, K.P. Volcho, D.Yu. Murzin
    Aldol Condensation of Cyclopentanone with Valeraldehyde Over Metal Oxides
    Catalysis Letters, 2019, V. 149, N 5, pp 1383-1395 doi:10.1007/s10562-019-02701-1, IF=2.372
  566. P. Maki-Arvela, N. Shcherban, Ch. Lozachmeur, K. Eranen, A. Aho, A. Smeds, N. Kumar, J. Peltonen, M. Peurla, V. Russo, K.P. Volcho, D.Yu. Murzin
    Aldol Condensation of Cyclopentanone with Valeraldehyde Over Metal Oxides
    Catalysis Letters, 2019, V. 149, N 5, pp 1383-1395 doi:10.1007/s10562-019-02701-1, IF=2.372
  567. N.A. Muraleva, N.G. Kolosova, N.A. Stefanova
    p38 MAPK–dependent alphaB-crystallin phosphorylation in Alzheimer's disease-like pathology in OXYS rats
    Experimental Gerontology, Volume 119, May 2019, Pp 45-52 doi:10.1016/j.exger.2019.01.017, IF=3.08
  568. N.A. Muraleva, N.G. Kolosova, N.A. Stefanova
    p38 MAPK–dependent alphaB-crystallin phosphorylation in Alzheimer's disease-like pathology in OXYS rats
    Experimental Gerontology, Volume 119, May 2019, Pp 45-52 doi:10.1016/j.exger.2019.01.017, IF=3.08
  569. Q. Zhang, L. Suntsova, Yu.S. Chistyachenko, V. Evseenko, M.V. Khvostov, N.E. Polyakov, A.V. Dushkin, W. Su
    Preparation, physicochemical and pharmacological study of curcumin solid dispersion with an arabinogalactan complexation agent
    International Journal of Biological Macromolecules, V. 128, 1 May 2019, Pp 158-166 doi:10.1016/j.ijbiomac.2019.01.079, IF=4.784
  570. Q. Zhang, L. Suntsova, Yu.S. Chistyachenko, V. Evseenko, M.V. Khvostov, N.E. Polyakov, A.V. Dushkin, W. Su
    Preparation, physicochemical and pharmacological study of curcumin solid dispersion with an arabinogalactan complexation agent
    International Journal of Biological Macromolecules, V. 128, 1 May 2019, Pp 158-166 doi:10.1016/j.ijbiomac.2019.01.079, IF=4.784
  571. Q. Zhang, L. Suntsova, Yu.S. Chistyachenko, V. Evseenko, M.V. Khvostov, N.E. Polyakov, A.V. Dushkin, W. Su
    Preparation, physicochemical and pharmacological study of curcumin solid dispersion with an arabinogalactan complexation agent
    International Journal of Biological Macromolecules, V. 128, 1 May 2019, Pp 158-166 doi:10.1016/j.ijbiomac.2019.01.079, IF=4.784
  572. Q. Zhang, L. Suntsova, Yu.S. Chistyachenko, V. Evseenko, M.V. Khvostov, N.E. Polyakov, A.V. Dushkin, W. Su
    Preparation, physicochemical and pharmacological study of curcumin solid dispersion with an arabinogalactan complexation agent
    International Journal of Biological Macromolecules, V. 128, 1 May 2019, Pp 158-166 doi:10.1016/j.ijbiomac.2019.01.079, IF=4.784
  573. Q. Zhang, L. Suntsova, Yu.S. Chistyachenko, V. Evseenko, M.V. Khvostov, N.E. Polyakov, A.V. Dushkin, W. Su
    Preparation, physicochemical and pharmacological study of curcumin solid dispersion with an arabinogalactan complexation agent
    International Journal of Biological Macromolecules, V. 128, 1 May 2019, Pp 158-166 doi:10.1016/j.ijbiomac.2019.01.079, IF=4.784
  574. Q. Zhang, L. Suntsova, Yu.S. Chistyachenko, V. Evseenko, M.V. Khvostov, N.E. Polyakov, A.V. Dushkin, W. Su
    Preparation, physicochemical and pharmacological study of curcumin solid dispersion with an arabinogalactan complexation agent
    International Journal of Biological Macromolecules, V. 128, 1 May 2019, Pp 158-166 doi:10.1016/j.ijbiomac.2019.01.079, IF=4.784
  575. Q. Zhang, L. Suntsova, Yu.S. Chistyachenko, V. Evseenko, M.V. Khvostov, N.E. Polyakov, A.V. Dushkin, W. Su
    Preparation, physicochemical and pharmacological study of curcumin solid dispersion with an arabinogalactan complexation agent
    International Journal of Biological Macromolecules, V. 128, 1 May 2019, Pp 158-166 doi:10.1016/j.ijbiomac.2019.01.079, IF=4.784
  576. A.V. Lipeeva, D.O. Zakharov, L.G. Burova, T.S. Frolova, D.S. Baev, I.V. Shirokikh, A.N. Evstropov, O.I. Sinitsyna, T.G. Tolsikova, E.E. Shults
    Design, Synthesis and Antibacterial Activity of Coumarin-1,2,3-triazole Hybrids Obtained from Natural Furocoumarin Peucedanin
    Molecules 2019, 24(11), 2126 doi:10.3390/molecules24112126, IF=3.06
  577. A.V. Lipeeva, D.O. Zakharov, L.G. Burova, T.S. Frolova, D.S. Baev, I.V. Shirokikh, A.N. Evstropov, O.I. Sinitsyna, T.G. Tolsikova, E.E. Shults
    Design, Synthesis and Antibacterial Activity of Coumarin-1,2,3-triazole Hybrids Obtained from Natural Furocoumarin Peucedanin
    Molecules 2019, 24(11), 2126 doi:10.3390/molecules24112126, IF=3.06
  578. A.V. Lipeeva, D.O. Zakharov, L.G. Burova, T.S. Frolova, D.S. Baev, I.V. Shirokikh, A.N. Evstropov, O.I. Sinitsyna, T.G. Tolsikova, E.E. Shults
    Design, Synthesis and Antibacterial Activity of Coumarin-1,2,3-triazole Hybrids Obtained from Natural Furocoumarin Peucedanin
    Molecules 2019, 24(11), 2126 doi:10.3390/molecules24112126, IF=3.06
  579. A.V. Lipeeva, D.O. Zakharov, L.G. Burova, T.S. Frolova, D.S. Baev, I.V. Shirokikh, A.N. Evstropov, O.I. Sinitsyna, T.G. Tolsikova, E.E. Shults
    Design, Synthesis and Antibacterial Activity of Coumarin-1,2,3-triazole Hybrids Obtained from Natural Furocoumarin Peucedanin
    Molecules 2019, 24(11), 2126 doi:10.3390/molecules24112126, IF=3.06
  580. A.V. Lipeeva, D.O. Zakharov, L.G. Burova, T.S. Frolova, D.S. Baev, I.V. Shirokikh, A.N. Evstropov, O.I. Sinitsyna, T.G. Tolsikova, E.E. Shults
    Design, Synthesis and Antibacterial Activity of Coumarin-1,2,3-triazole Hybrids Obtained from Natural Furocoumarin Peucedanin
    Molecules 2019, 24(11), 2126 doi:10.3390/molecules24112126, IF=3.06
  581. T.E. Kokina, L.A. Glinskaya, L.A. Sheludyakova, Yu.A. Eremina, L.S. Klyushova, V. Yu. Komarov, D.A. Piryazev, A.V. Tkachev, S.V. Larionov
    Synthesis, structure, and cytotoxicity of complexes of zinc(II), palladium(II), and copper(I) chlorides with (-)-camphor thiosemicarbazone
    Polyhedron, 2019, V. 163, Pp 121-130 doi:10.1016/j.poly.2019.02.020, IF=2.284
  582. T.E. Kokina, L.A. Glinskaya, L.A. Sheludyakova, Yu.A. Eremina, L.S. Klyushova, V. Yu. Komarov, D.A. Piryazev, A.V. Tkachev, S.V. Larionov
    Synthesis, structure, and cytotoxicity of complexes of zinc(II), palladium(II), and copper(I) chlorides with (-)-camphor thiosemicarbazone
    Polyhedron, 2019, V. 163, Pp 121-130 doi:10.1016/j.poly.2019.02.020, IF=2.284
  583. T.E. Kokina, L.A. Glinskaya, L.A. Sheludyakova, Yu.A. Eremina, L.S. Klyushova, V. Yu. Komarov, D.A. Piryazev, A.V. Tkachev, S.V. Larionov
    Synthesis, structure, and cytotoxicity of complexes of zinc(II), palladium(II), and copper(I) chlorides with (-)-camphor thiosemicarbazone
    Polyhedron, 2019, V. 163, Pp 121-130 doi:10.1016/j.poly.2019.02.020, IF=2.284
  584. T.E. Kokina, L.A. Glinskaya, L.A. Sheludyakova, Yu.A. Eremina, L.S. Klyushova, V. Yu. Komarov, D.A. Piryazev, A.V. Tkachev, S.V. Larionov
    Synthesis, structure, and cytotoxicity of complexes of zinc(II), palladium(II), and copper(I) chlorides with (-)-camphor thiosemicarbazone
    Polyhedron, 2019, V. 163, Pp 121-130 doi:10.1016/j.poly.2019.02.020, IF=2.284
  585. T.E. Kokina, L.A. Glinskaya, L.A. Sheludyakova, Yu.A. Eremina, L.S. Klyushova, V. Yu. Komarov, D.A. Piryazev, A.V. Tkachev, S.V. Larionov
    Synthesis, structure, and cytotoxicity of complexes of zinc(II), palladium(II), and copper(I) chlorides with (-)-camphor thiosemicarbazone
    Polyhedron, 2019, V. 163, Pp 121-130 doi:10.1016/j.poly.2019.02.020, IF=2.284
  586. T.E. Kokina, L.A. Glinskaya, L.A. Sheludyakova, Yu.A. Eremina, L.S. Klyushova, V. Yu. Komarov, D.A. Piryazev, A.V. Tkachev, S.V. Larionov
    Synthesis, structure, and cytotoxicity of complexes of zinc(II), palladium(II), and copper(I) chlorides with (-)-camphor thiosemicarbazone
    Polyhedron, 2019, V. 163, Pp 121-130 doi:10.1016/j.poly.2019.02.020, IF=2.284
  587. T.E. Kokina, L.A. Glinskaya, L.A. Sheludyakova, Yu.A. Eremina, L.S. Klyushova, V. Yu. Komarov, D.A. Piryazev, A.V. Tkachev, S.V. Larionov
    Synthesis, structure, and cytotoxicity of complexes of zinc(II), palladium(II), and copper(I) chlorides with (-)-camphor thiosemicarbazone
    Polyhedron, 2019, V. 163, Pp 121-130 doi:10.1016/j.poly.2019.02.020, IF=2.284
  588. T.E. Kokina, L.A. Glinskaya, L.A. Sheludyakova, Yu.A. Eremina, L.S. Klyushova, V. Yu. Komarov, D.A. Piryazev, A.V. Tkachev, S.V. Larionov
    Synthesis, structure, and cytotoxicity of complexes of zinc(II), palladium(II), and copper(I) chlorides with (-)-camphor thiosemicarbazone
    Polyhedron, 2019, V. 163, Pp 121-130 doi:10.1016/j.poly.2019.02.020, IF=2.284
  589. Z. Zhu, A.M. Genaev, G.E. Salnikov, K.Yu. Koltunov
    Mechanistic investigation of superelectrophilic activation of 1,1'-bi-2-naphthols in the presence of aluminum halides
    Org. Biomol. Chem., 2019, V. 17, N 16, Pp 3971-3977 doi:10.1039/C9OB00640K, IF=3.49
  590. Z. Zhu, A.M. Genaev, G.E. Salnikov, K.Yu. Koltunov
    Mechanistic investigation of superelectrophilic activation of 1,1'-bi-2-naphthols in the presence of aluminum halides
    Org. Biomol. Chem., 2019, V. 17, N 16, Pp 3971-3977 doi:10.1039/C9OB00640K, IF=3.49
  591. И.В. Нечепуренко, Е.Д. Широкова, М.В. Хвостов, Т.С. Фролова, О.И. Синицина, А.М. Максимов, Р.А. Бредихин, Н.И. Комарова, Д.С. Фадеев, О.А. Лузина, Т.Г. Толстикова, Н.Ф. Салахутдинов
    Синтез, гиполипидемическая и противогрибковая активность сульфонатов тетрагидроберберрубина
    Известия Академии наук. Серия химическая, 2019, Т. 68, N 5, Cc. 1052-1060 (Synthesis, hypolipidemic and antifungal activity of tetrahydroberberrubine sulfonates/ I. V. Nechepurenko, E. D. Shirokova, M. V. Khvostov, T. S. Frolova, O. I. Sinitsyna, A. M. Maksimov, R. A. Bredikhin, N. I. Komarova, D. S. Fadeev, O. A. Luzina, T. G. Tolstikova, N. F. Salakhutdinova// Russian Chemical Bulletin, 2019, V. 68, N 5, pp 1052-1060 doi:10.1007/s11172-019-2519-y), IF=1.014
  592. И.В. Нечепуренко, Е.Д. Широкова, М.В. Хвостов, Т.С. Фролова, О.И. Синицина, А.М. Максимов, Р.А. Бредихин, Н.И. Комарова, Д.С. Фадеев, О.А. Лузина, Т.Г. Толстикова, Н.Ф. Салахутдинов
    Синтез, гиполипидемическая и противогрибковая активность сульфонатов тетрагидроберберрубина
    Известия Академии наук. Серия химическая, 2019, Т. 68, N 5, Cc. 1052-1060 (Synthesis, hypolipidemic and antifungal activity of tetrahydroberberrubine sulfonates/ I. V. Nechepurenko, E. D. Shirokova, M. V. Khvostov, T. S. Frolova, O. I. Sinitsyna, A. M. Maksimov, R. A. Bredikhin, N. I. Komarova, D. S. Fadeev, O. A. Luzina, T. G. Tolstikova, N. F. Salakhutdinova// Russian Chemical Bulletin, 2019, V. 68, N 5, pp 1052-1060 doi:10.1007/s11172-019-2519-y), IF=1.014
  593. А.С. Соколова, Д.В. Баранова, О.И. Яровая, Д.С. Баев, О.А. Полежаева, А.В. Зыбкина, Д.Н. Щербаков, Т.Г. Толстикова, Н.Ф. Салахутдинов
    Синтез производных (1S)-(+)-камфора-10-сульфокислоты и изучение их противовирусной активности в качестве ингибиторов филовирусных инфекций in vitro и in silico
    Известия Академии наук. Серия химическая, 2019, Т. 68, N 5, Cc. 1041-1046 (Synthesis of (1S)-(+)-camphor-10-sulfonic acid derivatives and investigations in vitro and in silico of their antiviral activity as the inhibitors of fi lovirus infections/ A. S. Sokolova, D. V. Baranova, O. I. Yarovaya, D. S. Baev, O. A. Polezhaeva, A. V. Zybkina, D. N. Shcherbakov, T. G. Tolstikova, N. F. Salakhutdinov// Russian Chemical Bulletin, 2019, V 68, N 5, pp 1041-1046 doi:10.1007/s11172-019-2517-0), IF=1.014
  594. А.С. Соколова, Д.В. Баранова, О.И. Яровая, Д.С. Баев, О.А. Полежаева, А.В. Зыбкина, Д.Н. Щербаков, Т.Г. Толстикова, Н.Ф. Салахутдинов
    Синтез производных (1S)-(+)-камфора-10-сульфокислоты и изучение их противовирусной активности в качестве ингибиторов филовирусных инфекций in vitro и in silico
    Известия Академии наук. Серия химическая, 2019, Т. 68, N 5, Cc. 1041-1046 (Synthesis of (1S)-(+)-camphor-10-sulfonic acid derivatives and investigations in vitro and in silico of their antiviral activity as the inhibitors of fi lovirus infections/ A. S. Sokolova, D. V. Baranova, O. I. Yarovaya, D. S. Baev, O. A. Polezhaeva, A. V. Zybkina, D. N. Shcherbakov, T. G. Tolstikova, N. F. Salakhutdinov// Russian Chemical Bulletin, 2019, V 68, N 5, pp 1041-1046 doi:10.1007/s11172-019-2517-0), IF=1.014
  595. А.С. Соколова, Д.В. Баранова, О.И. Яровая, Д.С. Баев, О.А. Полежаева, А.В. Зыбкина, Д.Н. Щербаков, Т.Г. Толстикова, Н.Ф. Салахутдинов
    Синтез производных (1S)-(+)-камфора-10-сульфокислоты и изучение их противовирусной активности в качестве ингибиторов филовирусных инфекций in vitro и in silico
    Известия Академии наук. Серия химическая, 2019, Т. 68, N 5, Cc. 1041-1046 (Synthesis of (1S)-(+)-camphor-10-sulfonic acid derivatives and investigations in vitro and in silico of their antiviral activity as the inhibitors of fi lovirus infections/ A. S. Sokolova, D. V. Baranova, O. I. Yarovaya, D. S. Baev, O. A. Polezhaeva, A. V. Zybkina, D. N. Shcherbakov, T. G. Tolstikova, N. F. Salakhutdinov// Russian Chemical Bulletin, 2019, V 68, N 5, pp 1041-1046 doi:10.1007/s11172-019-2517-0), IF=1.014
  596. А.Г. Потапов, И.К. Шундрина
    Влияние алифатических диолов и дикарбоновых кислот на свойства сополиэфиров этиленсукцината
    Высокомолекулярные соединения. Серия А. 2019. Т. 61. № 5. С. 387-397. (DOI: 10.1134/S2308112019050146) (Effect of Aliphatic Diols and Dicarboxylic Acids on the Properties of Ethylene Succinate Copolyesters/ A. G. Potapov, I. K. Shundrina// Polymer Science, Series A, 2019, V. 61, N 5, pp 544-554 doi:10.1134/S0965545X19050146), IF=0.984
  597. Л.М. Горностаев, Э.В. Нуретдинова, Т.И. Лаврикова, Ю.Г. Халявина, О.И. Фоминых, Ю.В. Гатилов
    О реакции 2-бензиламино-1,4-нафтохинонов с нитрозилсерной кислотой
    Журнал органической химии. 2019. Т. 55. № 5. С. 700-707. (DOI: 10.1134/S0514749219050069) (On the Reaction of 2-Benzylamino-1,4-naphthoquinones with Nitrosylsulfuric Acid/ L. M. Gornostaev, E. V. Nuretdinova, T. I. Lavrikova, Yu. G. Khalyavina, O. I. Fominykh, Yu. V. Gatilov// Russian Journal of Organic Chemistry, 2019, V. 55, N 5, pp 608–614 doi:10.1134/S1070428019050051), IF=0.751
  598. Л.М. Горностаев, Э.В. Нуретдинова, Т.И. Лаврикова, Ю.Г. Халявина, О.И. Фоминых, Ю.В. Гатилов
    О реакции 2-бензиламино-1,4-нафтохинонов с нитрозилсерной кислотой
    Журнал органической химии. 2019. Т. 55. № 5. С. 700-707. (DOI: 10.1134/S0514749219050069) (On the Reaction of 2-Benzylamino-1,4-naphthoquinones with Nitrosylsulfuric Acid/ L. M. Gornostaev, E. V. Nuretdinova, T. I. Lavrikova, Yu. G. Khalyavina, O. I. Fominykh, Yu. V. Gatilov// Russian Journal of Organic Chemistry, 2019, V. 55, N 5, pp 608–614 doi:10.1134/S1070428019050051), IF=0.751
  599. Л.М. Горностаев, Э.В. Нуретдинова, Т.И. Лаврикова, Ю.Г. Халявина, О.И. Фоминых, Ю.В. Гатилов
    О реакции 2-бензиламино-1,4-нафтохинонов с нитрозилсерной кислотой
    Журнал органической химии. 2019. Т. 55. № 5. С. 700-707. (DOI: 10.1134/S0514749219050069) (On the Reaction of 2-Benzylamino-1,4-naphthoquinones with Nitrosylsulfuric Acid/ L. M. Gornostaev, E. V. Nuretdinova, T. I. Lavrikova, Yu. G. Khalyavina, O. I. Fominykh, Yu. V. Gatilov// Russian Journal of Organic Chemistry, 2019, V. 55, N 5, pp 608–614 doi:10.1134/S1070428019050051), IF=0.751
  600. Л.М. Горностаев, Э.В. Нуретдинова, Т.И. Лаврикова, Ю.Г. Халявина, О.И. Фоминых, Ю.В. Гатилов
    О реакции 2-бензиламино-1,4-нафтохинонов с нитрозилсерной кислотой
    Журнал органической химии. 2019. Т. 55. № 5. С. 700-707. (DOI: 10.1134/S0514749219050069) (On the Reaction of 2-Benzylamino-1,4-naphthoquinones with Nitrosylsulfuric Acid/ L. M. Gornostaev, E. V. Nuretdinova, T. I. Lavrikova, Yu. G. Khalyavina, O. I. Fominykh, Yu. V. Gatilov// Russian Journal of Organic Chemistry, 2019, V. 55, N 5, pp 608–614 doi:10.1134/S1070428019050051), IF=0.751
  601. Л.М. Горностаев, Э.В. Нуретдинова, Т.И. Лаврикова, Ю.Г. Халявина, О.И. Фоминых, Ю.В. Гатилов
    О реакции 2-бензиламино-1,4-нафтохинонов с нитрозилсерной кислотой
    Журнал органической химии. 2019. Т. 55. № 5. С. 700-707. (DOI: 10.1134/S0514749219050069) (On the Reaction of 2-Benzylamino-1,4-naphthoquinones with Nitrosylsulfuric Acid/ L. M. Gornostaev, E. V. Nuretdinova, T. I. Lavrikova, Yu. G. Khalyavina, O. I. Fominykh, Yu. V. Gatilov// Russian Journal of Organic Chemistry, 2019, V. 55, N 5, pp 608–614 doi:10.1134/S1070428019050051), IF=0.751
  602. Л.В. ПОЛИТАНСКАЯ, Г.А. СЕЛИВАНОВА, Е.В. ПАНТЕЛЕЕВА, Е.В. ТРЕТЬЯКОВ, В.Е. ПЛАТОНОВ, П.В. НИКУЛЬШИН, А.С. ВИНОГРАДОВ, Я.В. ЗОНОВ, В.М. КАРПОВ, Т.В. МЕЖЕНКОВА, А.В. ВАСИЛЬЕВ, А.Б. КОЛДОБСКИЙ, О.С. ШИЛОВА, С.М. МОРОЗОВА, Я.В. БУРГАРТ, Е.В. ЩЕГОЛЬКОВ, В.И. САЛОУТИН, В.Б. СОКОЛОВ, А.Ю. АКСИНЕНКО, В.Г. НЕНАЙДЕНКО, М.Ю. МОСКАЛИК, В.В. АСТАХОВА, Б.А. ШАИНЯН, А.А. ТАБОЛИН, С.Л. ИОФФЕ, В.М. МУЗАЛЕВСКИЙ, Е.С. БАЛЕНКОВА, А.В. ШАСТИН, А.А. ТЮТЮНОВ, В.Э. БОЙКО, С.М. ИГУМНОВ, А.Д. ДИЛЬМАН, Н.Ю. АДОНИН, В.В. БАРДИН, С.М. МАСОУД, Д.В. ВОРОБЬЕВА, С.Н. ОСИПОВ, Э.В. НОСОВА, Г.Н. ЛИПУНОВА, В.Н. ЧАРУШИН, Д.О. ПРИМА, А.Г. МАКАРОВ, А.В. ЗИБАРЕВ, Б.А. ТРОФИМОВ, Л.Н. СОБЕНИНА, К.В. БЕЛЯЕВА, В.Я. СОСНОВСКИХ, Д.Л. ОБЫДЕННОВ, С.А. УСАЧЕВ
    Перспективные точки роста и вызовы фторорганической химии
    Успехи химии. 2019. Т. 88. № 5. С. 425-569. DOI:10.1070/RCR4871 (Organofluorine chemistry: promising growth areas and challenges/ Politanskaya L.V., Selivanova G.A., Panteleeva E.V., Tretyakov E.V., Platonov V.E., Nikulshin P.V., Vinogradov A.S., Zonov Ya.V., Karpov V.M., Mezhenkova T.V., Vasilyev A.V., Koldobskii A.B., Shilova O.S., Morozova S.M., Burgart Ya.V., Shchegolkov E.V., Saloutin V.I., Sokolov V.B., Aksinenko A.Yu., Nenajdenko V.G., Moskalik M.Yu., Astakhova V.V., Shainyan B.A., Tabolin A.A., Ioffe S.L., Muzalevskiy V.M., Balenkova E.S., Shastin A.V., Tyutyunov A.A., Boiko V.E., Igumnov S.M., Dilman A.D., Adonin N.Yu., Bardin V.V., Masoud S.M., Vorobyeva D.V., Osipov S.N., Nosova E.V., Lipunova G.N., Charushin V.N., Prima D.O., Makarov A.G., Zibarev A.V., Trofimov B.A., Sobenina L.N., Belyaeva K.V., Sosnovskikh V.Ya., Obydennov D.L., Usachev S.A.// RUSSIAN CHEMICAL REVIEWS, 2019, V. 55, N 5, Pp), IF=4.612
  603. Л.В. ПОЛИТАНСКАЯ, Г.А. СЕЛИВАНОВА, Е.В. ПАНТЕЛЕЕВА, Е.В. ТРЕТЬЯКОВ, В.Е. ПЛАТОНОВ, П.В. НИКУЛЬШИН, А.С. ВИНОГРАДОВ, Я.В. ЗОНОВ, В.М. КАРПОВ, Т.В. МЕЖЕНКОВА, А.В. ВАСИЛЬЕВ, А.Б. КОЛДОБСКИЙ, О.С. ШИЛОВА, С.М. МОРОЗОВА, Я.В. БУРГАРТ, Е.В. ЩЕГОЛЬКОВ, В.И. САЛОУТИН, В.Б. СОКОЛОВ, А.Ю. АКСИНЕНКО, В.Г. НЕНАЙДЕНКО, М.Ю. МОСКАЛИК, В.В. АСТАХОВА, Б.А. ШАИНЯН, А.А. ТАБОЛИН, С.Л. ИОФФЕ, В.М. МУЗАЛЕВСКИЙ, Е.С. БАЛЕНКОВА, А.В. ШАСТИН, А.А. ТЮТЮНОВ, В.Э. БОЙКО, С.М. ИГУМНОВ, А.Д. ДИЛЬМАН, Н.Ю. АДОНИН, В.В. БАРДИН, С.М. МАСОУД, Д.В. ВОРОБЬЕВА, С.Н. ОСИПОВ, Э.В. НОСОВА, Г.Н. ЛИПУНОВА, В.Н. ЧАРУШИН, Д.О. ПРИМА, А.Г. МАКАРОВ, А.В. ЗИБАРЕВ, Б.А. ТРОФИМОВ, Л.Н. СОБЕНИНА, К.В. БЕЛЯЕВА, В.Я. СОСНОВСКИХ, Д.Л. ОБЫДЕННОВ, С.А. УСАЧЕВ
    Перспективные точки роста и вызовы фторорганической химии
    Успехи химии. 2019. Т. 88. № 5. С. 425-569. DOI:10.1070/RCR4871 (Organofluorine chemistry: promising growth areas and challenges/ Politanskaya L.V., Selivanova G.A., Panteleeva E.V., Tretyakov E.V., Platonov V.E., Nikulshin P.V., Vinogradov A.S., Zonov Ya.V., Karpov V.M., Mezhenkova T.V., Vasilyev A.V., Koldobskii A.B., Shilova O.S., Morozova S.M., Burgart Ya.V., Shchegolkov E.V., Saloutin V.I., Sokolov V.B., Aksinenko A.Yu., Nenajdenko V.G., Moskalik M.Yu., Astakhova V.V., Shainyan B.A., Tabolin A.A., Ioffe S.L., Muzalevskiy V.M., Balenkova E.S., Shastin A.V., Tyutyunov A.A., Boiko V.E., Igumnov S.M., Dilman A.D., Adonin N.Yu., Bardin V.V., Masoud S.M., Vorobyeva D.V., Osipov S.N., Nosova E.V., Lipunova G.N., Charushin V.N., Prima D.O., Makarov A.G., Zibarev A.V., Trofimov B.A., Sobenina L.N., Belyaeva K.V., Sosnovskikh V.Ya., Obydennov D.L., Usachev S.A.// RUSSIAN CHEMICAL REVIEWS, 2019, V. 55, N 5, Pp), IF=4.612
  604. Л.В. ПОЛИТАНСКАЯ, Г.А. СЕЛИВАНОВА, Е.В. ПАНТЕЛЕЕВА, Е.В. ТРЕТЬЯКОВ, В.Е. ПЛАТОНОВ, П.В. НИКУЛЬШИН, А.С. ВИНОГРАДОВ, Я.В. ЗОНОВ, В.М. КАРПОВ, Т.В. МЕЖЕНКОВА, А.В. ВАСИЛЬЕВ, А.Б. КОЛДОБСКИЙ, О.С. ШИЛОВА, С.М. МОРОЗОВА, Я.В. БУРГАРТ, Е.В. ЩЕГОЛЬКОВ, В.И. САЛОУТИН, В.Б. СОКОЛОВ, А.Ю. АКСИНЕНКО, В.Г. НЕНАЙДЕНКО, М.Ю. МОСКАЛИК, В.В. АСТАХОВА, Б.А. ШАИНЯН, А.А. ТАБОЛИН, С.Л. ИОФФЕ, В.М. МУЗАЛЕВСКИЙ, Е.С. БАЛЕНКОВА, А.В. ШАСТИН, А.А. ТЮТЮНОВ, В.Э. БОЙКО, С.М. ИГУМНОВ, А.Д. ДИЛЬМАН, Н.Ю. АДОНИН, В.В. БАРДИН, С.М. МАСОУД, Д.В. ВОРОБЬЕВА, С.Н. ОСИПОВ, Э.В. НОСОВА, Г.Н. ЛИПУНОВА, В.Н. ЧАРУШИН, Д.О. ПРИМА, А.Г. МАКАРОВ, А.В. ЗИБАРЕВ, Б.А. ТРОФИМОВ, Л.Н. СОБЕНИНА, К.В. БЕЛЯЕВА, В.Я. СОСНОВСКИХ, Д.Л. ОБЫДЕННОВ, С.А. УСАЧЕВ
    Перспективные точки роста и вызовы фторорганической химии
    Успехи химии. 2019. Т. 88. № 5. С. 425-569. DOI:10.1070/RCR4871 (Organofluorine chemistry: promising growth areas and challenges/ Politanskaya L.V., Selivanova G.A., Panteleeva E.V., Tretyakov E.V., Platonov V.E., Nikulshin P.V., Vinogradov A.S., Zonov Ya.V., Karpov V.M., Mezhenkova T.V., Vasilyev A.V., Koldobskii A.B., Shilova O.S., Morozova S.M., Burgart Ya.V., Shchegolkov E.V., Saloutin V.I., Sokolov V.B., Aksinenko A.Yu., Nenajdenko V.G., Moskalik M.Yu., Astakhova V.V., Shainyan B.A., Tabolin A.A., Ioffe S.L., Muzalevskiy V.M., Balenkova E.S., Shastin A.V., Tyutyunov A.A., Boiko V.E., Igumnov S.M., Dilman A.D., Adonin N.Yu., Bardin V.V., Masoud S.M., Vorobyeva D.V., Osipov S.N., Nosova E.V., Lipunova G.N., Charushin V.N., Prima D.O., Makarov A.G., Zibarev A.V., Trofimov B.A., Sobenina L.N., Belyaeva K.V., Sosnovskikh V.Ya., Obydennov D.L., Usachev S.A.// RUSSIAN CHEMICAL REVIEWS, 2019, V. 55, N 5, Pp), IF=4.612
  605. Л.В. ПОЛИТАНСКАЯ, Г.А. СЕЛИВАНОВА, Е.В. ПАНТЕЛЕЕВА, Е.В. ТРЕТЬЯКОВ, В.Е. ПЛАТОНОВ, П.В. НИКУЛЬШИН, А.С. ВИНОГРАДОВ, Я.В. ЗОНОВ, В.М. КАРПОВ, Т.В. МЕЖЕНКОВА, А.В. ВАСИЛЬЕВ, А.Б. КОЛДОБСКИЙ, О.С. ШИЛОВА, С.М. МОРОЗОВА, Я.В. БУРГАРТ, Е.В. ЩЕГОЛЬКОВ, В.И. САЛОУТИН, В.Б. СОКОЛОВ, А.Ю. АКСИНЕНКО, В.Г. НЕНАЙДЕНКО, М.Ю. МОСКАЛИК, В.В. АСТАХОВА, Б.А. ШАИНЯН, А.А. ТАБОЛИН, С.Л. ИОФФЕ, В.М. МУЗАЛЕВСКИЙ, Е.С. БАЛЕНКОВА, А.В. ШАСТИН, А.А. ТЮТЮНОВ, В.Э. БОЙКО, С.М. ИГУМНОВ, А.Д. ДИЛЬМАН, Н.Ю. АДОНИН, В.В. БАРДИН, С.М. МАСОУД, Д.В. ВОРОБЬЕВА, С.Н. ОСИПОВ, Э.В. НОСОВА, Г.Н. ЛИПУНОВА, В.Н. ЧАРУШИН, Д.О. ПРИМА, А.Г. МАКАРОВ, А.В. ЗИБАРЕВ, Б.А. ТРОФИМОВ, Л.Н. СОБЕНИНА, К.В. БЕЛЯЕВА, В.Я. СОСНОВСКИХ, Д.Л. ОБЫДЕННОВ, С.А. УСАЧЕВ
    Перспективные точки роста и вызовы фторорганической химии
    Успехи химии. 2019. Т. 88. № 5. С. 425-569. DOI:10.1070/RCR4871 (Organofluorine chemistry: promising growth areas and challenges/ Politanskaya L.V., Selivanova G.A., Panteleeva E.V., Tretyakov E.V., Platonov V.E., Nikulshin P.V., Vinogradov A.S., Zonov Ya.V., Karpov V.M., Mezhenkova T.V., Vasilyev A.V., Koldobskii A.B., Shilova O.S., Morozova S.M., Burgart Ya.V., Shchegolkov E.V., Saloutin V.I., Sokolov V.B., Aksinenko A.Yu., Nenajdenko V.G., Moskalik M.Yu., Astakhova V.V., Shainyan B.A., Tabolin A.A., Ioffe S.L., Muzalevskiy V.M., Balenkova E.S., Shastin A.V., Tyutyunov A.A., Boiko V.E., Igumnov S.M., Dilman A.D., Adonin N.Yu., Bardin V.V., Masoud S.M., Vorobyeva D.V., Osipov S.N., Nosova E.V., Lipunova G.N., Charushin V.N., Prima D.O., Makarov A.G., Zibarev A.V., Trofimov B.A., Sobenina L.N., Belyaeva K.V., Sosnovskikh V.Ya., Obydennov D.L., Usachev S.A.// RUSSIAN CHEMICAL REVIEWS, 2019, V. 55, N 5, Pp), IF=4.612
  606. Л.В. ПОЛИТАНСКАЯ, Г.А. СЕЛИВАНОВА, Е.В. ПАНТЕЛЕЕВА, Е.В. ТРЕТЬЯКОВ, В.Е. ПЛАТОНОВ, П.В. НИКУЛЬШИН, А.С. ВИНОГРАДОВ, Я.В. ЗОНОВ, В.М. КАРПОВ, Т.В. МЕЖЕНКОВА, А.В. ВАСИЛЬЕВ, А.Б. КОЛДОБСКИЙ, О.С. ШИЛОВА, С.М. МОРОЗОВА, Я.В. БУРГАРТ, Е.В. ЩЕГОЛЬКОВ, В.И. САЛОУТИН, В.Б. СОКОЛОВ, А.Ю. АКСИНЕНКО, В.Г. НЕНАЙДЕНКО, М.Ю. МОСКАЛИК, В.В. АСТАХОВА, Б.А. ШАИНЯН, А.А. ТАБОЛИН, С.Л. ИОФФЕ, В.М. МУЗАЛЕВСКИЙ, Е.С. БАЛЕНКОВА, А.В. ШАСТИН, А.А. ТЮТЮНОВ, В.Э. БОЙКО, С.М. ИГУМНОВ, А.Д. ДИЛЬМАН, Н.Ю. АДОНИН, В.В. БАРДИН, С.М. МАСОУД, Д.В. ВОРОБЬЕВА, С.Н. ОСИПОВ, Э.В. НОСОВА, Г.Н. ЛИПУНОВА, В.Н. ЧАРУШИН, Д.О. ПРИМА, А.Г. МАКАРОВ, А.В. ЗИБАРЕВ, Б.А. ТРОФИМОВ, Л.Н. СОБЕНИНА, К.В. БЕЛЯЕВА, В.Я. СОСНОВСКИХ, Д.Л. ОБЫДЕННОВ, С.А. УСАЧЕВ
    Перспективные точки роста и вызовы фторорганической химии
    Успехи химии. 2019. Т. 88. № 5. С. 425-569. DOI:10.1070/RCR4871 (Organofluorine chemistry: promising growth areas and challenges/ Politanskaya L.V., Selivanova G.A., Panteleeva E.V., Tretyakov E.V., Platonov V.E., Nikulshin P.V., Vinogradov A.S., Zonov Ya.V., Karpov V.M., Mezhenkova T.V., Vasilyev A.V., Koldobskii A.B., Shilova O.S., Morozova S.M., Burgart Ya.V., Shchegolkov E.V., Saloutin V.I., Sokolov V.B., Aksinenko A.Yu., Nenajdenko V.G., Moskalik M.Yu., Astakhova V.V., Shainyan B.A., Tabolin A.A., Ioffe S.L., Muzalevskiy V.M., Balenkova E.S., Shastin A.V., Tyutyunov A.A., Boiko V.E., Igumnov S.M., Dilman A.D., Adonin N.Yu., Bardin V.V., Masoud S.M., Vorobyeva D.V., Osipov S.N., Nosova E.V., Lipunova G.N., Charushin V.N., Prima D.O., Makarov A.G., Zibarev A.V., Trofimov B.A., Sobenina L.N., Belyaeva K.V., Sosnovskikh V.Ya., Obydennov D.L., Usachev S.A.// RUSSIAN CHEMICAL REVIEWS, 2019, V. 55, N 5, Pp), IF=4.612
  607. Л.В. ПОЛИТАНСКАЯ, Г.А. СЕЛИВАНОВА, Е.В. ПАНТЕЛЕЕВА, Е.В. ТРЕТЬЯКОВ, В.Е. ПЛАТОНОВ, П.В. НИКУЛЬШИН, А.С. ВИНОГРАДОВ, Я.В. ЗОНОВ, В.М. КАРПОВ, Т.В. МЕЖЕНКОВА, А.В. ВАСИЛЬЕВ, А.Б. КОЛДОБСКИЙ, О.С. ШИЛОВА, С.М. МОРОЗОВА, Я.В. БУРГАРТ, Е.В. ЩЕГОЛЬКОВ, В.И. САЛОУТИН, В.Б. СОКОЛОВ, А.Ю. АКСИНЕНКО, В.Г. НЕНАЙДЕНКО, М.Ю. МОСКАЛИК, В.В. АСТАХОВА, Б.А. ШАИНЯН, А.А. ТАБОЛИН, С.Л. ИОФФЕ, В.М. МУЗАЛЕВСКИЙ, Е.С. БАЛЕНКОВА, А.В. ШАСТИН, А.А. ТЮТЮНОВ, В.Э. БОЙКО, С.М. ИГУМНОВ, А.Д. ДИЛЬМАН, Н.Ю. АДОНИН, В.В. БАРДИН, С.М. МАСОУД, Д.В. ВОРОБЬЕВА, С.Н. ОСИПОВ, Э.В. НОСОВА, Г.Н. ЛИПУНОВА, В.Н. ЧАРУШИН, Д.О. ПРИМА, А.Г. МАКАРОВ, А.В. ЗИБАРЕВ, Б.А. ТРОФИМОВ, Л.Н. СОБЕНИНА, К.В. БЕЛЯЕВА, В.Я. СОСНОВСКИХ, Д.Л. ОБЫДЕННОВ, С.А. УСАЧЕВ
    Перспективные точки роста и вызовы фторорганической химии
    Успехи химии. 2019. Т. 88. № 5. С. 425-569. DOI:10.1070/RCR4871 (Organofluorine chemistry: promising growth areas and challenges/ Politanskaya L.V., Selivanova G.A., Panteleeva E.V., Tretyakov E.V., Platonov V.E., Nikulshin P.V., Vinogradov A.S., Zonov Ya.V., Karpov V.M., Mezhenkova T.V., Vasilyev A.V., Koldobskii A.B., Shilova O.S., Morozova S.M., Burgart Ya.V., Shchegolkov E.V., Saloutin V.I., Sokolov V.B., Aksinenko A.Yu., Nenajdenko V.G., Moskalik M.Yu., Astakhova V.V., Shainyan B.A., Tabolin A.A., Ioffe S.L., Muzalevskiy V.M., Balenkova E.S., Shastin A.V., Tyutyunov A.A., Boiko V.E., Igumnov S.M., Dilman A.D., Adonin N.Yu., Bardin V.V., Masoud S.M., Vorobyeva D.V., Osipov S.N., Nosova E.V., Lipunova G.N., Charushin V.N., Prima D.O., Makarov A.G., Zibarev A.V., Trofimov B.A., Sobenina L.N., Belyaeva K.V., Sosnovskikh V.Ya., Obydennov D.L., Usachev S.A.// RUSSIAN CHEMICAL REVIEWS, 2019, V. 55, N 5, Pp), IF=4.612
  608. Л.В. ПОЛИТАНСКАЯ, Г.А. СЕЛИВАНОВА, Е.В. ПАНТЕЛЕЕВА, Е.В. ТРЕТЬЯКОВ, В.Е. ПЛАТОНОВ, П.В. НИКУЛЬШИН, А.С. ВИНОГРАДОВ, Я.В. ЗОНОВ, В.М. КАРПОВ, Т.В. МЕЖЕНКОВА, А.В. ВАСИЛЬЕВ, А.Б. КОЛДОБСКИЙ, О.С. ШИЛОВА, С.М. МОРОЗОВА, Я.В. БУРГАРТ, Е.В. ЩЕГОЛЬКОВ, В.И. САЛОУТИН, В.Б. СОКОЛОВ, А.Ю. АКСИНЕНКО, В.Г. НЕНАЙДЕНКО, М.Ю. МОСКАЛИК, В.В. АСТАХОВА, Б.А. ШАИНЯН, А.А. ТАБОЛИН, С.Л. ИОФФЕ, В.М. МУЗАЛЕВСКИЙ, Е.С. БАЛЕНКОВА, А.В. ШАСТИН, А.А. ТЮТЮНОВ, В.Э. БОЙКО, С.М. ИГУМНОВ, А.Д. ДИЛЬМАН, Н.Ю. АДОНИН, В.В. БАРДИН, С.М. МАСОУД, Д.В. ВОРОБЬЕВА, С.Н. ОСИПОВ, Э.В. НОСОВА, Г.Н. ЛИПУНОВА, В.Н. ЧАРУШИН, Д.О. ПРИМА, А.Г. МАКАРОВ, А.В. ЗИБАРЕВ, Б.А. ТРОФИМОВ, Л.Н. СОБЕНИНА, К.В. БЕЛЯЕВА, В.Я. СОСНОВСКИХ, Д.Л. ОБЫДЕННОВ, С.А. УСАЧЕВ
    Перспективные точки роста и вызовы фторорганической химии
    Успехи химии. 2019. Т. 88. № 5. С. 425-569. DOI:10.1070/RCR4871 (Organofluorine chemistry: promising growth areas and challenges/ Politanskaya L.V., Selivanova G.A., Panteleeva E.V., Tretyakov E.V., Platonov V.E., Nikulshin P.V., Vinogradov A.S., Zonov Ya.V., Karpov V.M., Mezhenkova T.V., Vasilyev A.V., Koldobskii A.B., Shilova O.S., Morozova S.M., Burgart Ya.V., Shchegolkov E.V., Saloutin V.I., Sokolov V.B., Aksinenko A.Yu., Nenajdenko V.G., Moskalik M.Yu., Astakhova V.V., Shainyan B.A., Tabolin A.A., Ioffe S.L., Muzalevskiy V.M., Balenkova E.S., Shastin A.V., Tyutyunov A.A., Boiko V.E., Igumnov S.M., Dilman A.D., Adonin N.Yu., Bardin V.V., Masoud S.M., Vorobyeva D.V., Osipov S.N., Nosova E.V., Lipunova G.N., Charushin V.N., Prima D.O., Makarov A.G., Zibarev A.V., Trofimov B.A., Sobenina L.N., Belyaeva K.V., Sosnovskikh V.Ya., Obydennov D.L., Usachev S.A.// RUSSIAN CHEMICAL REVIEWS, 2019, V. 55, N 5, Pp), IF=4.612
  609. Л.В. ПОЛИТАНСКАЯ, Г.А. СЕЛИВАНОВА, Е.В. ПАНТЕЛЕЕВА, Е.В. ТРЕТЬЯКОВ, В.Е. ПЛАТОНОВ, П.В. НИКУЛЬШИН, А.С. ВИНОГРАДОВ, Я.В. ЗОНОВ, В.М. КАРПОВ, Т.В. МЕЖЕНКОВА, А.В. ВАСИЛЬЕВ, А.Б. КОЛДОБСКИЙ, О.С. ШИЛОВА, С.М. МОРОЗОВА, Я.В. БУРГАРТ, Е.В. ЩЕГОЛЬКОВ, В.И. САЛОУТИН, В.Б. СОКОЛОВ, А.Ю. АКСИНЕНКО, В.Г. НЕНАЙДЕНКО, М.Ю. МОСКАЛИК, В.В. АСТАХОВА, Б.А. ШАИНЯН, А.А. ТАБОЛИН, С.Л. ИОФФЕ, В.М. МУЗАЛЕВСКИЙ, Е.С. БАЛЕНКОВА, А.В. ШАСТИН, А.А. ТЮТЮНОВ, В.Э. БОЙКО, С.М. ИГУМНОВ, А.Д. ДИЛЬМАН, Н.Ю. АДОНИН, В.В. БАРДИН, С.М. МАСОУД, Д.В. ВОРОБЬЕВА, С.Н. ОСИПОВ, Э.В. НОСОВА, Г.Н. ЛИПУНОВА, В.Н. ЧАРУШИН, Д.О. ПРИМА, А.Г. МАКАРОВ, А.В. ЗИБАРЕВ, Б.А. ТРОФИМОВ, Л.Н. СОБЕНИНА, К.В. БЕЛЯЕВА, В.Я. СОСНОВСКИХ, Д.Л. ОБЫДЕННОВ, С.А. УСАЧЕВ
    Перспективные точки роста и вызовы фторорганической химии
    Успехи химии. 2019. Т. 88. № 5. С. 425-569. DOI:10.1070/RCR4871 (Organofluorine chemistry: promising growth areas and challenges/ Politanskaya L.V., Selivanova G.A., Panteleeva E.V., Tretyakov E.V., Platonov V.E., Nikulshin P.V., Vinogradov A.S., Zonov Ya.V., Karpov V.M., Mezhenkova T.V., Vasilyev A.V., Koldobskii A.B., Shilova O.S., Morozova S.M., Burgart Ya.V., Shchegolkov E.V., Saloutin V.I., Sokolov V.B., Aksinenko A.Yu., Nenajdenko V.G., Moskalik M.Yu., Astakhova V.V., Shainyan B.A., Tabolin A.A., Ioffe S.L., Muzalevskiy V.M., Balenkova E.S., Shastin A.V., Tyutyunov A.A., Boiko V.E., Igumnov S.M., Dilman A.D., Adonin N.Yu., Bardin V.V., Masoud S.M., Vorobyeva D.V., Osipov S.N., Nosova E.V., Lipunova G.N., Charushin V.N., Prima D.O., Makarov A.G., Zibarev A.V., Trofimov B.A., Sobenina L.N., Belyaeva K.V., Sosnovskikh V.Ya., Obydennov D.L., Usachev S.A.// RUSSIAN CHEMICAL REVIEWS, 2019, V. 55, N 5, Pp), IF=4.612
  610. Л.В. ПОЛИТАНСКАЯ, Г.А. СЕЛИВАНОВА, Е.В. ПАНТЕЛЕЕВА, Е.В. ТРЕТЬЯКОВ, В.Е. ПЛАТОНОВ, П.В. НИКУЛЬШИН, А.С. ВИНОГРАДОВ, Я.В. ЗОНОВ, В.М. КАРПОВ, Т.В. МЕЖЕНКОВА, А.В. ВАСИЛЬЕВ, А.Б. КОЛДОБСКИЙ, О.С. ШИЛОВА, С.М. МОРОЗОВА, Я.В. БУРГАРТ, Е.В. ЩЕГОЛЬКОВ, В.И. САЛОУТИН, В.Б. СОКОЛОВ, А.Ю. АКСИНЕНКО, В.Г. НЕНАЙДЕНКО, М.Ю. МОСКАЛИК, В.В. АСТАХОВА, Б.А. ШАИНЯН, А.А. ТАБОЛИН, С.Л. ИОФФЕ, В.М. МУЗАЛЕВСКИЙ, Е.С. БАЛЕНКОВА, А.В. ШАСТИН, А.А. ТЮТЮНОВ, В.Э. БОЙКО, С.М. ИГУМНОВ, А.Д. ДИЛЬМАН, Н.Ю. АДОНИН, В.В. БАРДИН, С.М. МАСОУД, Д.В. ВОРОБЬЕВА, С.Н. ОСИПОВ, Э.В. НОСОВА, Г.Н. ЛИПУНОВА, В.Н. ЧАРУШИН, Д.О. ПРИМА, А.Г. МАКАРОВ, А.В. ЗИБАРЕВ, Б.А. ТРОФИМОВ, Л.Н. СОБЕНИНА, К.В. БЕЛЯЕВА, В.Я. СОСНОВСКИХ, Д.Л. ОБЫДЕННОВ, С.А. УСАЧЕВ
    Перспективные точки роста и вызовы фторорганической химии
    Успехи химии. 2019. Т. 88. № 5. С. 425-569. DOI:10.1070/RCR4871 (Organofluorine chemistry: promising growth areas and challenges/ Politanskaya L.V., Selivanova G.A., Panteleeva E.V., Tretyakov E.V., Platonov V.E., Nikulshin P.V., Vinogradov A.S., Zonov Ya.V., Karpov V.M., Mezhenkova T.V., Vasilyev A.V., Koldobskii A.B., Shilova O.S., Morozova S.M., Burgart Ya.V., Shchegolkov E.V., Saloutin V.I., Sokolov V.B., Aksinenko A.Yu., Nenajdenko V.G., Moskalik M.Yu., Astakhova V.V., Shainyan B.A., Tabolin A.A., Ioffe S.L., Muzalevskiy V.M., Balenkova E.S., Shastin A.V., Tyutyunov A.A., Boiko V.E., Igumnov S.M., Dilman A.D., Adonin N.Yu., Bardin V.V., Masoud S.M., Vorobyeva D.V., Osipov S.N., Nosova E.V., Lipunova G.N., Charushin V.N., Prima D.O., Makarov A.G., Zibarev A.V., Trofimov B.A., Sobenina L.N., Belyaeva K.V., Sosnovskikh V.Ya., Obydennov D.L., Usachev S.A.// RUSSIAN CHEMICAL REVIEWS, 2019, V. 55, N 5, Pp), IF=4.612
  611. Л.В. ПОЛИТАНСКАЯ, Г.А. СЕЛИВАНОВА, Е.В. ПАНТЕЛЕЕВА, Е.В. ТРЕТЬЯКОВ, В.Е. ПЛАТОНОВ, П.В. НИКУЛЬШИН, А.С. ВИНОГРАДОВ, Я.В. ЗОНОВ, В.М. КАРПОВ, Т.В. МЕЖЕНКОВА, А.В. ВАСИЛЬЕВ, А.Б. КОЛДОБСКИЙ, О.С. ШИЛОВА, С.М. МОРОЗОВА, Я.В. БУРГАРТ, Е.В. ЩЕГОЛЬКОВ, В.И. САЛОУТИН, В.Б. СОКОЛОВ, А.Ю. АКСИНЕНКО, В.Г. НЕНАЙДЕНКО, М.Ю. МОСКАЛИК, В.В. АСТАХОВА, Б.А. ШАИНЯН, А.А. ТАБОЛИН, С.Л. ИОФФЕ, В.М. МУЗАЛЕВСКИЙ, Е.С. БАЛЕНКОВА, А.В. ШАСТИН, А.А. ТЮТЮНОВ, В.Э. БОЙКО, С.М. ИГУМНОВ, А.Д. ДИЛЬМАН, Н.Ю. АДОНИН, В.В. БАРДИН, С.М. МАСОУД, Д.В. ВОРОБЬЕВА, С.Н. ОСИПОВ, Э.В. НОСОВА, Г.Н. ЛИПУНОВА, В.Н. ЧАРУШИН, Д.О. ПРИМА, А.Г. МАКАРОВ, А.В. ЗИБАРЕВ, Б.А. ТРОФИМОВ, Л.Н. СОБЕНИНА, К.В. БЕЛЯЕВА, В.Я. СОСНОВСКИХ, Д.Л. ОБЫДЕННОВ, С.А. УСАЧЕВ
    Перспективные точки роста и вызовы фторорганической химии
    Успехи химии. 2019. Т. 88. № 5. С. 425-569. DOI:10.1070/RCR4871 (Organofluorine chemistry: promising growth areas and challenges/ Politanskaya L.V., Selivanova G.A., Panteleeva E.V., Tretyakov E.V., Platonov V.E., Nikulshin P.V., Vinogradov A.S., Zonov Ya.V., Karpov V.M., Mezhenkova T.V., Vasilyev A.V., Koldobskii A.B., Shilova O.S., Morozova S.M., Burgart Ya.V., Shchegolkov E.V., Saloutin V.I., Sokolov V.B., Aksinenko A.Yu., Nenajdenko V.G., Moskalik M.Yu., Astakhova V.V., Shainyan B.A., Tabolin A.A., Ioffe S.L., Muzalevskiy V.M., Balenkova E.S., Shastin A.V., Tyutyunov A.A., Boiko V.E., Igumnov S.M., Dilman A.D., Adonin N.Yu., Bardin V.V., Masoud S.M., Vorobyeva D.V., Osipov S.N., Nosova E.V., Lipunova G.N., Charushin V.N., Prima D.O., Makarov A.G., Zibarev A.V., Trofimov B.A., Sobenina L.N., Belyaeva K.V., Sosnovskikh V.Ya., Obydennov D.L., Usachev S.A.// RUSSIAN CHEMICAL REVIEWS, 2019, V. 55, N 5, Pp), IF=4.612
  612. Л.В. ПОЛИТАНСКАЯ, Г.А. СЕЛИВАНОВА, Е.В. ПАНТЕЛЕЕВА, Е.В. ТРЕТЬЯКОВ, В.Е. ПЛАТОНОВ, П.В. НИКУЛЬШИН, А.С. ВИНОГРАДОВ, Я.В. ЗОНОВ, В.М. КАРПОВ, Т.В. МЕЖЕНКОВА, А.В. ВАСИЛЬЕВ, А.Б. КОЛДОБСКИЙ, О.С. ШИЛОВА, С.М. МОРОЗОВА, Я.В. БУРГАРТ, Е.В. ЩЕГОЛЬКОВ, В.И. САЛОУТИН, В.Б. СОКОЛОВ, А.Ю. АКСИНЕНКО, В.Г. НЕНАЙДЕНКО, М.Ю. МОСКАЛИК, В.В. АСТАХОВА, Б.А. ШАИНЯН, А.А. ТАБОЛИН, С.Л. ИОФФЕ, В.М. МУЗАЛЕВСКИЙ, Е.С. БАЛЕНКОВА, А.В. ШАСТИН, А.А. ТЮТЮНОВ, В.Э. БОЙКО, С.М. ИГУМНОВ, А.Д. ДИЛЬМАН, Н.Ю. АДОНИН, В.В. БАРДИН, С.М. МАСОУД, Д.В. ВОРОБЬЕВА, С.Н. ОСИПОВ, Э.В. НОСОВА, Г.Н. ЛИПУНОВА, В.Н. ЧАРУШИН, Д.О. ПРИМА, А.Г. МАКАРОВ, А.В. ЗИБАРЕВ, Б.А. ТРОФИМОВ, Л.Н. СОБЕНИНА, К.В. БЕЛЯЕВА, В.Я. СОСНОВСКИХ, Д.Л. ОБЫДЕННОВ, С.А. УСАЧЕВ
    Перспективные точки роста и вызовы фторорганической химии
    Успехи химии. 2019. Т. 88. № 5. С. 425-569. DOI:10.1070/RCR4871 (Organofluorine chemistry: promising growth areas and challenges/ Politanskaya L.V., Selivanova G.A., Panteleeva E.V., Tretyakov E.V., Platonov V.E., Nikulshin P.V., Vinogradov A.S., Zonov Ya.V., Karpov V.M., Mezhenkova T.V., Vasilyev A.V., Koldobskii A.B., Shilova O.S., Morozova S.M., Burgart Ya.V., Shchegolkov E.V., Saloutin V.I., Sokolov V.B., Aksinenko A.Yu., Nenajdenko V.G., Moskalik M.Yu., Astakhova V.V., Shainyan B.A., Tabolin A.A., Ioffe S.L., Muzalevskiy V.M., Balenkova E.S., Shastin A.V., Tyutyunov A.A., Boiko V.E., Igumnov S.M., Dilman A.D., Adonin N.Yu., Bardin V.V., Masoud S.M., Vorobyeva D.V., Osipov S.N., Nosova E.V., Lipunova G.N., Charushin V.N., Prima D.O., Makarov A.G., Zibarev A.V., Trofimov B.A., Sobenina L.N., Belyaeva K.V., Sosnovskikh V.Ya., Obydennov D.L., Usachev S.A.// RUSSIAN CHEMICAL REVIEWS, 2019, V. 55, N 5, Pp), IF=4.612
  613. Л.В. ПОЛИТАНСКАЯ, Г.А. СЕЛИВАНОВА, Е.В. ПАНТЕЛЕЕВА, Е.В. ТРЕТЬЯКОВ, В.Е. ПЛАТОНОВ, П.В. НИКУЛЬШИН, А.С. ВИНОГРАДОВ, Я.В. ЗОНОВ, В.М. КАРПОВ, Т.В. МЕЖЕНКОВА, А.В. ВАСИЛЬЕВ, А.Б. КОЛДОБСКИЙ, О.С. ШИЛОВА, С.М. МОРОЗОВА, Я.В. БУРГАРТ, Е.В. ЩЕГОЛЬКОВ, В.И. САЛОУТИН, В.Б. СОКОЛОВ, А.Ю. АКСИНЕНКО, В.Г. НЕНАЙДЕНКО, М.Ю. МОСКАЛИК, В.В. АСТАХОВА, Б.А. ШАИНЯН, А.А. ТАБОЛИН, С.Л. ИОФФЕ, В.М. МУЗАЛЕВСКИЙ, Е.С. БАЛЕНКОВА, А.В. ШАСТИН, А.А. ТЮТЮНОВ, В.Э. БОЙКО, С.М. ИГУМНОВ, А.Д. ДИЛЬМАН, Н.Ю. АДОНИН, В.В. БАРДИН, С.М. МАСОУД, Д.В. ВОРОБЬЕВА, С.Н. ОСИПОВ, Э.В. НОСОВА, Г.Н. ЛИПУНОВА, В.Н. ЧАРУШИН, Д.О. ПРИМА, А.Г. МАКАРОВ, А.В. ЗИБАРЕВ, Б.А. ТРОФИМОВ, Л.Н. СОБЕНИНА, К.В. БЕЛЯЕВА, В.Я. СОСНОВСКИХ, Д.Л. ОБЫДЕННОВ, С.А. УСАЧЕВ
    Перспективные точки роста и вызовы фторорганической химии
    Успехи химии. 2019. Т. 88. № 5. С. 425-569. DOI:10.1070/RCR4871 (Organofluorine chemistry: promising growth areas and challenges/ Politanskaya L.V., Selivanova G.A., Panteleeva E.V., Tretyakov E.V., Platonov V.E., Nikulshin P.V., Vinogradov A.S., Zonov Ya.V., Karpov V.M., Mezhenkova T.V., Vasilyev A.V., Koldobskii A.B., Shilova O.S., Morozova S.M., Burgart Ya.V., Shchegolkov E.V., Saloutin V.I., Sokolov V.B., Aksinenko A.Yu., Nenajdenko V.G., Moskalik M.Yu., Astakhova V.V., Shainyan B.A., Tabolin A.A., Ioffe S.L., Muzalevskiy V.M., Balenkova E.S., Shastin A.V., Tyutyunov A.A., Boiko V.E., Igumnov S.M., Dilman A.D., Adonin N.Yu., Bardin V.V., Masoud S.M., Vorobyeva D.V., Osipov S.N., Nosova E.V., Lipunova G.N., Charushin V.N., Prima D.O., Makarov A.G., Zibarev A.V., Trofimov B.A., Sobenina L.N., Belyaeva K.V., Sosnovskikh V.Ya., Obydennov D.L., Usachev S.A.// RUSSIAN CHEMICAL REVIEWS, 2019, V. 55, N 5, Pp), IF=4.612
  614. Л.В. ПОЛИТАНСКАЯ, Г.А. СЕЛИВАНОВА, Е.В. ПАНТЕЛЕЕВА, Е.В. ТРЕТЬЯКОВ, В.Е. ПЛАТОНОВ, П.В. НИКУЛЬШИН, А.С. ВИНОГРАДОВ, Я.В. ЗОНОВ, В.М. КАРПОВ, Т.В. МЕЖЕНКОВА, А.В. ВАСИЛЬЕВ, А.Б. КОЛДОБСКИЙ, О.С. ШИЛОВА, С.М. МОРОЗОВА, Я.В. БУРГАРТ, Е.В. ЩЕГОЛЬКОВ, В.И. САЛОУТИН, В.Б. СОКОЛОВ, А.Ю. АКСИНЕНКО, В.Г. НЕНАЙДЕНКО, М.Ю. МОСКАЛИК, В.В. АСТАХОВА, Б.А. ШАИНЯН, А.А. ТАБОЛИН, С.Л. ИОФФЕ, В.М. МУЗАЛЕВСКИЙ, Е.С. БАЛЕНКОВА, А.В. ШАСТИН, А.А. ТЮТЮНОВ, В.Э. БОЙКО, С.М. ИГУМНОВ, А.Д. ДИЛЬМАН, Н.Ю. АДОНИН, В.В. БАРДИН, С.М. МАСОУД, Д.В. ВОРОБЬЕВА, С.Н. ОСИПОВ, Э.В. НОСОВА, Г.Н. ЛИПУНОВА, В.Н. ЧАРУШИН, Д.О. ПРИМА, А.Г. МАКАРОВ, А.В. ЗИБАРЕВ, Б.А. ТРОФИМОВ, Л.Н. СОБЕНИНА, К.В. БЕЛЯЕВА, В.Я. СОСНОВСКИХ, Д.Л. ОБЫДЕННОВ, С.А. УСАЧЕВ
    Перспективные точки роста и вызовы фторорганической химии
    Успехи химии. 2019. Т. 88. № 5. С. 425-569. DOI:10.1070/RCR4871 (Organofluorine chemistry: promising growth areas and challenges/ Politanskaya L.V., Selivanova G.A., Panteleeva E.V., Tretyakov E.V., Platonov V.E., Nikulshin P.V., Vinogradov A.S., Zonov Ya.V., Karpov V.M., Mezhenkova T.V., Vasilyev A.V., Koldobskii A.B., Shilova O.S., Morozova S.M., Burgart Ya.V., Shchegolkov E.V., Saloutin V.I., Sokolov V.B., Aksinenko A.Yu., Nenajdenko V.G., Moskalik M.Yu., Astakhova V.V., Shainyan B.A., Tabolin A.A., Ioffe S.L., Muzalevskiy V.M., Balenkova E.S., Shastin A.V., Tyutyunov A.A., Boiko V.E., Igumnov S.M., Dilman A.D., Adonin N.Yu., Bardin V.V., Masoud S.M., Vorobyeva D.V., Osipov S.N., Nosova E.V., Lipunova G.N., Charushin V.N., Prima D.O., Makarov A.G., Zibarev A.V., Trofimov B.A., Sobenina L.N., Belyaeva K.V., Sosnovskikh V.Ya., Obydennov D.L., Usachev S.A.// RUSSIAN CHEMICAL REVIEWS, 2019, V. 55, N 5, Pp), IF=4.612
  615. Л.В. ПОЛИТАНСКАЯ, Г.А. СЕЛИВАНОВА, Е.В. ПАНТЕЛЕЕВА, Е.В. ТРЕТЬЯКОВ, В.Е. ПЛАТОНОВ, П.В. НИКУЛЬШИН, А.С. ВИНОГРАДОВ, Я.В. ЗОНОВ, В.М. КАРПОВ, Т.В. МЕЖЕНКОВА, А.В. ВАСИЛЬЕВ, А.Б. КОЛДОБСКИЙ, О.С. ШИЛОВА, С.М. МОРОЗОВА, Я.В. БУРГАРТ, Е.В. ЩЕГОЛЬКОВ, В.И. САЛОУТИН, В.Б. СОКОЛОВ, А.Ю. АКСИНЕНКО, В.Г. НЕНАЙДЕНКО, М.Ю. МОСКАЛИК, В.В. АСТАХОВА, Б.А. ШАИНЯН, А.А. ТАБОЛИН, С.Л. ИОФФЕ, В.М. МУЗАЛЕВСКИЙ, Е.С. БАЛЕНКОВА, А.В. ШАСТИН, А.А. ТЮТЮНОВ, В.Э. БОЙКО, С.М. ИГУМНОВ, А.Д. ДИЛЬМАН, Н.Ю. АДОНИН, В.В. БАРДИН, С.М. МАСОУД, Д.В. ВОРОБЬЕВА, С.Н. ОСИПОВ, Э.В. НОСОВА, Г.Н. ЛИПУНОВА, В.Н. ЧАРУШИН, Д.О. ПРИМА, А.Г. МАКАРОВ, А.В. ЗИБАРЕВ, Б.А. ТРОФИМОВ, Л.Н. СОБЕНИНА, К.В. БЕЛЯЕВА, В.Я. СОСНОВСКИХ, Д.Л. ОБЫДЕННОВ, С.А. УСАЧЕВ
    Перспективные точки роста и вызовы фторорганической химии
    Успехи химии. 2019. Т. 88. № 5. С. 425-569. DOI:10.1070/RCR4871 (Organofluorine chemistry: promising growth areas and challenges/ Politanskaya L.V., Selivanova G.A., Panteleeva E.V., Tretyakov E.V., Platonov V.E., Nikulshin P.V., Vinogradov A.S., Zonov Ya.V., Karpov V.M., Mezhenkova T.V., Vasilyev A.V., Koldobskii A.B., Shilova O.S., Morozova S.M., Burgart Ya.V., Shchegolkov E.V., Saloutin V.I., Sokolov V.B., Aksinenko A.Yu., Nenajdenko V.G., Moskalik M.Yu., Astakhova V.V., Shainyan B.A., Tabolin A.A., Ioffe S.L., Muzalevskiy V.M., Balenkova E.S., Shastin A.V., Tyutyunov A.A., Boiko V.E., Igumnov S.M., Dilman A.D., Adonin N.Yu., Bardin V.V., Masoud S.M., Vorobyeva D.V., Osipov S.N., Nosova E.V., Lipunova G.N., Charushin V.N., Prima D.O., Makarov A.G., Zibarev A.V., Trofimov B.A., Sobenina L.N., Belyaeva K.V., Sosnovskikh V.Ya., Obydennov D.L., Usachev S.A.// RUSSIAN CHEMICAL REVIEWS, 2019, V. 55, N 5, Pp), IF=4.612
  616. Л.В. ПОЛИТАНСКАЯ, Г.А. СЕЛИВАНОВА, Е.В. ПАНТЕЛЕЕВА, Е.В. ТРЕТЬЯКОВ, В.Е. ПЛАТОНОВ, П.В. НИКУЛЬШИН, А.С. ВИНОГРАДОВ, Я.В. ЗОНОВ, В.М. КАРПОВ, Т.В. МЕЖЕНКОВА, А.В. ВАСИЛЬЕВ, А.Б. КОЛДОБСКИЙ, О.С. ШИЛОВА, С.М. МОРОЗОВА, Я.В. БУРГАРТ, Е.В. ЩЕГОЛЬКОВ, В.И. САЛОУТИН, В.Б. СОКОЛОВ, А.Ю. АКСИНЕНКО, В.Г. НЕНАЙДЕНКО, М.Ю. МОСКАЛИК, В.В. АСТАХОВА, Б.А. ШАИНЯН, А.А. ТАБОЛИН, С.Л. ИОФФЕ, В.М. МУЗАЛЕВСКИЙ, Е.С. БАЛЕНКОВА, А.В. ШАСТИН, А.А. ТЮТЮНОВ, В.Э. БОЙКО, С.М. ИГУМНОВ, А.Д. ДИЛЬМАН, Н.Ю. АДОНИН, В.В. БАРДИН, С.М. МАСОУД, Д.В. ВОРОБЬЕВА, С.Н. ОСИПОВ, Э.В. НОСОВА, Г.Н. ЛИПУНОВА, В.Н. ЧАРУШИН, Д.О. ПРИМА, А.Г. МАКАРОВ, А.В. ЗИБАРЕВ, Б.А. ТРОФИМОВ, Л.Н. СОБЕНИНА, К.В. БЕЛЯЕВА, В.Я. СОСНОВСКИХ, Д.Л. ОБЫДЕННОВ, С.А. УСАЧЕВ
    Перспективные точки роста и вызовы фторорганической химии
    Успехи химии. 2019. Т. 88. № 5. С. 425-569. DOI:10.1070/RCR4871 (Organofluorine chemistry: promising growth areas and challenges/ Politanskaya L.V., Selivanova G.A., Panteleeva E.V., Tretyakov E.V., Platonov V.E., Nikulshin P.V., Vinogradov A.S., Zonov Ya.V., Karpov V.M., Mezhenkova T.V., Vasilyev A.V., Koldobskii A.B., Shilova O.S., Morozova S.M., Burgart Ya.V., Shchegolkov E.V., Saloutin V.I., Sokolov V.B., Aksinenko A.Yu., Nenajdenko V.G., Moskalik M.Yu., Astakhova V.V., Shainyan B.A., Tabolin A.A., Ioffe S.L., Muzalevskiy V.M., Balenkova E.S., Shastin A.V., Tyutyunov A.A., Boiko V.E., Igumnov S.M., Dilman A.D., Adonin N.Yu., Bardin V.V., Masoud S.M., Vorobyeva D.V., Osipov S.N., Nosova E.V., Lipunova G.N., Charushin V.N., Prima D.O., Makarov A.G., Zibarev A.V., Trofimov B.A., Sobenina L.N., Belyaeva K.V., Sosnovskikh V.Ya., Obydennov D.L., Usachev S.A.// RUSSIAN CHEMICAL REVIEWS, 2019, V. 55, N 5, Pp), IF=4.612
  617. Л.В. ПОЛИТАНСКАЯ, Г.А. СЕЛИВАНОВА, Е.В. ПАНТЕЛЕЕВА, Е.В. ТРЕТЬЯКОВ, В.Е. ПЛАТОНОВ, П.В. НИКУЛЬШИН, А.С. ВИНОГРАДОВ, Я.В. ЗОНОВ, В.М. КАРПОВ, Т.В. МЕЖЕНКОВА, А.В. ВАСИЛЬЕВ, А.Б. КОЛДОБСКИЙ, О.С. ШИЛОВА, С.М. МОРОЗОВА, Я.В. БУРГАРТ, Е.В. ЩЕГОЛЬКОВ, В.И. САЛОУТИН, В.Б. СОКОЛОВ, А.Ю. АКСИНЕНКО, В.Г. НЕНАЙДЕНКО, М.Ю. МОСКАЛИК, В.В. АСТАХОВА, Б.А. ШАИНЯН, А.А. ТАБОЛИН, С.Л. ИОФФЕ, В.М. МУЗАЛЕВСКИЙ, Е.С. БАЛЕНКОВА, А.В. ШАСТИН, А.А. ТЮТЮНОВ, В.Э. БОЙКО, С.М. ИГУМНОВ, А.Д. ДИЛЬМАН, Н.Ю. АДОНИН, В.В. БАРДИН, С.М. МАСОУД, Д.В. ВОРОБЬЕВА, С.Н. ОСИПОВ, Э.В. НОСОВА, Г.Н. ЛИПУНОВА, В.Н. ЧАРУШИН, Д.О. ПРИМА, А.Г. МАКАРОВ, А.В. ЗИБАРЕВ, Б.А. ТРОФИМОВ, Л.Н. СОБЕНИНА, К.В. БЕЛЯЕВА, В.Я. СОСНОВСКИХ, Д.Л. ОБЫДЕННОВ, С.А. УСАЧЕВ
    Перспективные точки роста и вызовы фторорганической химии
    Успехи химии. 2019. Т. 88. № 5. С. 425-569. DOI:10.1070/RCR4871 (Organofluorine chemistry: promising growth areas and challenges/ Politanskaya L.V., Selivanova G.A., Panteleeva E.V., Tretyakov E.V., Platonov V.E., Nikulshin P.V., Vinogradov A.S., Zonov Ya.V., Karpov V.M., Mezhenkova T.V., Vasilyev A.V., Koldobskii A.B., Shilova O.S., Morozova S.M., Burgart Ya.V., Shchegolkov E.V., Saloutin V.I., Sokolov V.B., Aksinenko A.Yu., Nenajdenko V.G., Moskalik M.Yu., Astakhova V.V., Shainyan B.A., Tabolin A.A., Ioffe S.L., Muzalevskiy V.M., Balenkova E.S., Shastin A.V., Tyutyunov A.A., Boiko V.E., Igumnov S.M., Dilman A.D., Adonin N.Yu., Bardin V.V., Masoud S.M., Vorobyeva D.V., Osipov S.N., Nosova E.V., Lipunova G.N., Charushin V.N., Prima D.O., Makarov A.G., Zibarev A.V., Trofimov B.A., Sobenina L.N., Belyaeva K.V., Sosnovskikh V.Ya., Obydennov D.L., Usachev S.A.// RUSSIAN CHEMICAL REVIEWS, 2019, V. 55, N 5, Pp), IF=4.612
  618. Л.В. ПОЛИТАНСКАЯ, Г.А. СЕЛИВАНОВА, Е.В. ПАНТЕЛЕЕВА, Е.В. ТРЕТЬЯКОВ, В.Е. ПЛАТОНОВ, П.В. НИКУЛЬШИН, А.С. ВИНОГРАДОВ, Я.В. ЗОНОВ, В.М. КАРПОВ, Т.В. МЕЖЕНКОВА, А.В. ВАСИЛЬЕВ, А.Б. КОЛДОБСКИЙ, О.С. ШИЛОВА, С.М. МОРОЗОВА, Я.В. БУРГАРТ, Е.В. ЩЕГОЛЬКОВ, В.И. САЛОУТИН, В.Б. СОКОЛОВ, А.Ю. АКСИНЕНКО, В.Г. НЕНАЙДЕНКО, М.Ю. МОСКАЛИК, В.В. АСТАХОВА, Б.А. ШАИНЯН, А.А. ТАБОЛИН, С.Л. ИОФФЕ, В.М. МУЗАЛЕВСКИЙ, Е.С. БАЛЕНКОВА, А.В. ШАСТИН, А.А. ТЮТЮНОВ, В.Э. БОЙКО, С.М. ИГУМНОВ, А.Д. ДИЛЬМАН, Н.Ю. АДОНИН, В.В. БАРДИН, С.М. МАСОУД, Д.В. ВОРОБЬЕВА, С.Н. ОСИПОВ, Э.В. НОСОВА, Г.Н. ЛИПУНОВА, В.Н. ЧАРУШИН, Д.О. ПРИМА, А.Г. МАКАРОВ, А.В. ЗИБАРЕВ, Б.А. ТРОФИМОВ, Л.Н. СОБЕНИНА, К.В. БЕЛЯЕВА, В.Я. СОСНОВСКИХ, Д.Л. ОБЫДЕННОВ, С.А. УСАЧЕВ
    Перспективные точки роста и вызовы фторорганической химии
    Успехи химии. 2019. Т. 88. № 5. С. 425-569. DOI:10.1070/RCR4871 (Organofluorine chemistry: promising growth areas and challenges/ Politanskaya L.V., Selivanova G.A., Panteleeva E.V., Tretyakov E.V., Platonov V.E., Nikulshin P.V., Vinogradov A.S., Zonov Ya.V., Karpov V.M., Mezhenkova T.V., Vasilyev A.V., Koldobskii A.B., Shilova O.S., Morozova S.M., Burgart Ya.V., Shchegolkov E.V., Saloutin V.I., Sokolov V.B., Aksinenko A.Yu., Nenajdenko V.G., Moskalik M.Yu., Astakhova V.V., Shainyan B.A., Tabolin A.A., Ioffe S.L., Muzalevskiy V.M., Balenkova E.S., Shastin A.V., Tyutyunov A.A., Boiko V.E., Igumnov S.M., Dilman A.D., Adonin N.Yu., Bardin V.V., Masoud S.M., Vorobyeva D.V., Osipov S.N., Nosova E.V., Lipunova G.N., Charushin V.N., Prima D.O., Makarov A.G., Zibarev A.V., Trofimov B.A., Sobenina L.N., Belyaeva K.V., Sosnovskikh V.Ya., Obydennov D.L., Usachev S.A.// RUSSIAN CHEMICAL REVIEWS, 2019, V. 55, N 5, Pp), IF=4.612
  619. Л.В. ПОЛИТАНСКАЯ, Г.А. СЕЛИВАНОВА, Е.В. ПАНТЕЛЕЕВА, Е.В. ТРЕТЬЯКОВ, В.Е. ПЛАТОНОВ, П.В. НИКУЛЬШИН, А.С. ВИНОГРАДОВ, Я.В. ЗОНОВ, В.М. КАРПОВ, Т.В. МЕЖЕНКОВА, А.В. ВАСИЛЬЕВ, А.Б. КОЛДОБСКИЙ, О.С. ШИЛОВА, С.М. МОРОЗОВА, Я.В. БУРГАРТ, Е.В. ЩЕГОЛЬКОВ, В.И. САЛОУТИН, В.Б. СОКОЛОВ, А.Ю. АКСИНЕНКО, В.Г. НЕНАЙДЕНКО, М.Ю. МОСКАЛИК, В.В. АСТАХОВА, Б.А. ШАИНЯН, А.А. ТАБОЛИН, С.Л. ИОФФЕ, В.М. МУЗАЛЕВСКИЙ, Е.С. БАЛЕНКОВА, А.В. ШАСТИН, А.А. ТЮТЮНОВ, В.Э. БОЙКО, С.М. ИГУМНОВ, А.Д. ДИЛЬМАН, Н.Ю. АДОНИН, В.В. БАРДИН, С.М. МАСОУД, Д.В. ВОРОБЬЕВА, С.Н. ОСИПОВ, Э.В. НОСОВА, Г.Н. ЛИПУНОВА, В.Н. ЧАРУШИН, Д.О. ПРИМА, А.Г. МАКАРОВ, А.В. ЗИБАРЕВ, Б.А. ТРОФИМОВ, Л.Н. СОБЕНИНА, К.В. БЕЛЯЕВА, В.Я. СОСНОВСКИХ, Д.Л. ОБЫДЕННОВ, С.А. УСАЧЕВ
    Перспективные точки роста и вызовы фторорганической химии
    Успехи химии. 2019. Т. 88. № 5. С. 425-569. DOI:10.1070/RCR4871 (Organofluorine chemistry: promising growth areas and challenges/ Politanskaya L.V., Selivanova G.A., Panteleeva E.V., Tretyakov E.V., Platonov V.E., Nikulshin P.V., Vinogradov A.S., Zonov Ya.V., Karpov V.M., Mezhenkova T.V., Vasilyev A.V., Koldobskii A.B., Shilova O.S., Morozova S.M., Burgart Ya.V., Shchegolkov E.V., Saloutin V.I., Sokolov V.B., Aksinenko A.Yu., Nenajdenko V.G., Moskalik M.Yu., Astakhova V.V., Shainyan B.A., Tabolin A.A., Ioffe S.L., Muzalevskiy V.M., Balenkova E.S., Shastin A.V., Tyutyunov A.A., Boiko V.E., Igumnov S.M., Dilman A.D., Adonin N.Yu., Bardin V.V., Masoud S.M., Vorobyeva D.V., Osipov S.N., Nosova E.V., Lipunova G.N., Charushin V.N., Prima D.O., Makarov A.G., Zibarev A.V., Trofimov B.A., Sobenina L.N., Belyaeva K.V., Sosnovskikh V.Ya., Obydennov D.L., Usachev S.A.// RUSSIAN CHEMICAL REVIEWS, 2019, V. 55, N 5, Pp), IF=4.612
  620. Л.В. ПОЛИТАНСКАЯ, Г.А. СЕЛИВАНОВА, Е.В. ПАНТЕЛЕЕВА, Е.В. ТРЕТЬЯКОВ, В.Е. ПЛАТОНОВ, П.В. НИКУЛЬШИН, А.С. ВИНОГРАДОВ, Я.В. ЗОНОВ, В.М. КАРПОВ, Т.В. МЕЖЕНКОВА, А.В. ВАСИЛЬЕВ, А.Б. КОЛДОБСКИЙ, О.С. ШИЛОВА, С.М. МОРОЗОВА, Я.В. БУРГАРТ, Е.В. ЩЕГОЛЬКОВ, В.И. САЛОУТИН, В.Б. СОКОЛОВ, А.Ю. АКСИНЕНКО, В.Г. НЕНАЙДЕНКО, М.Ю. МОСКАЛИК, В.В. АСТАХОВА, Б.А. ШАИНЯН, А.А. ТАБОЛИН, С.Л. ИОФФЕ, В.М. МУЗАЛЕВСКИЙ, Е.С. БАЛЕНКОВА, А.В. ШАСТИН, А.А. ТЮТЮНОВ, В.Э. БОЙКО, С.М. ИГУМНОВ, А.Д. ДИЛЬМАН, Н.Ю. АДОНИН, В.В. БАРДИН, С.М. МАСОУД, Д.В. ВОРОБЬЕВА, С.Н. ОСИПОВ, Э.В. НОСОВА, Г.Н. ЛИПУНОВА, В.Н. ЧАРУШИН, Д.О. ПРИМА, А.Г. МАКАРОВ, А.В. ЗИБАРЕВ, Б.А. ТРОФИМОВ, Л.Н. СОБЕНИНА, К.В. БЕЛЯЕВА, В.Я. СОСНОВСКИХ, Д.Л. ОБЫДЕННОВ, С.А. УСАЧЕВ
    Перспективные точки роста и вызовы фторорганической химии
    Успехи химии. 2019. Т. 88. № 5. С. 425-569. DOI:10.1070/RCR4871 (Organofluorine chemistry: promising growth areas and challenges/ Politanskaya L.V., Selivanova G.A., Panteleeva E.V., Tretyakov E.V., Platonov V.E., Nikulshin P.V., Vinogradov A.S., Zonov Ya.V., Karpov V.M., Mezhenkova T.V., Vasilyev A.V., Koldobskii A.B., Shilova O.S., Morozova S.M., Burgart Ya.V., Shchegolkov E.V., Saloutin V.I., Sokolov V.B., Aksinenko A.Yu., Nenajdenko V.G., Moskalik M.Yu., Astakhova V.V., Shainyan B.A., Tabolin A.A., Ioffe S.L., Muzalevskiy V.M., Balenkova E.S., Shastin A.V., Tyutyunov A.A., Boiko V.E., Igumnov S.M., Dilman A.D., Adonin N.Yu., Bardin V.V., Masoud S.M., Vorobyeva D.V., Osipov S.N., Nosova E.V., Lipunova G.N., Charushin V.N., Prima D.O., Makarov A.G., Zibarev A.V., Trofimov B.A., Sobenina L.N., Belyaeva K.V., Sosnovskikh V.Ya., Obydennov D.L., Usachev S.A.// RUSSIAN CHEMICAL REVIEWS, 2019, V. 55, N 5, Pp), IF=4.612
  621. Л.В. ПОЛИТАНСКАЯ, Г.А. СЕЛИВАНОВА, Е.В. ПАНТЕЛЕЕВА, Е.В. ТРЕТЬЯКОВ, В.Е. ПЛАТОНОВ, П.В. НИКУЛЬШИН, А.С. ВИНОГРАДОВ, Я.В. ЗОНОВ, В.М. КАРПОВ, Т.В. МЕЖЕНКОВА, А.В. ВАСИЛЬЕВ, А.Б. КОЛДОБСКИЙ, О.С. ШИЛОВА, С.М. МОРОЗОВА, Я.В. БУРГАРТ, Е.В. ЩЕГОЛЬКОВ, В.И. САЛОУТИН, В.Б. СОКОЛОВ, А.Ю. АКСИНЕНКО, В.Г. НЕНАЙДЕНКО, М.Ю. МОСКАЛИК, В.В. АСТАХОВА, Б.А. ШАИНЯН, А.А. ТАБОЛИН, С.Л. ИОФФЕ, В.М. МУЗАЛЕВСКИЙ, Е.С. БАЛЕНКОВА, А.В. ШАСТИН, А.А. ТЮТЮНОВ, В.Э. БОЙКО, С.М. ИГУМНОВ, А.Д. ДИЛЬМАН, Н.Ю. АДОНИН, В.В. БАРДИН, С.М. МАСОУД, Д.В. ВОРОБЬЕВА, С.Н. ОСИПОВ, Э.В. НОСОВА, Г.Н. ЛИПУНОВА, В.Н. ЧАРУШИН, Д.О. ПРИМА, А.Г. МАКАРОВ, А.В. ЗИБАРЕВ, Б.А. ТРОФИМОВ, Л.Н. СОБЕНИНА, К.В. БЕЛЯЕВА, В.Я. СОСНОВСКИХ, Д.Л. ОБЫДЕННОВ, С.А. УСАЧЕВ
    Перспективные точки роста и вызовы фторорганической химии
    Успехи химии. 2019. Т. 88. № 5. С. 425-569. DOI:10.1070/RCR4871 (Organofluorine chemistry: promising growth areas and challenges/ Politanskaya L.V., Selivanova G.A., Panteleeva E.V., Tretyakov E.V., Platonov V.E., Nikulshin P.V., Vinogradov A.S., Zonov Ya.V., Karpov V.M., Mezhenkova T.V., Vasilyev A.V., Koldobskii A.B., Shilova O.S., Morozova S.M., Burgart Ya.V., Shchegolkov E.V., Saloutin V.I., Sokolov V.B., Aksinenko A.Yu., Nenajdenko V.G., Moskalik M.Yu., Astakhova V.V., Shainyan B.A., Tabolin A.A., Ioffe S.L., Muzalevskiy V.M., Balenkova E.S., Shastin A.V., Tyutyunov A.A., Boiko V.E., Igumnov S.M., Dilman A.D., Adonin N.Yu., Bardin V.V., Masoud S.M., Vorobyeva D.V., Osipov S.N., Nosova E.V., Lipunova G.N., Charushin V.N., Prima D.O., Makarov A.G., Zibarev A.V., Trofimov B.A., Sobenina L.N., Belyaeva K.V., Sosnovskikh V.Ya., Obydennov D.L., Usachev S.A.// RUSSIAN CHEMICAL REVIEWS, 2019, V. 55, N 5, Pp), IF=4.612
  622. Л.В. ПОЛИТАНСКАЯ, Г.А. СЕЛИВАНОВА, Е.В. ПАНТЕЛЕЕВА, Е.В. ТРЕТЬЯКОВ, В.Е. ПЛАТОНОВ, П.В. НИКУЛЬШИН, А.С. ВИНОГРАДОВ, Я.В. ЗОНОВ, В.М. КАРПОВ, Т.В. МЕЖЕНКОВА, А.В. ВАСИЛЬЕВ, А.Б. КОЛДОБСКИЙ, О.С. ШИЛОВА, С.М. МОРОЗОВА, Я.В. БУРГАРТ, Е.В. ЩЕГОЛЬКОВ, В.И. САЛОУТИН, В.Б. СОКОЛОВ, А.Ю. АКСИНЕНКО, В.Г. НЕНАЙДЕНКО, М.Ю. МОСКАЛИК, В.В. АСТАХОВА, Б.А. ШАИНЯН, А.А. ТАБОЛИН, С.Л. ИОФФЕ, В.М. МУЗАЛЕВСКИЙ, Е.С. БАЛЕНКОВА, А.В. ШАСТИН, А.А. ТЮТЮНОВ, В.Э. БОЙКО, С.М. ИГУМНОВ, А.Д. ДИЛЬМАН, Н.Ю. АДОНИН, В.В. БАРДИН, С.М. МАСОУД, Д.В. ВОРОБЬЕВА, С.Н. ОСИПОВ, Э.В. НОСОВА, Г.Н. ЛИПУНОВА, В.Н. ЧАРУШИН, Д.О. ПРИМА, А.Г. МАКАРОВ, А.В. ЗИБАРЕВ, Б.А. ТРОФИМОВ, Л.Н. СОБЕНИНА, К.В. БЕЛЯЕВА, В.Я. СОСНОВСКИХ, Д.Л. ОБЫДЕННОВ, С.А. УСАЧЕВ
    Перспективные точки роста и вызовы фторорганической химии
    Успехи химии. 2019. Т. 88. № 5. С. 425-569. DOI:10.1070/RCR4871 (Organofluorine chemistry: promising growth areas and challenges/ Politanskaya L.V., Selivanova G.A., Panteleeva E.V., Tretyakov E.V., Platonov V.E., Nikulshin P.V., Vinogradov A.S., Zonov Ya.V., Karpov V.M., Mezhenkova T.V., Vasilyev A.V., Koldobskii A.B., Shilova O.S., Morozova S.M., Burgart Ya.V., Shchegolkov E.V., Saloutin V.I., Sokolov V.B., Aksinenko A.Yu., Nenajdenko V.G., Moskalik M.Yu., Astakhova V.V., Shainyan B.A., Tabolin A.A., Ioffe S.L., Muzalevskiy V.M., Balenkova E.S., Shastin A.V., Tyutyunov A.A., Boiko V.E., Igumnov S.M., Dilman A.D., Adonin N.Yu., Bardin V.V., Masoud S.M., Vorobyeva D.V., Osipov S.N., Nosova E.V., Lipunova G.N., Charushin V.N., Prima D.O., Makarov A.G., Zibarev A.V., Trofimov B.A., Sobenina L.N., Belyaeva K.V., Sosnovskikh V.Ya., Obydennov D.L., Usachev S.A.// RUSSIAN CHEMICAL REVIEWS, 2019, V. 55, N 5, Pp), IF=4.612
  623. Л.В. ПОЛИТАНСКАЯ, Г.А. СЕЛИВАНОВА, Е.В. ПАНТЕЛЕЕВА, Е.В. ТРЕТЬЯКОВ, В.Е. ПЛАТОНОВ, П.В. НИКУЛЬШИН, А.С. ВИНОГРАДОВ, Я.В. ЗОНОВ, В.М. КАРПОВ, Т.В. МЕЖЕНКОВА, А.В. ВАСИЛЬЕВ, А.Б. КОЛДОБСКИЙ, О.С. ШИЛОВА, С.М. МОРОЗОВА, Я.В. БУРГАРТ, Е.В. ЩЕГОЛЬКОВ, В.И. САЛОУТИН, В.Б. СОКОЛОВ, А.Ю. АКСИНЕНКО, В.Г. НЕНАЙДЕНКО, М.Ю. МОСКАЛИК, В.В. АСТАХОВА, Б.А. ШАИНЯН, А.А. ТАБОЛИН, С.Л. ИОФФЕ, В.М. МУЗАЛЕВСКИЙ, Е.С. БАЛЕНКОВА, А.В. ШАСТИН, А.А. ТЮТЮНОВ, В.Э. БОЙКО, С.М. ИГУМНОВ, А.Д. ДИЛЬМАН, Н.Ю. АДОНИН, В.В. БАРДИН, С.М. МАСОУД, Д.В. ВОРОБЬЕВА, С.Н. ОСИПОВ, Э.В. НОСОВА, Г.Н. ЛИПУНОВА, В.Н. ЧАРУШИН, Д.О. ПРИМА, А.Г. МАКАРОВ, А.В. ЗИБАРЕВ, Б.А. ТРОФИМОВ, Л.Н. СОБЕНИНА, К.В. БЕЛЯЕВА, В.Я. СОСНОВСКИХ, Д.Л. ОБЫДЕННОВ, С.А. УСАЧЕВ
    Перспективные точки роста и вызовы фторорганической химии
    Успехи химии. 2019. Т. 88. № 5. С. 425-569. DOI:10.1070/RCR4871 (Organofluorine chemistry: promising growth areas and challenges/ Politanskaya L.V., Selivanova G.A., Panteleeva E.V., Tretyakov E.V., Platonov V.E., Nikulshin P.V., Vinogradov A.S., Zonov Ya.V., Karpov V.M., Mezhenkova T.V., Vasilyev A.V., Koldobskii A.B., Shilova O.S., Morozova S.M., Burgart Ya.V., Shchegolkov E.V., Saloutin V.I., Sokolov V.B., Aksinenko A.Yu., Nenajdenko V.G., Moskalik M.Yu., Astakhova V.V., Shainyan B.A., Tabolin A.A., Ioffe S.L., Muzalevskiy V.M., Balenkova E.S., Shastin A.V., Tyutyunov A.A., Boiko V.E., Igumnov S.M., Dilman A.D., Adonin N.Yu., Bardin V.V., Masoud S.M., Vorobyeva D.V., Osipov S.N., Nosova E.V., Lipunova G.N., Charushin V.N., Prima D.O., Makarov A.G., Zibarev A.V., Trofimov B.A., Sobenina L.N., Belyaeva K.V., Sosnovskikh V.Ya., Obydennov D.L., Usachev S.A.// RUSSIAN CHEMICAL REVIEWS, 2019, V. 55, N 5, Pp), IF=4.612
  624. Л.В. ПОЛИТАНСКАЯ, Г.А. СЕЛИВАНОВА, Е.В. ПАНТЕЛЕЕВА, Е.В. ТРЕТЬЯКОВ, В.Е. ПЛАТОНОВ, П.В. НИКУЛЬШИН, А.С. ВИНОГРАДОВ, Я.В. ЗОНОВ, В.М. КАРПОВ, Т.В. МЕЖЕНКОВА, А.В. ВАСИЛЬЕВ, А.Б. КОЛДОБСКИЙ, О.С. ШИЛОВА, С.М. МОРОЗОВА, Я.В. БУРГАРТ, Е.В. ЩЕГОЛЬКОВ, В.И. САЛОУТИН, В.Б. СОКОЛОВ, А.Ю. АКСИНЕНКО, В.Г. НЕНАЙДЕНКО, М.Ю. МОСКАЛИК, В.В. АСТАХОВА, Б.А. ШАИНЯН, А.А. ТАБОЛИН, С.Л. ИОФФЕ, В.М. МУЗАЛЕВСКИЙ, Е.С. БАЛЕНКОВА, А.В. ШАСТИН, А.А. ТЮТЮНОВ, В.Э. БОЙКО, С.М. ИГУМНОВ, А.Д. ДИЛЬМАН, Н.Ю. АДОНИН, В.В. БАРДИН, С.М. МАСОУД, Д.В. ВОРОБЬЕВА, С.Н. ОСИПОВ, Э.В. НОСОВА, Г.Н. ЛИПУНОВА, В.Н. ЧАРУШИН, Д.О. ПРИМА, А.Г. МАКАРОВ, А.В. ЗИБАРЕВ, Б.А. ТРОФИМОВ, Л.Н. СОБЕНИНА, К.В. БЕЛЯЕВА, В.Я. СОСНОВСКИХ, Д.Л. ОБЫДЕННОВ, С.А. УСАЧЕВ
    Перспективные точки роста и вызовы фторорганической химии
    Успехи химии. 2019. Т. 88. № 5. С. 425-569. DOI:10.1070/RCR4871 (Organofluorine chemistry: promising growth areas and challenges/ Politanskaya L.V., Selivanova G.A., Panteleeva E.V., Tretyakov E.V., Platonov V.E., Nikulshin P.V., Vinogradov A.S., Zonov Ya.V., Karpov V.M., Mezhenkova T.V., Vasilyev A.V., Koldobskii A.B., Shilova O.S., Morozova S.M., Burgart Ya.V., Shchegolkov E.V., Saloutin V.I., Sokolov V.B., Aksinenko A.Yu., Nenajdenko V.G., Moskalik M.Yu., Astakhova V.V., Shainyan B.A., Tabolin A.A., Ioffe S.L., Muzalevskiy V.M., Balenkova E.S., Shastin A.V., Tyutyunov A.A., Boiko V.E., Igumnov S.M., Dilman A.D., Adonin N.Yu., Bardin V.V., Masoud S.M., Vorobyeva D.V., Osipov S.N., Nosova E.V., Lipunova G.N., Charushin V.N., Prima D.O., Makarov A.G., Zibarev A.V., Trofimov B.A., Sobenina L.N., Belyaeva K.V., Sosnovskikh V.Ya., Obydennov D.L., Usachev S.A.// RUSSIAN CHEMICAL REVIEWS, 2019, V. 55, N 5, Pp), IF=4.612
  625. Л.В. ПОЛИТАНСКАЯ, Г.А. СЕЛИВАНОВА, Е.В. ПАНТЕЛЕЕВА, Е.В. ТРЕТЬЯКОВ, В.Е. ПЛАТОНОВ, П.В. НИКУЛЬШИН, А.С. ВИНОГРАДОВ, Я.В. ЗОНОВ, В.М. КАРПОВ, Т.В. МЕЖЕНКОВА, А.В. ВАСИЛЬЕВ, А.Б. КОЛДОБСКИЙ, О.С. ШИЛОВА, С.М. МОРОЗОВА, Я.В. БУРГАРТ, Е.В. ЩЕГОЛЬКОВ, В.И. САЛОУТИН, В.Б. СОКОЛОВ, А.Ю. АКСИНЕНКО, В.Г. НЕНАЙДЕНКО, М.Ю. МОСКАЛИК, В.В. АСТАХОВА, Б.А. ШАИНЯН, А.А. ТАБОЛИН, С.Л. ИОФФЕ, В.М. МУЗАЛЕВСКИЙ, Е.С. БАЛЕНКОВА, А.В. ШАСТИН, А.А. ТЮТЮНОВ, В.Э. БОЙКО, С.М. ИГУМНОВ, А.Д. ДИЛЬМАН, Н.Ю. АДОНИН, В.В. БАРДИН, С.М. МАСОУД, Д.В. ВОРОБЬЕВА, С.Н. ОСИПОВ, Э.В. НОСОВА, Г.Н. ЛИПУНОВА, В.Н. ЧАРУШИН, Д.О. ПРИМА, А.Г. МАКАРОВ, А.В. ЗИБАРЕВ, Б.А. ТРОФИМОВ, Л.Н. СОБЕНИНА, К.В. БЕЛЯЕВА, В.Я. СОСНОВСКИХ, Д.Л. ОБЫДЕННОВ, С.А. УСАЧЕВ
    Перспективные точки роста и вызовы фторорганической химии
    Успехи химии. 2019. Т. 88. № 5. С. 425-569. DOI:10.1070/RCR4871 (Organofluorine chemistry: promising growth areas and challenges/ Politanskaya L.V., Selivanova G.A., Panteleeva E.V., Tretyakov E.V., Platonov V.E., Nikulshin P.V., Vinogradov A.S., Zonov Ya.V., Karpov V.M., Mezhenkova T.V., Vasilyev A.V., Koldobskii A.B., Shilova O.S., Morozova S.M., Burgart Ya.V., Shchegolkov E.V., Saloutin V.I., Sokolov V.B., Aksinenko A.Yu., Nenajdenko V.G., Moskalik M.Yu., Astakhova V.V., Shainyan B.A., Tabolin A.A., Ioffe S.L., Muzalevskiy V.M., Balenkova E.S., Shastin A.V., Tyutyunov A.A., Boiko V.E., Igumnov S.M., Dilman A.D., Adonin N.Yu., Bardin V.V., Masoud S.M., Vorobyeva D.V., Osipov S.N., Nosova E.V., Lipunova G.N., Charushin V.N., Prima D.O., Makarov A.G., Zibarev A.V., Trofimov B.A., Sobenina L.N., Belyaeva K.V., Sosnovskikh V.Ya., Obydennov D.L., Usachev S.A.// RUSSIAN CHEMICAL REVIEWS, 2019, V. 55, N 5, Pp), IF=4.612
  626. Л.В. ПОЛИТАНСКАЯ, Г.А. СЕЛИВАНОВА, Е.В. ПАНТЕЛЕЕВА, Е.В. ТРЕТЬЯКОВ, В.Е. ПЛАТОНОВ, П.В. НИКУЛЬШИН, А.С. ВИНОГРАДОВ, Я.В. ЗОНОВ, В.М. КАРПОВ, Т.В. МЕЖЕНКОВА, А.В. ВАСИЛЬЕВ, А.Б. КОЛДОБСКИЙ, О.С. ШИЛОВА, С.М. МОРОЗОВА, Я.В. БУРГАРТ, Е.В. ЩЕГОЛЬКОВ, В.И. САЛОУТИН, В.Б. СОКОЛОВ, А.Ю. АКСИНЕНКО, В.Г. НЕНАЙДЕНКО, М.Ю. МОСКАЛИК, В.В. АСТАХОВА, Б.А. ШАИНЯН, А.А. ТАБОЛИН, С.Л. ИОФФЕ, В.М. МУЗАЛЕВСКИЙ, Е.С. БАЛЕНКОВА, А.В. ШАСТИН, А.А. ТЮТЮНОВ, В.Э. БОЙКО, С.М. ИГУМНОВ, А.Д. ДИЛЬМАН, Н.Ю. АДОНИН, В.В. БАРДИН, С.М. МАСОУД, Д.В. ВОРОБЬЕВА, С.Н. ОСИПОВ, Э.В. НОСОВА, Г.Н. ЛИПУНОВА, В.Н. ЧАРУШИН, Д.О. ПРИМА, А.Г. МАКАРОВ, А.В. ЗИБАРЕВ, Б.А. ТРОФИМОВ, Л.Н. СОБЕНИНА, К.В. БЕЛЯЕВА, В.Я. СОСНОВСКИХ, Д.Л. ОБЫДЕННОВ, С.А. УСАЧЕВ
    Перспективные точки роста и вызовы фторорганической химии
    Успехи химии. 2019. Т. 88. № 5. С. 425-569. DOI:10.1070/RCR4871 (Organofluorine chemistry: promising growth areas and challenges/ Politanskaya L.V., Selivanova G.A., Panteleeva E.V., Tretyakov E.V., Platonov V.E., Nikulshin P.V., Vinogradov A.S., Zonov Ya.V., Karpov V.M., Mezhenkova T.V., Vasilyev A.V., Koldobskii A.B., Shilova O.S., Morozova S.M., Burgart Ya.V., Shchegolkov E.V., Saloutin V.I., Sokolov V.B., Aksinenko A.Yu., Nenajdenko V.G., Moskalik M.Yu., Astakhova V.V., Shainyan B.A., Tabolin A.A., Ioffe S.L., Muzalevskiy V.M., Balenkova E.S., Shastin A.V., Tyutyunov A.A., Boiko V.E., Igumnov S.M., Dilman A.D., Adonin N.Yu., Bardin V.V., Masoud S.M., Vorobyeva D.V., Osipov S.N., Nosova E.V., Lipunova G.N., Charushin V.N., Prima D.O., Makarov A.G., Zibarev A.V., Trofimov B.A., Sobenina L.N., Belyaeva K.V., Sosnovskikh V.Ya., Obydennov D.L., Usachev S.A.// RUSSIAN CHEMICAL REVIEWS, 2019, V. 55, N 5, Pp), IF=4.612
  627. Л.В. ПОЛИТАНСКАЯ, Г.А. СЕЛИВАНОВА, Е.В. ПАНТЕЛЕЕВА, Е.В. ТРЕТЬЯКОВ, В.Е. ПЛАТОНОВ, П.В. НИКУЛЬШИН, А.С. ВИНОГРАДОВ, Я.В. ЗОНОВ, В.М. КАРПОВ, Т.В. МЕЖЕНКОВА, А.В. ВАСИЛЬЕВ, А.Б. КОЛДОБСКИЙ, О.С. ШИЛОВА, С.М. МОРОЗОВА, Я.В. БУРГАРТ, Е.В. ЩЕГОЛЬКОВ, В.И. САЛОУТИН, В.Б. СОКОЛОВ, А.Ю. АКСИНЕНКО, В.Г. НЕНАЙДЕНКО, М.Ю. МОСКАЛИК, В.В. АСТАХОВА, Б.А. ШАИНЯН, А.А. ТАБОЛИН, С.Л. ИОФФЕ, В.М. МУЗАЛЕВСКИЙ, Е.С. БАЛЕНКОВА, А.В. ШАСТИН, А.А. ТЮТЮНОВ, В.Э. БОЙКО, С.М. ИГУМНОВ, А.Д. ДИЛЬМАН, Н.Ю. АДОНИН, В.В. БАРДИН, С.М. МАСОУД, Д.В. ВОРОБЬЕВА, С.Н. ОСИПОВ, Э.В. НОСОВА, Г.Н. ЛИПУНОВА, В.Н. ЧАРУШИН, Д.О. ПРИМА, А.Г. МАКАРОВ, А.В. ЗИБАРЕВ, Б.А. ТРОФИМОВ, Л.Н. СОБЕНИНА, К.В. БЕЛЯЕВА, В.Я. СОСНОВСКИХ, Д.Л. ОБЫДЕННОВ, С.А. УСАЧЕВ
    Перспективные точки роста и вызовы фторорганической химии
    Успехи химии. 2019. Т. 88. № 5. С. 425-569. DOI:10.1070/RCR4871 (Organofluorine chemistry: promising growth areas and challenges/ Politanskaya L.V., Selivanova G.A., Panteleeva E.V., Tretyakov E.V., Platonov V.E., Nikulshin P.V., Vinogradov A.S., Zonov Ya.V., Karpov V.M., Mezhenkova T.V., Vasilyev A.V., Koldobskii A.B., Shilova O.S., Morozova S.M., Burgart Ya.V., Shchegolkov E.V., Saloutin V.I., Sokolov V.B., Aksinenko A.Yu., Nenajdenko V.G., Moskalik M.Yu., Astakhova V.V., Shainyan B.A., Tabolin A.A., Ioffe S.L., Muzalevskiy V.M., Balenkova E.S., Shastin A.V., Tyutyunov A.A., Boiko V.E., Igumnov S.M., Dilman A.D., Adonin N.Yu., Bardin V.V., Masoud S.M., Vorobyeva D.V., Osipov S.N., Nosova E.V., Lipunova G.N., Charushin V.N., Prima D.O., Makarov A.G., Zibarev A.V., Trofimov B.A., Sobenina L.N., Belyaeva K.V., Sosnovskikh V.Ya., Obydennov D.L., Usachev S.A.// RUSSIAN CHEMICAL REVIEWS, 2019, V. 55, N 5, Pp), IF=4.612
  628. Л.В. ПОЛИТАНСКАЯ, Г.А. СЕЛИВАНОВА, Е.В. ПАНТЕЛЕЕВА, Е.В. ТРЕТЬЯКОВ, В.Е. ПЛАТОНОВ, П.В. НИКУЛЬШИН, А.С. ВИНОГРАДОВ, Я.В. ЗОНОВ, В.М. КАРПОВ, Т.В. МЕЖЕНКОВА, А.В. ВАСИЛЬЕВ, А.Б. КОЛДОБСКИЙ, О.С. ШИЛОВА, С.М. МОРОЗОВА, Я.В. БУРГАРТ, Е.В. ЩЕГОЛЬКОВ, В.И. САЛОУТИН, В.Б. СОКОЛОВ, А.Ю. АКСИНЕНКО, В.Г. НЕНАЙДЕНКО, М.Ю. МОСКАЛИК, В.В. АСТАХОВА, Б.А. ШАИНЯН, А.А. ТАБОЛИН, С.Л. ИОФФЕ, В.М. МУЗАЛЕВСКИЙ, Е.С. БАЛЕНКОВА, А.В. ШАСТИН, А.А. ТЮТЮНОВ, В.Э. БОЙКО, С.М. ИГУМНОВ, А.Д. ДИЛЬМАН, Н.Ю. АДОНИН, В.В. БАРДИН, С.М. МАСОУД, Д.В. ВОРОБЬЕВА, С.Н. ОСИПОВ, Э.В. НОСОВА, Г.Н. ЛИПУНОВА, В.Н. ЧАРУШИН, Д.О. ПРИМА, А.Г. МАКАРОВ, А.В. ЗИБАРЕВ, Б.А. ТРОФИМОВ, Л.Н. СОБЕНИНА, К.В. БЕЛЯЕВА, В.Я. СОСНОВСКИХ, Д.Л. ОБЫДЕННОВ, С.А. УСАЧЕВ
    Перспективные точки роста и вызовы фторорганической химии
    Успехи химии. 2019. Т. 88. № 5. С. 425-569. DOI:10.1070/RCR4871 (Organofluorine chemistry: promising growth areas and challenges/ Politanskaya L.V., Selivanova G.A., Panteleeva E.V., Tretyakov E.V., Platonov V.E., Nikulshin P.V., Vinogradov A.S., Zonov Ya.V., Karpov V.M., Mezhenkova T.V., Vasilyev A.V., Koldobskii A.B., Shilova O.S., Morozova S.M., Burgart Ya.V., Shchegolkov E.V., Saloutin V.I., Sokolov V.B., Aksinenko A.Yu., Nenajdenko V.G., Moskalik M.Yu., Astakhova V.V., Shainyan B.A., Tabolin A.A., Ioffe S.L., Muzalevskiy V.M., Balenkova E.S., Shastin A.V., Tyutyunov A.A., Boiko V.E., Igumnov S.M., Dilman A.D., Adonin N.Yu., Bardin V.V., Masoud S.M., Vorobyeva D.V., Osipov S.N., Nosova E.V., Lipunova G.N., Charushin V.N., Prima D.O., Makarov A.G., Zibarev A.V., Trofimov B.A., Sobenina L.N., Belyaeva K.V., Sosnovskikh V.Ya., Obydennov D.L., Usachev S.A.// RUSSIAN CHEMICAL REVIEWS, 2019, V. 55, N 5, Pp), IF=4.612
  629. Л.В. ПОЛИТАНСКАЯ, Г.А. СЕЛИВАНОВА, Е.В. ПАНТЕЛЕЕВА, Е.В. ТРЕТЬЯКОВ, В.Е. ПЛАТОНОВ, П.В. НИКУЛЬШИН, А.С. ВИНОГРАДОВ, Я.В. ЗОНОВ, В.М. КАРПОВ, Т.В. МЕЖЕНКОВА, А.В. ВАСИЛЬЕВ, А.Б. КОЛДОБСКИЙ, О.С. ШИЛОВА, С.М. МОРОЗОВА, Я.В. БУРГАРТ, Е.В. ЩЕГОЛЬКОВ, В.И. САЛОУТИН, В.Б. СОКОЛОВ, А.Ю. АКСИНЕНКО, В.Г. НЕНАЙДЕНКО, М.Ю. МОСКАЛИК, В.В. АСТАХОВА, Б.А. ШАИНЯН, А.А. ТАБОЛИН, С.Л. ИОФФЕ, В.М. МУЗАЛЕВСКИЙ, Е.С. БАЛЕНКОВА, А.В. ШАСТИН, А.А. ТЮТЮНОВ, В.Э. БОЙКО, С.М. ИГУМНОВ, А.Д. ДИЛЬМАН, Н.Ю. АДОНИН, В.В. БАРДИН, С.М. МАСОУД, Д.В. ВОРОБЬЕВА, С.Н. ОСИПОВ, Э.В. НОСОВА, Г.Н. ЛИПУНОВА, В.Н. ЧАРУШИН, Д.О. ПРИМА, А.Г. МАКАРОВ, А.В. ЗИБАРЕВ, Б.А. ТРОФИМОВ, Л.Н. СОБЕНИНА, К.В. БЕЛЯЕВА, В.Я. СОСНОВСКИХ, Д.Л. ОБЫДЕННОВ, С.А. УСАЧЕВ
    Перспективные точки роста и вызовы фторорганической химии
    Успехи химии. 2019. Т. 88. № 5. С. 425-569. DOI:10.1070/RCR4871 (Organofluorine chemistry: promising growth areas and challenges/ Politanskaya L.V., Selivanova G.A., Panteleeva E.V., Tretyakov E.V., Platonov V.E., Nikulshin P.V., Vinogradov A.S., Zonov Ya.V., Karpov V.M., Mezhenkova T.V., Vasilyev A.V., Koldobskii A.B., Shilova O.S., Morozova S.M., Burgart Ya.V., Shchegolkov E.V., Saloutin V.I., Sokolov V.B., Aksinenko A.Yu., Nenajdenko V.G., Moskalik M.Yu., Astakhova V.V., Shainyan B.A., Tabolin A.A., Ioffe S.L., Muzalevskiy V.M., Balenkova E.S., Shastin A.V., Tyutyunov A.A., Boiko V.E., Igumnov S.M., Dilman A.D., Adonin N.Yu., Bardin V.V., Masoud S.M., Vorobyeva D.V., Osipov S.N., Nosova E.V., Lipunova G.N., Charushin V.N., Prima D.O., Makarov A.G., Zibarev A.V., Trofimov B.A., Sobenina L.N., Belyaeva K.V., Sosnovskikh V.Ya., Obydennov D.L., Usachev S.A.// RUSSIAN CHEMICAL REVIEWS, 2019, V. 55, N 5, Pp), IF=4.612
  630. Л.В. ПОЛИТАНСКАЯ, Г.А. СЕЛИВАНОВА, Е.В. ПАНТЕЛЕЕВА, Е.В. ТРЕТЬЯКОВ, В.Е. ПЛАТОНОВ, П.В. НИКУЛЬШИН, А.С. ВИНОГРАДОВ, Я.В. ЗОНОВ, В.М. КАРПОВ, Т.В. МЕЖЕНКОВА, А.В. ВАСИЛЬЕВ, А.Б. КОЛДОБСКИЙ, О.С. ШИЛОВА, С.М. МОРОЗОВА, Я.В. БУРГАРТ, Е.В. ЩЕГОЛЬКОВ, В.И. САЛОУТИН, В.Б. СОКОЛОВ, А.Ю. АКСИНЕНКО, В.Г. НЕНАЙДЕНКО, М.Ю. МОСКАЛИК, В.В. АСТАХОВА, Б.А. ШАИНЯН, А.А. ТАБОЛИН, С.Л. ИОФФЕ, В.М. МУЗАЛЕВСКИЙ, Е.С. БАЛЕНКОВА, А.В. ШАСТИН, А.А. ТЮТЮНОВ, В.Э. БОЙКО, С.М. ИГУМНОВ, А.Д. ДИЛЬМАН, Н.Ю. АДОНИН, В.В. БАРДИН, С.М. МАСОУД, Д.В. ВОРОБЬЕВА, С.Н. ОСИПОВ, Э.В. НОСОВА, Г.Н. ЛИПУНОВА, В.Н. ЧАРУШИН, Д.О. ПРИМА, А.Г. МАКАРОВ, А.В. ЗИБАРЕВ, Б.А. ТРОФИМОВ, Л.Н. СОБЕНИНА, К.В. БЕЛЯЕВА, В.Я. СОСНОВСКИХ, Д.Л. ОБЫДЕННОВ, С.А. УСАЧЕВ
    Перспективные точки роста и вызовы фторорганической химии
    Успехи химии. 2019. Т. 88. № 5. С. 425-569. DOI:10.1070/RCR4871 (Organofluorine chemistry: promising growth areas and challenges/ Politanskaya L.V., Selivanova G.A., Panteleeva E.V., Tretyakov E.V., Platonov V.E., Nikulshin P.V., Vinogradov A.S., Zonov Ya.V., Karpov V.M., Mezhenkova T.V., Vasilyev A.V., Koldobskii A.B., Shilova O.S., Morozova S.M., Burgart Ya.V., Shchegolkov E.V., Saloutin V.I., Sokolov V.B., Aksinenko A.Yu., Nenajdenko V.G., Moskalik M.Yu., Astakhova V.V., Shainyan B.A., Tabolin A.A., Ioffe S.L., Muzalevskiy V.M., Balenkova E.S., Shastin A.V., Tyutyunov A.A., Boiko V.E., Igumnov S.M., Dilman A.D., Adonin N.Yu., Bardin V.V., Masoud S.M., Vorobyeva D.V., Osipov S.N., Nosova E.V., Lipunova G.N., Charushin V.N., Prima D.O., Makarov A.G., Zibarev A.V., Trofimov B.A., Sobenina L.N., Belyaeva K.V., Sosnovskikh V.Ya., Obydennov D.L., Usachev S.A.// RUSSIAN CHEMICAL REVIEWS, 2019, V. 55, N 5, Pp), IF=4.612
  631. Л.В. ПОЛИТАНСКАЯ, Г.А. СЕЛИВАНОВА, Е.В. ПАНТЕЛЕЕВА, Е.В. ТРЕТЬЯКОВ, В.Е. ПЛАТОНОВ, П.В. НИКУЛЬШИН, А.С. ВИНОГРАДОВ, Я.В. ЗОНОВ, В.М. КАРПОВ, Т.В. МЕЖЕНКОВА, А.В. ВАСИЛЬЕВ, А.Б. КОЛДОБСКИЙ, О.С. ШИЛОВА, С.М. МОРОЗОВА, Я.В. БУРГАРТ, Е.В. ЩЕГОЛЬКОВ, В.И. САЛОУТИН, В.Б. СОКОЛОВ, А.Ю. АКСИНЕНКО, В.Г. НЕНАЙДЕНКО, М.Ю. МОСКАЛИК, В.В. АСТАХОВА, Б.А. ШАИНЯН, А.А. ТАБОЛИН, С.Л. ИОФФЕ, В.М. МУЗАЛЕВСКИЙ, Е.С. БАЛЕНКОВА, А.В. ШАСТИН, А.А. ТЮТЮНОВ, В.Э. БОЙКО, С.М. ИГУМНОВ, А.Д. ДИЛЬМАН, Н.Ю. АДОНИН, В.В. БАРДИН, С.М. МАСОУД, Д.В. ВОРОБЬЕВА, С.Н. ОСИПОВ, Э.В. НОСОВА, Г.Н. ЛИПУНОВА, В.Н. ЧАРУШИН, Д.О. ПРИМА, А.Г. МАКАРОВ, А.В. ЗИБАРЕВ, Б.А. ТРОФИМОВ, Л.Н. СОБЕНИНА, К.В. БЕЛЯЕВА, В.Я. СОСНОВСКИХ, Д.Л. ОБЫДЕННОВ, С.А. УСАЧЕВ
    Перспективные точки роста и вызовы фторорганической химии
    Успехи химии. 2019. Т. 88. № 5. С. 425-569. DOI:10.1070/RCR4871 (Organofluorine chemistry: promising growth areas and challenges/ Politanskaya L.V., Selivanova G.A., Panteleeva E.V., Tretyakov E.V., Platonov V.E., Nikulshin P.V., Vinogradov A.S., Zonov Ya.V., Karpov V.M., Mezhenkova T.V., Vasilyev A.V., Koldobskii A.B., Shilova O.S., Morozova S.M., Burgart Ya.V., Shchegolkov E.V., Saloutin V.I., Sokolov V.B., Aksinenko A.Yu., Nenajdenko V.G., Moskalik M.Yu., Astakhova V.V., Shainyan B.A., Tabolin A.A., Ioffe S.L., Muzalevskiy V.M., Balenkova E.S., Shastin A.V., Tyutyunov A.A., Boiko V.E., Igumnov S.M., Dilman A.D., Adonin N.Yu., Bardin V.V., Masoud S.M., Vorobyeva D.V., Osipov S.N., Nosova E.V., Lipunova G.N., Charushin V.N., Prima D.O., Makarov A.G., Zibarev A.V., Trofimov B.A., Sobenina L.N., Belyaeva K.V., Sosnovskikh V.Ya., Obydennov D.L., Usachev S.A.// RUSSIAN CHEMICAL REVIEWS, 2019, V. 55, N 5, Pp), IF=4.612
  632. Л.В. ПОЛИТАНСКАЯ, Г.А. СЕЛИВАНОВА, Е.В. ПАНТЕЛЕЕВА, Е.В. ТРЕТЬЯКОВ, В.Е. ПЛАТОНОВ, П.В. НИКУЛЬШИН, А.С. ВИНОГРАДОВ, Я.В. ЗОНОВ, В.М. КАРПОВ, Т.В. МЕЖЕНКОВА, А.В. ВАСИЛЬЕВ, А.Б. КОЛДОБСКИЙ, О.С. ШИЛОВА, С.М. МОРОЗОВА, Я.В. БУРГАРТ, Е.В. ЩЕГОЛЬКОВ, В.И. САЛОУТИН, В.Б. СОКОЛОВ, А.Ю. АКСИНЕНКО, В.Г. НЕНАЙДЕНКО, М.Ю. МОСКАЛИК, В.В. АСТАХОВА, Б.А. ШАИНЯН, А.А. ТАБОЛИН, С.Л. ИОФФЕ, В.М. МУЗАЛЕВСКИЙ, Е.С. БАЛЕНКОВА, А.В. ШАСТИН, А.А. ТЮТЮНОВ, В.Э. БОЙКО, С.М. ИГУМНОВ, А.Д. ДИЛЬМАН, Н.Ю. АДОНИН, В.В. БАРДИН, С.М. МАСОУД, Д.В. ВОРОБЬЕВА, С.Н. ОСИПОВ, Э.В. НОСОВА, Г.Н. ЛИПУНОВА, В.Н. ЧАРУШИН, Д.О. ПРИМА, А.Г. МАКАРОВ, А.В. ЗИБАРЕВ, Б.А. ТРОФИМОВ, Л.Н. СОБЕНИНА, К.В. БЕЛЯЕВА, В.Я. СОСНОВСКИХ, Д.Л. ОБЫДЕННОВ, С.А. УСАЧЕВ
    Перспективные точки роста и вызовы фторорганической химии
    Успехи химии. 2019. Т. 88. № 5. С. 425-569. DOI:10.1070/RCR4871 (Organofluorine chemistry: promising growth areas and challenges/ Politanskaya L.V., Selivanova G.A., Panteleeva E.V., Tretyakov E.V., Platonov V.E., Nikulshin P.V., Vinogradov A.S., Zonov Ya.V., Karpov V.M., Mezhenkova T.V., Vasilyev A.V., Koldobskii A.B., Shilova O.S., Morozova S.M., Burgart Ya.V., Shchegolkov E.V., Saloutin V.I., Sokolov V.B., Aksinenko A.Yu., Nenajdenko V.G., Moskalik M.Yu., Astakhova V.V., Shainyan B.A., Tabolin A.A., Ioffe S.L., Muzalevskiy V.M., Balenkova E.S., Shastin A.V., Tyutyunov A.A., Boiko V.E., Igumnov S.M., Dilman A.D., Adonin N.Yu., Bardin V.V., Masoud S.M., Vorobyeva D.V., Osipov S.N., Nosova E.V., Lipunova G.N., Charushin V.N., Prima D.O., Makarov A.G., Zibarev A.V., Trofimov B.A., Sobenina L.N., Belyaeva K.V., Sosnovskikh V.Ya., Obydennov D.L., Usachev S.A.// RUSSIAN CHEMICAL REVIEWS, 2019, V. 55, N 5, Pp), IF=4.612
  633. Л.В. ПОЛИТАНСКАЯ, Г.А. СЕЛИВАНОВА, Е.В. ПАНТЕЛЕЕВА, Е.В. ТРЕТЬЯКОВ, В.Е. ПЛАТОНОВ, П.В. НИКУЛЬШИН, А.С. ВИНОГРАДОВ, Я.В. ЗОНОВ, В.М. КАРПОВ, Т.В. МЕЖЕНКОВА, А.В. ВАСИЛЬЕВ, А.Б. КОЛДОБСКИЙ, О.С. ШИЛОВА, С.М. МОРОЗОВА, Я.В. БУРГАРТ, Е.В. ЩЕГОЛЬКОВ, В.И. САЛОУТИН, В.Б. СОКОЛОВ, А.Ю. АКСИНЕНКО, В.Г. НЕНАЙДЕНКО, М.Ю. МОСКАЛИК, В.В. АСТАХОВА, Б.А. ШАИНЯН, А.А. ТАБОЛИН, С.Л. ИОФФЕ, В.М. МУЗАЛЕВСКИЙ, Е.С. БАЛЕНКОВА, А.В. ШАСТИН, А.А. ТЮТЮНОВ, В.Э. БОЙКО, С.М. ИГУМНОВ, А.Д. ДИЛЬМАН, Н.Ю. АДОНИН, В.В. БАРДИН, С.М. МАСОУД, Д.В. ВОРОБЬЕВА, С.Н. ОСИПОВ, Э.В. НОСОВА, Г.Н. ЛИПУНОВА, В.Н. ЧАРУШИН, Д.О. ПРИМА, А.Г. МАКАРОВ, А.В. ЗИБАРЕВ, Б.А. ТРОФИМОВ, Л.Н. СОБЕНИНА, К.В. БЕЛЯЕВА, В.Я. СОСНОВСКИХ, Д.Л. ОБЫДЕННОВ, С.А. УСАЧЕВ
    Перспективные точки роста и вызовы фторорганической химии
    Успехи химии. 2019. Т. 88. № 5. С. 425-569. DOI:10.1070/RCR4871 (Organofluorine chemistry: promising growth areas and challenges/ Politanskaya L.V., Selivanova G.A., Panteleeva E.V., Tretyakov E.V., Platonov V.E., Nikulshin P.V., Vinogradov A.S., Zonov Ya.V., Karpov V.M., Mezhenkova T.V., Vasilyev A.V., Koldobskii A.B., Shilova O.S., Morozova S.M., Burgart Ya.V., Shchegolkov E.V., Saloutin V.I., Sokolov V.B., Aksinenko A.Yu., Nenajdenko V.G., Moskalik M.Yu., Astakhova V.V., Shainyan B.A., Tabolin A.A., Ioffe S.L., Muzalevskiy V.M., Balenkova E.S., Shastin A.V., Tyutyunov A.A., Boiko V.E., Igumnov S.M., Dilman A.D., Adonin N.Yu., Bardin V.V., Masoud S.M., Vorobyeva D.V., Osipov S.N., Nosova E.V., Lipunova G.N., Charushin V.N., Prima D.O., Makarov A.G., Zibarev A.V., Trofimov B.A., Sobenina L.N., Belyaeva K.V., Sosnovskikh V.Ya., Obydennov D.L., Usachev S.A.// RUSSIAN CHEMICAL REVIEWS, 2019, V. 55, N 5, Pp), IF=4.612
  634. Л.В. ПОЛИТАНСКАЯ, Г.А. СЕЛИВАНОВА, Е.В. ПАНТЕЛЕЕВА, Е.В. ТРЕТЬЯКОВ, В.Е. ПЛАТОНОВ, П.В. НИКУЛЬШИН, А.С. ВИНОГРАДОВ, Я.В. ЗОНОВ, В.М. КАРПОВ, Т.В. МЕЖЕНКОВА, А.В. ВАСИЛЬЕВ, А.Б. КОЛДОБСКИЙ, О.С. ШИЛОВА, С.М. МОРОЗОВА, Я.В. БУРГАРТ, Е.В. ЩЕГОЛЬКОВ, В.И. САЛОУТИН, В.Б. СОКОЛОВ, А.Ю. АКСИНЕНКО, В.Г. НЕНАЙДЕНКО, М.Ю. МОСКАЛИК, В.В. АСТАХОВА, Б.А. ШАИНЯН, А.А. ТАБОЛИН, С.Л. ИОФФЕ, В.М. МУЗАЛЕВСКИЙ, Е.С. БАЛЕНКОВА, А.В. ШАСТИН, А.А. ТЮТЮНОВ, В.Э. БОЙКО, С.М. ИГУМНОВ, А.Д. ДИЛЬМАН, Н.Ю. АДОНИН, В.В. БАРДИН, С.М. МАСОУД, Д.В. ВОРОБЬЕВА, С.Н. ОСИПОВ, Э.В. НОСОВА, Г.Н. ЛИПУНОВА, В.Н. ЧАРУШИН, Д.О. ПРИМА, А.Г. МАКАРОВ, А.В. ЗИБАРЕВ, Б.А. ТРОФИМОВ, Л.Н. СОБЕНИНА, К.В. БЕЛЯЕВА, В.Я. СОСНОВСКИХ, Д.Л. ОБЫДЕННОВ, С.А. УСАЧЕВ
    Перспективные точки роста и вызовы фторорганической химии
    Успехи химии. 2019. Т. 88. № 5. С. 425-569. DOI:10.1070/RCR4871 (Organofluorine chemistry: promising growth areas and challenges/ Politanskaya L.V., Selivanova G.A., Panteleeva E.V., Tretyakov E.V., Platonov V.E., Nikulshin P.V., Vinogradov A.S., Zonov Ya.V., Karpov V.M., Mezhenkova T.V., Vasilyev A.V., Koldobskii A.B., Shilova O.S., Morozova S.M., Burgart Ya.V., Shchegolkov E.V., Saloutin V.I., Sokolov V.B., Aksinenko A.Yu., Nenajdenko V.G., Moskalik M.Yu., Astakhova V.V., Shainyan B.A., Tabolin A.A., Ioffe S.L., Muzalevskiy V.M., Balenkova E.S., Shastin A.V., Tyutyunov A.A., Boiko V.E., Igumnov S.M., Dilman A.D., Adonin N.Yu., Bardin V.V., Masoud S.M., Vorobyeva D.V., Osipov S.N., Nosova E.V., Lipunova G.N., Charushin V.N., Prima D.O., Makarov A.G., Zibarev A.V., Trofimov B.A., Sobenina L.N., Belyaeva K.V., Sosnovskikh V.Ya., Obydennov D.L., Usachev S.A.// RUSSIAN CHEMICAL REVIEWS, 2019, V. 55, N 5, Pp), IF=4.612
  635. Л.В. ПОЛИТАНСКАЯ, Г.А. СЕЛИВАНОВА, Е.В. ПАНТЕЛЕЕВА, Е.В. ТРЕТЬЯКОВ, В.Е. ПЛАТОНОВ, П.В. НИКУЛЬШИН, А.С. ВИНОГРАДОВ, Я.В. ЗОНОВ, В.М. КАРПОВ, Т.В. МЕЖЕНКОВА, А.В. ВАСИЛЬЕВ, А.Б. КОЛДОБСКИЙ, О.С. ШИЛОВА, С.М. МОРОЗОВА, Я.В. БУРГАРТ, Е.В. ЩЕГОЛЬКОВ, В.И. САЛОУТИН, В.Б. СОКОЛОВ, А.Ю. АКСИНЕНКО, В.Г. НЕНАЙДЕНКО, М.Ю. МОСКАЛИК, В.В. АСТАХОВА, Б.А. ШАИНЯН, А.А. ТАБОЛИН, С.Л. ИОФФЕ, В.М. МУЗАЛЕВСКИЙ, Е.С. БАЛЕНКОВА, А.В. ШАСТИН, А.А. ТЮТЮНОВ, В.Э. БОЙКО, С.М. ИГУМНОВ, А.Д. ДИЛЬМАН, Н.Ю. АДОНИН, В.В. БАРДИН, С.М. МАСОУД, Д.В. ВОРОБЬЕВА, С.Н. ОСИПОВ, Э.В. НОСОВА, Г.Н. ЛИПУНОВА, В.Н. ЧАРУШИН, Д.О. ПРИМА, А.Г. МАКАРОВ, А.В. ЗИБАРЕВ, Б.А. ТРОФИМОВ, Л.Н. СОБЕНИНА, К.В. БЕЛЯЕВА, В.Я. СОСНОВСКИХ, Д.Л. ОБЫДЕННОВ, С.А. УСАЧЕВ
    Перспективные точки роста и вызовы фторорганической химии
    Успехи химии. 2019. Т. 88. № 5. С. 425-569. DOI:10.1070/RCR4871 (Organofluorine chemistry: promising growth areas and challenges/ Politanskaya L.V., Selivanova G.A., Panteleeva E.V., Tretyakov E.V., Platonov V.E., Nikulshin P.V., Vinogradov A.S., Zonov Ya.V., Karpov V.M., Mezhenkova T.V., Vasilyev A.V., Koldobskii A.B., Shilova O.S., Morozova S.M., Burgart Ya.V., Shchegolkov E.V., Saloutin V.I., Sokolov V.B., Aksinenko A.Yu., Nenajdenko V.G., Moskalik M.Yu., Astakhova V.V., Shainyan B.A., Tabolin A.A., Ioffe S.L., Muzalevskiy V.M., Balenkova E.S., Shastin A.V., Tyutyunov A.A., Boiko V.E., Igumnov S.M., Dilman A.D., Adonin N.Yu., Bardin V.V., Masoud S.M., Vorobyeva D.V., Osipov S.N., Nosova E.V., Lipunova G.N., Charushin V.N., Prima D.O., Makarov A.G., Zibarev A.V., Trofimov B.A., Sobenina L.N., Belyaeva K.V., Sosnovskikh V.Ya., Obydennov D.L., Usachev S.A.// RUSSIAN CHEMICAL REVIEWS, 2019, V. 55, N 5, Pp), IF=4.612
  636. Л.В. ПОЛИТАНСКАЯ, Г.А. СЕЛИВАНОВА, Е.В. ПАНТЕЛЕЕВА, Е.В. ТРЕТЬЯКОВ, В.Е. ПЛАТОНОВ, П.В. НИКУЛЬШИН, А.С. ВИНОГРАДОВ, Я.В. ЗОНОВ, В.М. КАРПОВ, Т.В. МЕЖЕНКОВА, А.В. ВАСИЛЬЕВ, А.Б. КОЛДОБСКИЙ, О.С. ШИЛОВА, С.М. МОРОЗОВА, Я.В. БУРГАРТ, Е.В. ЩЕГОЛЬКОВ, В.И. САЛОУТИН, В.Б. СОКОЛОВ, А.Ю. АКСИНЕНКО, В.Г. НЕНАЙДЕНКО, М.Ю. МОСКАЛИК, В.В. АСТАХОВА, Б.А. ШАИНЯН, А.А. ТАБОЛИН, С.Л. ИОФФЕ, В.М. МУЗАЛЕВСКИЙ, Е.С. БАЛЕНКОВА, А.В. ШАСТИН, А.А. ТЮТЮНОВ, В.Э. БОЙКО, С.М. ИГУМНОВ, А.Д. ДИЛЬМАН, Н.Ю. АДОНИН, В.В. БАРДИН, С.М. МАСОУД, Д.В. ВОРОБЬЕВА, С.Н. ОСИПОВ, Э.В. НОСОВА, Г.Н. ЛИПУНОВА, В.Н. ЧАРУШИН, Д.О. ПРИМА, А.Г. МАКАРОВ, А.В. ЗИБАРЕВ, Б.А. ТРОФИМОВ, Л.Н. СОБЕНИНА, К.В. БЕЛЯЕВА, В.Я. СОСНОВСКИХ, Д.Л. ОБЫДЕННОВ, С.А. УСАЧЕВ
    Перспективные точки роста и вызовы фторорганической химии
    Успехи химии. 2019. Т. 88. № 5. С. 425-569. DOI:10.1070/RCR4871 (Organofluorine chemistry: promising growth areas and challenges/ Politanskaya L.V., Selivanova G.A., Panteleeva E.V., Tretyakov E.V., Platonov V.E., Nikulshin P.V., Vinogradov A.S., Zonov Ya.V., Karpov V.M., Mezhenkova T.V., Vasilyev A.V., Koldobskii A.B., Shilova O.S., Morozova S.M., Burgart Ya.V., Shchegolkov E.V., Saloutin V.I., Sokolov V.B., Aksinenko A.Yu., Nenajdenko V.G., Moskalik M.Yu., Astakhova V.V., Shainyan B.A., Tabolin A.A., Ioffe S.L., Muzalevskiy V.M., Balenkova E.S., Shastin A.V., Tyutyunov A.A., Boiko V.E., Igumnov S.M., Dilman A.D., Adonin N.Yu., Bardin V.V., Masoud S.M., Vorobyeva D.V., Osipov S.N., Nosova E.V., Lipunova G.N., Charushin V.N., Prima D.O., Makarov A.G., Zibarev A.V., Trofimov B.A., Sobenina L.N., Belyaeva K.V., Sosnovskikh V.Ya., Obydennov D.L., Usachev S.A.// RUSSIAN CHEMICAL REVIEWS, 2019, V. 55, N 5, Pp), IF=4.612
  637. V.Yu. Shuvalov, A.S. Rupp, A.K. Kuratova, A.S. Fisyuk, A.A. Nefedov, G.P. Sagitullina
    Synthesis of delta-Carbolines and the Alkaloid Quindoline through a Molybdenum-Catalyzed Cadogan Cyclization and their Photoluminescent Properties
    SYNLETT, 2019, V. 30, N 8, Pp 919-923 doi:10.1055/s-0037-1612416, IF=2.418
  638. V.Yu. Shuvalov, A.S. Rupp, A.K. Kuratova, A.S. Fisyuk, A.A. Nefedov, G.P. Sagitullina
    Synthesis of delta-Carbolines and the Alkaloid Quindoline through a Molybdenum-Catalyzed Cadogan Cyclization and their Photoluminescent Properties
    SYNLETT, 2019, V. 30, N 8, Pp 919-923 doi:10.1055/s-0037-1612416, IF=2.418
  639. V.Yu. Shuvalov, A.S. Rupp, A.K. Kuratova, A.S. Fisyuk, A.A. Nefedov, G.P. Sagitullina
    Synthesis of delta-Carbolines and the Alkaloid Quindoline through a Molybdenum-Catalyzed Cadogan Cyclization and their Photoluminescent Properties
    SYNLETT, 2019, V. 30, N 8, Pp 919-923 doi:10.1055/s-0037-1612416, IF=2.418
  640. V.Yu. Shuvalov, A.S. Rupp, A.K. Kuratova, A.S. Fisyuk, A.A. Nefedov, G.P. Sagitullina
    Synthesis of delta-Carbolines and the Alkaloid Quindoline through a Molybdenum-Catalyzed Cadogan Cyclization and their Photoluminescent Properties
    SYNLETT, 2019, V. 30, N 8, Pp 919-923 doi:10.1055/s-0037-1612416, IF=2.418
  641. V.Yu. Shuvalov, A.S. Rupp, A.K. Kuratova, A.S. Fisyuk, A.A. Nefedov, G.P. Sagitullina
    Synthesis of delta-Carbolines and the Alkaloid Quindoline through a Molybdenum-Catalyzed Cadogan Cyclization and their Photoluminescent Properties
    SYNLETT, 2019, V. 30, N 8, Pp 919-923 doi:10.1055/s-0037-1612416, IF=2.418
  642. E.Mozhaitsev,E.Suslov,Yu. Demidova,D. Korchagina,K.Volcho,A. Zakharenko,I. Vasi'eva,M.Kupryushkin,A. Chepanova,D. M. Ayine-Tora,J.Reynisson,N. Salakhutdinov,O. Lavrik
    The Development of Tyrosyl-DNA Phosphodyesterase 1 (TDP1) Inhibitors Based on the Amines Combining Aromatic/Heteroaromatic and Monoterpenoid Moieties
    Letters in Drug Design & Discovery, 2019, V. 6, N 5, Pp 597-605 doi:10.2174/1570180816666181220121042, IF=0.953
  643. E.Mozhaitsev,E.Suslov,Yu. Demidova,D. Korchagina,K.Volcho,A. Zakharenko,I. Vasi'eva,M.Kupryushkin,A. Chepanova,D. M. Ayine-Tora,J.Reynisson,N. Salakhutdinov,O. Lavrik
    The Development of Tyrosyl-DNA Phosphodyesterase 1 (TDP1) Inhibitors Based on the Amines Combining Aromatic/Heteroaromatic and Monoterpenoid Moieties
    Letters in Drug Design & Discovery, 2019, V. 6, N 5, Pp 597-605 doi:10.2174/1570180816666181220121042, IF=0.953
  644. E.Mozhaitsev,E.Suslov,Yu. Demidova,D. Korchagina,K.Volcho,A. Zakharenko,I. Vasi'eva,M.Kupryushkin,A. Chepanova,D. M. Ayine-Tora,J.Reynisson,N. Salakhutdinov,O. Lavrik
    The Development of Tyrosyl-DNA Phosphodyesterase 1 (TDP1) Inhibitors Based on the Amines Combining Aromatic/Heteroaromatic and Monoterpenoid Moieties
    Letters in Drug Design & Discovery, 2019, V. 6, N 5, Pp 597-605 doi:10.2174/1570180816666181220121042, IF=0.953
  645. E.Mozhaitsev,E.Suslov,Yu. Demidova,D. Korchagina,K.Volcho,A. Zakharenko,I. Vasi'eva,M.Kupryushkin,A. Chepanova,D. M. Ayine-Tora,J.Reynisson,N. Salakhutdinov,O. Lavrik
    The Development of Tyrosyl-DNA Phosphodyesterase 1 (TDP1) Inhibitors Based on the Amines Combining Aromatic/Heteroaromatic and Monoterpenoid Moieties
    Letters in Drug Design & Discovery, 2019, V. 6, N 5, Pp 597-605 doi:10.2174/1570180816666181220121042, IF=0.953
  646. E.Mozhaitsev,E.Suslov,Yu. Demidova,D. Korchagina,K.Volcho,A. Zakharenko,I. Vasi'eva,M.Kupryushkin,A. Chepanova,D. M. Ayine-Tora,J.Reynisson,N. Salakhutdinov,O. Lavrik
    The Development of Tyrosyl-DNA Phosphodyesterase 1 (TDP1) Inhibitors Based on the Amines Combining Aromatic/Heteroaromatic and Monoterpenoid Moieties
    Letters in Drug Design & Discovery, 2019, V. 6, N 5, Pp 597-605 doi:10.2174/1570180816666181220121042, IF=0.953
  647. E.Mozhaitsev,E.Suslov,Yu. Demidova,D. Korchagina,K.Volcho,A. Zakharenko,I. Vasi'eva,M.Kupryushkin,A. Chepanova,D. M. Ayine-Tora,J.Reynisson,N. Salakhutdinov,O. Lavrik
    The Development of Tyrosyl-DNA Phosphodyesterase 1 (TDP1) Inhibitors Based on the Amines Combining Aromatic/Heteroaromatic and Monoterpenoid Moieties
    Letters in Drug Design & Discovery, 2019, V. 6, N 5, Pp 597-605 doi:10.2174/1570180816666181220121042, IF=0.953
  648. E.Mozhaitsev,E.Suslov,Yu. Demidova,D. Korchagina,K.Volcho,A. Zakharenko,I. Vasi'eva,M.Kupryushkin,A. Chepanova,D. M. Ayine-Tora,J.Reynisson,N. Salakhutdinov,O. Lavrik
    The Development of Tyrosyl-DNA Phosphodyesterase 1 (TDP1) Inhibitors Based on the Amines Combining Aromatic/Heteroaromatic and Monoterpenoid Moieties
    Letters in Drug Design & Discovery, 2019, V. 6, N 5, Pp 597-605 doi:10.2174/1570180816666181220121042, IF=0.953
  649. E.Mozhaitsev,E.Suslov,Yu. Demidova,D. Korchagina,K.Volcho,A. Zakharenko,I. Vasi'eva,M.Kupryushkin,A. Chepanova,D. M. Ayine-Tora,J.Reynisson,N. Salakhutdinov,O. Lavrik
    The Development of Tyrosyl-DNA Phosphodyesterase 1 (TDP1) Inhibitors Based on the Amines Combining Aromatic/Heteroaromatic and Monoterpenoid Moieties
    Letters in Drug Design & Discovery, 2019, V. 6, N 5, Pp 597-605 doi:10.2174/1570180816666181220121042, IF=0.953
  650. E.S. Mozhaitsev, A.L. Zakharenko, E.V. Suslov, D.V. Korchagina, O.D. Zakharova, I.A. Vasil’eva, A.A. Chepanova, E. Black, J. Patel, R. Chand, J. Reynisson, I.K. H. Leung, K.P. Volcho, N.F. Salakhutdinov, O.I. Lavrik
    Novel Inhibitors of DNA Repair Enzyme TDP1 Combining Monoterpenoid and Adamantane Fragments
    Anti-Cancer Agents in Medicinal Chemistry, 2019, V. 19 , N 4 , Pp 463-472 doi:10.2174/1871520619666181207094243, IF=2.18
  651. E.S. Mozhaitsev, A.L. Zakharenko, E.V. Suslov, D.V. Korchagina, O.D. Zakharova, I.A. Vasil’eva, A.A. Chepanova, E. Black, J. Patel, R. Chand, J. Reynisson, I.K. H. Leung, K.P. Volcho, N.F. Salakhutdinov, O.I. Lavrik
    Novel Inhibitors of DNA Repair Enzyme TDP1 Combining Monoterpenoid and Adamantane Fragments
    Anti-Cancer Agents in Medicinal Chemistry, 2019, V. 19 , N 4 , Pp 463-472 doi:10.2174/1871520619666181207094243, IF=2.18
  652. E.S. Mozhaitsev, A.L. Zakharenko, E.V. Suslov, D.V. Korchagina, O.D. Zakharova, I.A. Vasil’eva, A.A. Chepanova, E. Black, J. Patel, R. Chand, J. Reynisson, I.K. H. Leung, K.P. Volcho, N.F. Salakhutdinov, O.I. Lavrik
    Novel Inhibitors of DNA Repair Enzyme TDP1 Combining Monoterpenoid and Adamantane Fragments
    Anti-Cancer Agents in Medicinal Chemistry, 2019, V. 19 , N 4 , Pp 463-472 doi:10.2174/1871520619666181207094243, IF=2.18
  653. E.S. Mozhaitsev, A.L. Zakharenko, E.V. Suslov, D.V. Korchagina, O.D. Zakharova, I.A. Vasil’eva, A.A. Chepanova, E. Black, J. Patel, R. Chand, J. Reynisson, I.K. H. Leung, K.P. Volcho, N.F. Salakhutdinov, O.I. Lavrik
    Novel Inhibitors of DNA Repair Enzyme TDP1 Combining Monoterpenoid and Adamantane Fragments
    Anti-Cancer Agents in Medicinal Chemistry, 2019, V. 19 , N 4 , Pp 463-472 doi:10.2174/1871520619666181207094243, IF=2.18
  654. E.S. Mozhaitsev, A.L. Zakharenko, E.V. Suslov, D.V. Korchagina, O.D. Zakharova, I.A. Vasil’eva, A.A. Chepanova, E. Black, J. Patel, R. Chand, J. Reynisson, I.K. H. Leung, K.P. Volcho, N.F. Salakhutdinov, O.I. Lavrik
    Novel Inhibitors of DNA Repair Enzyme TDP1 Combining Monoterpenoid and Adamantane Fragments
    Anti-Cancer Agents in Medicinal Chemistry, 2019, V. 19 , N 4 , Pp 463-472 doi:10.2174/1871520619666181207094243, IF=2.18
  655. E.S. Mozhaitsev, A.L. Zakharenko, E.V. Suslov, D.V. Korchagina, O.D. Zakharova, I.A. Vasil’eva, A.A. Chepanova, E. Black, J. Patel, R. Chand, J. Reynisson, I.K. H. Leung, K.P. Volcho, N.F. Salakhutdinov, O.I. Lavrik
    Novel Inhibitors of DNA Repair Enzyme TDP1 Combining Monoterpenoid and Adamantane Fragments
    Anti-Cancer Agents in Medicinal Chemistry, 2019, V. 19 , N 4 , Pp 463-472 doi:10.2174/1871520619666181207094243, IF=2.18
  656. E.S. Mozhaitsev, A.L. Zakharenko, E.V. Suslov, D.V. Korchagina, O.D. Zakharova, I.A. Vasil’eva, A.A. Chepanova, E. Black, J. Patel, R. Chand, J. Reynisson, I.K. H. Leung, K.P. Volcho, N.F. Salakhutdinov, O.I. Lavrik
    Novel Inhibitors of DNA Repair Enzyme TDP1 Combining Monoterpenoid and Adamantane Fragments
    Anti-Cancer Agents in Medicinal Chemistry, 2019, V. 19 , N 4 , Pp 463-472 doi:10.2174/1871520619666181207094243, IF=2.18
  657. E.S. Mozhaitsev, A.L. Zakharenko, E.V. Suslov, D.V. Korchagina, O.D. Zakharova, I.A. Vasil’eva, A.A. Chepanova, E. Black, J. Patel, R. Chand, J. Reynisson, I.K. H. Leung, K.P. Volcho, N.F. Salakhutdinov, O.I. Lavrik
    Novel Inhibitors of DNA Repair Enzyme TDP1 Combining Monoterpenoid and Adamantane Fragments
    Anti-Cancer Agents in Medicinal Chemistry, 2019, V. 19 , N 4 , Pp 463-472 doi:10.2174/1871520619666181207094243, IF=2.18
  658. E.S. Mozhaitsev, A.L. Zakharenko, E.V. Suslov, D.V. Korchagina, O.D. Zakharova, I.A. Vasil’eva, A.A. Chepanova, E. Black, J. Patel, R. Chand, J. Reynisson, I.K. H. Leung, K.P. Volcho, N.F. Salakhutdinov, O.I. Lavrik
    Novel Inhibitors of DNA Repair Enzyme TDP1 Combining Monoterpenoid and Adamantane Fragments
    Anti-Cancer Agents in Medicinal Chemistry, 2019, V. 19 , N 4 , Pp 463-472 doi:10.2174/1871520619666181207094243, IF=2.18
  659. E.S. Mozhaitsev, A.L. Zakharenko, E.V. Suslov, D.V. Korchagina, O.D. Zakharova, I.A. Vasil’eva, A.A. Chepanova, E. Black, J. Patel, R. Chand, J. Reynisson, I.K. H. Leung, K.P. Volcho, N.F. Salakhutdinov, O.I. Lavrik
    Novel Inhibitors of DNA Repair Enzyme TDP1 Combining Monoterpenoid and Adamantane Fragments
    Anti-Cancer Agents in Medicinal Chemistry, 2019, V. 19 , N 4 , Pp 463-472 doi:10.2174/1871520619666181207094243, IF=2.18
  660. E.S. Meteleva, Yu.S. Chistyachenko, L.P. Suntsova, M.V. Khvostov, N.E. Polyakov, O. Yu. Selyutina, T.G. Tolstikova, T.S. Frolova, V.A. Mordvinov, A.V. Dushkin, N.Z. Lyakhov
    Disodium salt of glycyrrhizic acid - A novel supramolecular delivery system for anthelmintic drug praziquantel
    Journal of Drug Delivery Science and Technology, V. 50, April 2019, Pp 66-77 doi:10.1016/j.jddst.2019.01.014, IF=2.606
  661. E.S. Meteleva, Yu.S. Chistyachenko, L.P. Suntsova, M.V. Khvostov, N.E. Polyakov, O. Yu. Selyutina, T.G. Tolstikova, T.S. Frolova, V.A. Mordvinov, A.V. Dushkin, N.Z. Lyakhov
    Disodium salt of glycyrrhizic acid - A novel supramolecular delivery system for anthelmintic drug praziquantel
    Journal of Drug Delivery Science and Technology, V. 50, April 2019, Pp 66-77 doi:10.1016/j.jddst.2019.01.014, IF=2.606
  662. E.S. Meteleva, Yu.S. Chistyachenko, L.P. Suntsova, M.V. Khvostov, N.E. Polyakov, O. Yu. Selyutina, T.G. Tolstikova, T.S. Frolova, V.A. Mordvinov, A.V. Dushkin, N.Z. Lyakhov
    Disodium salt of glycyrrhizic acid - A novel supramolecular delivery system for anthelmintic drug praziquantel
    Journal of Drug Delivery Science and Technology, V. 50, April 2019, Pp 66-77 doi:10.1016/j.jddst.2019.01.014, IF=2.606
  663. E.S. Meteleva, Yu.S. Chistyachenko, L.P. Suntsova, M.V. Khvostov, N.E. Polyakov, O. Yu. Selyutina, T.G. Tolstikova, T.S. Frolova, V.A. Mordvinov, A.V. Dushkin, N.Z. Lyakhov
    Disodium salt of glycyrrhizic acid - A novel supramolecular delivery system for anthelmintic drug praziquantel
    Journal of Drug Delivery Science and Technology, V. 50, April 2019, Pp 66-77 doi:10.1016/j.jddst.2019.01.014, IF=2.606
  664. E.S. Meteleva, Yu.S. Chistyachenko, L.P. Suntsova, M.V. Khvostov, N.E. Polyakov, O. Yu. Selyutina, T.G. Tolstikova, T.S. Frolova, V.A. Mordvinov, A.V. Dushkin, N.Z. Lyakhov
    Disodium salt of glycyrrhizic acid - A novel supramolecular delivery system for anthelmintic drug praziquantel
    Journal of Drug Delivery Science and Technology, V. 50, April 2019, Pp 66-77 doi:10.1016/j.jddst.2019.01.014, IF=2.606
  665. E.S. Meteleva, Yu.S. Chistyachenko, L.P. Suntsova, M.V. Khvostov, N.E. Polyakov, O. Yu. Selyutina, T.G. Tolstikova, T.S. Frolova, V.A. Mordvinov, A.V. Dushkin, N.Z. Lyakhov
    Disodium salt of glycyrrhizic acid - A novel supramolecular delivery system for anthelmintic drug praziquantel
    Journal of Drug Delivery Science and Technology, V. 50, April 2019, Pp 66-77 doi:10.1016/j.jddst.2019.01.014, IF=2.606
  666. E.S. Meteleva, Yu.S. Chistyachenko, L.P. Suntsova, M.V. Khvostov, N.E. Polyakov, O. Yu. Selyutina, T.G. Tolstikova, T.S. Frolova, V.A. Mordvinov, A.V. Dushkin, N.Z. Lyakhov
    Disodium salt of glycyrrhizic acid - A novel supramolecular delivery system for anthelmintic drug praziquantel
    Journal of Drug Delivery Science and Technology, V. 50, April 2019, Pp 66-77 doi:10.1016/j.jddst.2019.01.014, IF=2.606
  667. E.S. Meteleva, Yu.S. Chistyachenko, L.P. Suntsova, M.V. Khvostov, N.E. Polyakov, O. Yu. Selyutina, T.G. Tolstikova, T.S. Frolova, V.A. Mordvinov, A.V. Dushkin, N.Z. Lyakhov
    Disodium salt of glycyrrhizic acid - A novel supramolecular delivery system for anthelmintic drug praziquantel
    Journal of Drug Delivery Science and Technology, V. 50, April 2019, Pp 66-77 doi:10.1016/j.jddst.2019.01.014, IF=2.606
  668. V. Romanov, I. Bagryanskaya, N. Gritsan, D. Gorbunov, Yu. Vlasenko, M. Yusubov, E. Zaytseva, D. Luneau, E. Tretyakov
    Assembly of Imidazolyl-Substituted Nitronyl Nitroxides into Ferromagnetically Coupled Chains
    Crystals 2019, 9(4), 219 doi:10.3390/cryst9040219, IF=2.061
  669. V. Romanov, I. Bagryanskaya, N. Gritsan, D. Gorbunov, Yu. Vlasenko, M. Yusubov, E. Zaytseva, D. Luneau, E. Tretyakov
    Assembly of Imidazolyl-Substituted Nitronyl Nitroxides into Ferromagnetically Coupled Chains
    Crystals 2019, 9(4), 219 doi:10.3390/cryst9040219, IF=2.061
  670. V. Romanov, I. Bagryanskaya, N. Gritsan, D. Gorbunov, Yu. Vlasenko, M. Yusubov, E. Zaytseva, D. Luneau, E. Tretyakov
    Assembly of Imidazolyl-Substituted Nitronyl Nitroxides into Ferromagnetically Coupled Chains
    Crystals 2019, 9(4), 219 doi:10.3390/cryst9040219, IF=2.061
  671. V. Romanov, I. Bagryanskaya, N. Gritsan, D. Gorbunov, Yu. Vlasenko, M. Yusubov, E. Zaytseva, D. Luneau, E. Tretyakov
    Assembly of Imidazolyl-Substituted Nitronyl Nitroxides into Ferromagnetically Coupled Chains
    Crystals 2019, 9(4), 219 doi:10.3390/cryst9040219, IF=2.061
  672. V. Romanov, I. Bagryanskaya, N. Gritsan, D. Gorbunov, Yu. Vlasenko, M. Yusubov, E. Zaytseva, D. Luneau, E. Tretyakov
    Assembly of Imidazolyl-Substituted Nitronyl Nitroxides into Ferromagnetically Coupled Chains
    Crystals 2019, 9(4), 219 doi:10.3390/cryst9040219, IF=2.061
  673. A.M. Cheplakova, K.A. Kovalenko, D.G. Samsonenko, A.S. Vinogradov, V.M. Karpov, V.E. Platonov, V.P. Fedin
    Structural diversity of zinc(II) coordination polymers with octafluorobiphenyl-4,4'-dicarboxylate based on mononuclear, paddle wheel and cuboidal units
    CrystEngComm, 2019, V. 21, N 15, Pp 2524-2533 doi:10.1039/C9CE00073A, IF=3.382
  674. A.M. Cheplakova, K.A. Kovalenko, D.G. Samsonenko, A.S. Vinogradov, V.M. Karpov, V.E. Platonov, V.P. Fedin
    Structural diversity of zinc(II) coordination polymers with octafluorobiphenyl-4,4'-dicarboxylate based on mononuclear, paddle wheel and cuboidal units
    CrystEngComm, 2019, V. 21, N 15, Pp 2524-2533 doi:10.1039/C9CE00073A, IF=3.382
  675. A.M. Cheplakova, K.A. Kovalenko, D.G. Samsonenko, A.S. Vinogradov, V.M. Karpov, V.E. Platonov, V.P. Fedin
    Structural diversity of zinc(II) coordination polymers with octafluorobiphenyl-4,4'-dicarboxylate based on mononuclear, paddle wheel and cuboidal units
    CrystEngComm, 2019, V. 21, N 15, Pp 2524-2533 doi:10.1039/C9CE00073A, IF=3.382
  676. A.M. Cheplakova, K.A. Kovalenko, D.G. Samsonenko, A.S. Vinogradov, V.M. Karpov, V.E. Platonov, V.P. Fedin
    Structural diversity of zinc(II) coordination polymers with octafluorobiphenyl-4,4'-dicarboxylate based on mononuclear, paddle wheel and cuboidal units
    CrystEngComm, 2019, V. 21, N 15, Pp 2524-2533 doi:10.1039/C9CE00073A, IF=3.382
  677. K.P. Cheremnykh, V.A. Savelyev, M.A. Pokrovskii, D.S. Baev, T.G. Tolstikova, A.G. Pokrovskii, E.E. Shults
    Design, synthesis, cytotoxicity, and molecular modeling study of 2,4,6-trisubstituted pyrimidines with anthranilate ester moiety
    Medicinal Chemistry Research, 2019, V. 28, N 4, pp 545–558 doi:10.1007/s00044-019-02314-8, IF=1.72
  678. K.P. Cheremnykh, V.A. Savelyev, M.A. Pokrovskii, D.S. Baev, T.G. Tolstikova, A.G. Pokrovskii, E.E. Shults
    Design, synthesis, cytotoxicity, and molecular modeling study of 2,4,6-trisubstituted pyrimidines with anthranilate ester moiety
    Medicinal Chemistry Research, 2019, V. 28, N 4, pp 545–558 doi:10.1007/s00044-019-02314-8, IF=1.72
  679. N.S. Li-Zhulanov, I.V. Il’ina, A. Chicca, P. Schenker, O.S. Patrusheva, E.V. Nazimova, D.V. Korchagina, M. Krasavin, K.P. Volcho, N.F. Salakhutdinov
    Effect of chiral polyhydrochromenes on cannabinoid system
    Medicinal Chemistry Research, 2019, V. 28, N 4, pp 450-464 doi:10.1007/s00044-019-02294-9, IF=1.72
  680. N.S. Li-Zhulanov, I.V. Il’ina, A. Chicca, P. Schenker, O.S. Patrusheva, E.V. Nazimova, D.V. Korchagina, M. Krasavin, K.P. Volcho, N.F. Salakhutdinov
    Effect of chiral polyhydrochromenes on cannabinoid system
    Medicinal Chemistry Research, 2019, V. 28, N 4, pp 450-464 doi:10.1007/s00044-019-02294-9, IF=1.72
  681. N.S. Li-Zhulanov, I.V. Il’ina, A. Chicca, P. Schenker, O.S. Patrusheva, E.V. Nazimova, D.V. Korchagina, M. Krasavin, K.P. Volcho, N.F. Salakhutdinov
    Effect of chiral polyhydrochromenes on cannabinoid system
    Medicinal Chemistry Research, 2019, V. 28, N 4, pp 450-464 doi:10.1007/s00044-019-02294-9, IF=1.72
  682. A.V. Shernyukov, A.M. Genaev, G.E. Salnikov, V.G. Shubin, H.S. Rzepa
    Elevated reaction order of 1,3,5-tri-tert-butylbenzene bromination as evidence of a clustered polybromide transition state: a combined kinetic and computational study
    Org. Biomol. Chem., 2019, V. 17, N 15, pp 3781-3789 doi:10.1039/C9OB00607A, IF=3.49
  683. Yu.N. Antonenko, L.S. Khailova, T.I. Rokitskaya, E.S. Nosikova, P.A. Nazarov, O.A. Luzina, N.F. Salakhutdinov, E.A. Kotova
    Mechanism of action of an old antibiotic revisited: Role of calcium ions in protonophoric activity of usnic acid
    Biochimica et Biophysica Acta (BBA) - Bioenergetics, V. 1860, N 4, 1 April 2019, Pp 310-316 doi:10.1016/j.bbabio.2019.01.005, IF=4.441
  684. Yu.N. Antonenko, L.S. Khailova, T.I. Rokitskaya, E.S. Nosikova, P.A. Nazarov, O.A. Luzina, N.F. Salakhutdinov, E.A. Kotova
    Mechanism of action of an old antibiotic revisited: Role of calcium ions in protonophoric activity of usnic acid
    Biochimica et Biophysica Acta (BBA) - Bioenergetics, V. 1860, N 4, 1 April 2019, Pp 310-316 doi:10.1016/j.bbabio.2019.01.005, IF=4.441
  685. Yu.N. Antonenko, L.S. Khailova, T.I. Rokitskaya, E.S. Nosikova, P.A. Nazarov, O.A. Luzina, N.F. Salakhutdinov, E.A. Kotova
    Mechanism of action of an old antibiotic revisited: Role of calcium ions in protonophoric activity of usnic acid
    Biochimica et Biophysica Acta (BBA) - Bioenergetics, V. 1860, N 4, 1 April 2019, Pp 310-316 doi:10.1016/j.bbabio.2019.01.005, IF=4.441
  686. Yu.N. Antonenko, L.S. Khailova, T.I. Rokitskaya, E.S. Nosikova, P.A. Nazarov, O.A. Luzina, N.F. Salakhutdinov, E.A. Kotova
    Mechanism of action of an old antibiotic revisited: Role of calcium ions in protonophoric activity of usnic acid
    Biochimica et Biophysica Acta (BBA) - Bioenergetics, V. 1860, N 4, 1 April 2019, Pp 310-316 doi:10.1016/j.bbabio.2019.01.005, IF=4.441
  687. Yu.N. Antonenko, L.S. Khailova, T.I. Rokitskaya, E.S. Nosikova, P.A. Nazarov, O.A. Luzina, N.F. Salakhutdinov, E.A. Kotova
    Mechanism of action of an old antibiotic revisited: Role of calcium ions in protonophoric activity of usnic acid
    Biochimica et Biophysica Acta (BBA) - Bioenergetics, V. 1860, N 4, 1 April 2019, Pp 310-316 doi:10.1016/j.bbabio.2019.01.005, IF=4.441
  688. Yu.N. Antonenko, L.S. Khailova, T.I. Rokitskaya, E.S. Nosikova, P.A. Nazarov, O.A. Luzina, N.F. Salakhutdinov, E.A. Kotova
    Mechanism of action of an old antibiotic revisited: Role of calcium ions in protonophoric activity of usnic acid
    Biochimica et Biophysica Acta (BBA) - Bioenergetics, V. 1860, N 4, 1 April 2019, Pp 310-316 doi:10.1016/j.bbabio.2019.01.005, IF=4.441
  689. Yu.N. Antonenko, L.S. Khailova, T.I. Rokitskaya, E.S. Nosikova, P.A. Nazarov, O.A. Luzina, N.F. Salakhutdinov, E.A. Kotova
    Mechanism of action of an old antibiotic revisited: Role of calcium ions in protonophoric activity of usnic acid
    Biochimica et Biophysica Acta (BBA) - Bioenergetics, V. 1860, N 4, 1 April 2019, Pp 310-316 doi:10.1016/j.bbabio.2019.01.005, IF=4.441
  690. Yu.N. Antonenko, L.S. Khailova, T.I. Rokitskaya, E.S. Nosikova, P.A. Nazarov, O.A. Luzina, N.F. Salakhutdinov, E.A. Kotova
    Mechanism of action of an old antibiotic revisited: Role of calcium ions in protonophoric activity of usnic acid
    Biochimica et Biophysica Acta (BBA) - Bioenergetics, V. 1860, N 4, 1 April 2019, Pp 310-316 doi:10.1016/j.bbabio.2019.01.005, IF=4.441
  691. Yu.N. Antonenko, L.S. Khailova, T.I. Rokitskaya, E.S. Nosikova, P.A. Nazarov, O.A. Luzina, N.F. Salakhutdinov, E.A. Kotova
    Mechanism of action of an old antibiotic revisited: Role of calcium ions in protonophoric activity of usnic acid
    Biochimica et Biophysica Acta (BBA) - Bioenergetics, V. 1860, N 4, 1 April 2019, Pp 310-316 doi:10.1016/j.bbabio.2019.01.005, IF=4.441
  692. Yu.N. Antonenko, L.S. Khailova, T.I. Rokitskaya, E.S. Nosikova, P.A. Nazarov, O.A. Luzina, N.F. Salakhutdinov, E.A. Kotova
    Mechanism of action of an old antibiotic revisited: Role of calcium ions in protonophoric activity of usnic acid
    Biochimica et Biophysica Acta (BBA) - Bioenergetics, V. 1860, N 4, 1 April 2019, Pp 310-316 doi:10.1016/j.bbabio.2019.01.005, IF=4.441
  693. Yu.N. Antonenko, L.S. Khailova, T.I. Rokitskaya, E.S. Nosikova, P.A. Nazarov, O.A. Luzina, N.F. Salakhutdinov, E.A. Kotova
    Mechanism of action of an old antibiotic revisited: Role of calcium ions in protonophoric activity of usnic acid
    Biochimica et Biophysica Acta (BBA) - Bioenergetics, V. 1860, N 4, 1 April 2019, Pp 310-316 doi:10.1016/j.bbabio.2019.01.005, IF=4.441
  694. Yu.N. Antonenko, L.S. Khailova, T.I. Rokitskaya, E.S. Nosikova, P.A. Nazarov, O.A. Luzina, N.F. Salakhutdinov, E.A. Kotova
    Mechanism of action of an old antibiotic revisited: Role of calcium ions in protonophoric activity of usnic acid
    Biochimica et Biophysica Acta (BBA) - Bioenergetics, V. 1860, N 4, 1 April 2019, Pp 310-316 doi:10.1016/j.bbabio.2019.01.005, IF=4.441
  695. J. Guo, Z. Wang, W. Zhang, I.I. Oleynik, A. Vignesh, I.V. Oleynik, X. Hu, Ya. Sun, Wen-Hua. Sun
    Highly Linear Polyethylenes Achieved Using Thermo-Stable and Efficient Cobalt Precatalysts Bearing Carbocyclic-Fused NNN-Pincer Ligand
    Molecules 2019, 24(6), 1176 doi:10.3390/molecules24061176, IF=3.06
  696. J. Guo, Z. Wang, W. Zhang, I.I. Oleynik, A. Vignesh, I.V. Oleynik, X. Hu, Ya. Sun, Wen-Hua. Sun
    Highly Linear Polyethylenes Achieved Using Thermo-Stable and Efficient Cobalt Precatalysts Bearing Carbocyclic-Fused NNN-Pincer Ligand
    Molecules 2019, 24(6), 1176 doi:10.3390/molecules24061176, IF=3.06
  697. J. Guo, Z. Wang, W. Zhang, I.I. Oleynik, A. Vignesh, I.V. Oleynik, X. Hu, Ya. Sun, Wen-Hua. Sun
    Highly Linear Polyethylenes Achieved Using Thermo-Stable and Efficient Cobalt Precatalysts Bearing Carbocyclic-Fused NNN-Pincer Ligand
    Molecules 2019, 24(6), 1176 doi:10.3390/molecules24061176, IF=3.06
  698. J. Guo, Z. Wang, W. Zhang, I.I. Oleynik, A. Vignesh, I.V. Oleynik, X. Hu, Ya. Sun, Wen-Hua. Sun
    Highly Linear Polyethylenes Achieved Using Thermo-Stable and Efficient Cobalt Precatalysts Bearing Carbocyclic-Fused NNN-Pincer Ligand
    Molecules 2019, 24(6), 1176 doi:10.3390/molecules24061176, IF=3.06
  699. J. Guo, Z. Wang, W. Zhang, I.I. Oleynik, A. Vignesh, I.V. Oleynik, X. Hu, Ya. Sun, Wen-Hua. Sun
    Highly Linear Polyethylenes Achieved Using Thermo-Stable and Efficient Cobalt Precatalysts Bearing Carbocyclic-Fused NNN-Pincer Ligand
    Molecules 2019, 24(6), 1176 doi:10.3390/molecules24061176, IF=3.06
  700. J. Guo, Z. Wang, W. Zhang, I.I. Oleynik, A. Vignesh, I.V. Oleynik, X. Hu, Ya. Sun, Wen-Hua. Sun
    Highly Linear Polyethylenes Achieved Using Thermo-Stable and Efficient Cobalt Precatalysts Bearing Carbocyclic-Fused NNN-Pincer Ligand
    Molecules 2019, 24(6), 1176 doi:10.3390/molecules24061176, IF=3.06
  701. J. Guo, Z. Wang, W. Zhang, I.I. Oleynik, A. Vignesh, I.V. Oleynik, X. Hu, Ya. Sun, Wen-Hua. Sun
    Highly Linear Polyethylenes Achieved Using Thermo-Stable and Efficient Cobalt Precatalysts Bearing Carbocyclic-Fused NNN-Pincer Ligand
    Molecules 2019, 24(6), 1176 doi:10.3390/molecules24061176, IF=3.06
  702. Zh. Zhu, G.E. Salnikov, K.Yu. Koltunov
    Cascade reaction of 2,3-naphthalenediol with benzene in the presence of aluminum halides
    Tetrahedron Letters, 2019, V. 60, N 12, Pp 857-859 doi:10.1016/j.tetlet.2019.02.026, IF=2.259
  703. Zh. Zhu, G.E. Salnikov, K.Yu. Koltunov
    Cascade reaction of 2,3-naphthalenediol with benzene in the presence of aluminum halides
    Tetrahedron Letters, 2019, V. 60, N 12, Pp 857-859 doi:10.1016/j.tetlet.2019.02.026, IF=2.259
  704. B. Epel, M.C. Maggio, E.D. Barth, R.C. Miller, C.A. Pelizzari, M. Krzykawska-Serda, S.V. Sundramoorthy, B. Aydogan, R.R. Weichselbaum, V.M. Tormyshev, H.J. Halpern
    Oxygen-guided radiation therapy
    International Journal of Radiation Oncology Biology Physics, 2019, V. 103, N 4, Pp 977-984 doi:10.1016/j.ijrobp.2018.10.041, IF=6.203
  705. B. Epel, M.C. Maggio, E.D. Barth, R.C. Miller, C.A. Pelizzari, M. Krzykawska-Serda, S.V. Sundramoorthy, B. Aydogan, R.R. Weichselbaum, V.M. Tormyshev, H.J. Halpern
    Oxygen-guided radiation therapy
    International Journal of Radiation Oncology Biology Physics, 2019, V. 103, N 4, Pp 977-984 doi:10.1016/j.ijrobp.2018.10.041, IF=6.203
  706. B. Epel, M.C. Maggio, E.D. Barth, R.C. Miller, C.A. Pelizzari, M. Krzykawska-Serda, S.V. Sundramoorthy, B. Aydogan, R.R. Weichselbaum, V.M. Tormyshev, H.J. Halpern
    Oxygen-guided radiation therapy
    International Journal of Radiation Oncology Biology Physics, 2019, V. 103, N 4, Pp 977-984 doi:10.1016/j.ijrobp.2018.10.041, IF=6.203
  707. B. Epel, M.C. Maggio, E.D. Barth, R.C. Miller, C.A. Pelizzari, M. Krzykawska-Serda, S.V. Sundramoorthy, B. Aydogan, R.R. Weichselbaum, V.M. Tormyshev, H.J. Halpern
    Oxygen-guided radiation therapy
    International Journal of Radiation Oncology Biology Physics, 2019, V. 103, N 4, Pp 977-984 doi:10.1016/j.ijrobp.2018.10.041, IF=6.203
  708. B. Epel, M.C. Maggio, E.D. Barth, R.C. Miller, C.A. Pelizzari, M. Krzykawska-Serda, S.V. Sundramoorthy, B. Aydogan, R.R. Weichselbaum, V.M. Tormyshev, H.J. Halpern
    Oxygen-guided radiation therapy
    International Journal of Radiation Oncology Biology Physics, 2019, V. 103, N 4, Pp 977-984 doi:10.1016/j.ijrobp.2018.10.041, IF=6.203
  709. B. Epel, M.C. Maggio, E.D. Barth, R.C. Miller, C.A. Pelizzari, M. Krzykawska-Serda, S.V. Sundramoorthy, B. Aydogan, R.R. Weichselbaum, V.M. Tormyshev, H.J. Halpern
    Oxygen-guided radiation therapy
    International Journal of Radiation Oncology Biology Physics, 2019, V. 103, N 4, Pp 977-984 doi:10.1016/j.ijrobp.2018.10.041, IF=6.203
  710. B. Epel, M.C. Maggio, E.D. Barth, R.C. Miller, C.A. Pelizzari, M. Krzykawska-Serda, S.V. Sundramoorthy, B. Aydogan, R.R. Weichselbaum, V.M. Tormyshev, H.J. Halpern
    Oxygen-guided radiation therapy
    International Journal of Radiation Oncology Biology Physics, 2019, V. 103, N 4, Pp 977-984 doi:10.1016/j.ijrobp.2018.10.041, IF=6.203
  711. B. Epel, M.C. Maggio, E.D. Barth, R.C. Miller, C.A. Pelizzari, M. Krzykawska-Serda, S.V. Sundramoorthy, B. Aydogan, R.R. Weichselbaum, V.M. Tormyshev, H.J. Halpern
    Oxygen-guided radiation therapy
    International Journal of Radiation Oncology Biology Physics, 2019, V. 103, N 4, Pp 977-984 doi:10.1016/j.ijrobp.2018.10.041, IF=6.203
  712. B. Epel, M.C. Maggio, E.D. Barth, R.C. Miller, C.A. Pelizzari, M. Krzykawska-Serda, S.V. Sundramoorthy, B. Aydogan, R.R. Weichselbaum, V.M. Tormyshev, H.J. Halpern
    Oxygen-guided radiation therapy
    International Journal of Radiation Oncology Biology Physics, 2019, V. 103, N 4, Pp 977-984 doi:10.1016/j.ijrobp.2018.10.041, IF=6.203
  713. B. Epel, M.C. Maggio, E.D. Barth, R.C. Miller, C.A. Pelizzari, M. Krzykawska-Serda, S.V. Sundramoorthy, B. Aydogan, R.R. Weichselbaum, V.M. Tormyshev, H.J. Halpern
    Oxygen-guided radiation therapy
    International Journal of Radiation Oncology Biology Physics, 2019, V. 103, N 4, Pp 977-984 doi:10.1016/j.ijrobp.2018.10.041, IF=6.203
  714. A. M. Agafontsev, T. Shumilova, T.Ruffer, H. Lang, E.A. Kataev
    Anthracene-based cyclophanes with selective fluorescent responses for TTP and GTP: insights into recognition and sensing mechanisms
    Chemistry - A European Journal, 2019, V. 25, N 14, Pp 3541-3549 doi:10.1002/chem.201806130, IF=5.16
  715. A. M. Agafontsev, T. Shumilova, T.Ruffer, H. Lang, E.A. Kataev
    Anthracene-based cyclophanes with selective fluorescent responses for TTP and GTP: insights into recognition and sensing mechanisms
    Chemistry - A European Journal, 2019, V. 25, N 14, Pp 3541-3549 doi:10.1002/chem.201806130, IF=5.16
  716. A. M. Agafontsev, T. Shumilova, T.Ruffer, H. Lang, E.A. Kataev
    Anthracene-based cyclophanes with selective fluorescent responses for TTP and GTP: insights into recognition and sensing mechanisms
    Chemistry - A European Journal, 2019, V. 25, N 14, Pp 3541-3549 doi:10.1002/chem.201806130, IF=5.16
  717. A. M. Agafontsev, T. Shumilova, T.Ruffer, H. Lang, E.A. Kataev
    Anthracene-based cyclophanes with selective fluorescent responses for TTP and GTP: insights into recognition and sensing mechanisms
    Chemistry - A European Journal, 2019, V. 25, N 14, Pp 3541-3549 doi:10.1002/chem.201806130, IF=5.16
  718. D. V. Telegina, N.G. Kolosova, O. S. Kozhevnikova
    Immunohistochemical localization of NGF, BDNF, and their receptors in a normal and AMD-like rat retina
    BMC Medical Genomics, March 2019, 12(Supp. 2):48 (From 11th International Multiconference “Bioinformatics of Genome Regulation and StructureSystems Biology” - BGRSSB-2018 Novosibirsk, Russia. 20-25 August 2018) doi:10.1186/s12920-019-0493-8, IF=2.568
  719. D. V. Telegina, N.G. Kolosova, O. S. Kozhevnikova
    Immunohistochemical localization of NGF, BDNF, and their receptors in a normal and AMD-like rat retina
    BMC Medical Genomics, March 2019, 12(Supp. 2):48 (From 11th International Multiconference “Bioinformatics of Genome Regulation and StructureSystems Biology” - BGRSSB-2018 Novosibirsk, Russia. 20-25 August 2018) doi:10.1186/s12920-019-0493-8, IF=2.568
  720. Ju.A. Sidorova, K.P. Volcho, N.F. Salakhutdinov
    Neuroregeneration in Parkinson’s Disease: From Proteins to Small Molecules
    Current Neuropharmacology, 2019,V. 17 , N 3 , Pp. 268 - 287 doi:10.2174/1570159X16666180905094123, IF=4.568
  721. V. Morozov, E. Tretyakov
    Spin polarization in graphene nanoribbons functionalized with nitroxide
    Journal of Molecular Modeling, 2019, V.25, N 3, Article 58 doi:10.1007/s00894-019-3944-4, IF=1.335
  722. A.V. Artem'ev, E.P. Doronina, M.I. Rakhmanova, O.A. Tarasova, I.Yu. Bagryanskaya, N.A. Nedolya
    Chemoselective mechanochemical route toward a bright TADF-emitting CuI-based coordination polymer
    Inorg. Chem. Front., 2019, V. 6, N 3, Pp 671-679 doi:10.1039/C8QI01302K, IF=5.934
  723. A.V. Artem'ev, E.P. Doronina, M.I. Rakhmanova, O.A. Tarasova, I.Yu. Bagryanskaya, N.A. Nedolya
    Chemoselective mechanochemical route toward a bright TADF-emitting CuI-based coordination polymer
    Inorg. Chem. Front., 2019, V. 6, N 3, Pp 671-679 doi:10.1039/C8QI01302K, IF=5.934
  724. A.V. Artem'ev, E.P. Doronina, M.I. Rakhmanova, O.A. Tarasova, I.Yu. Bagryanskaya, N.A. Nedolya
    Chemoselective mechanochemical route toward a bright TADF-emitting CuI-based coordination polymer
    Inorg. Chem. Front., 2019, V. 6, N 3, Pp 671-679 doi:10.1039/C8QI01302K, IF=5.934
  725. A.V. Artem'ev, E.P. Doronina, M.I. Rakhmanova, O.A. Tarasova, I.Yu. Bagryanskaya, N.A. Nedolya
    Chemoselective mechanochemical route toward a bright TADF-emitting CuI-based coordination polymer
    Inorg. Chem. Front., 2019, V. 6, N 3, Pp 671-679 doi:10.1039/C8QI01302K, IF=5.934
  726. A.V. Artem'ev, E.P. Doronina, M.I. Rakhmanova, O.A. Tarasova, I.Yu. Bagryanskaya, N.A. Nedolya
    Chemoselective mechanochemical route toward a bright TADF-emitting CuI-based coordination polymer
    Inorg. Chem. Front., 2019, V. 6, N 3, Pp 671-679 doi:10.1039/C8QI01302K, IF=5.934
  727. V.E. Evtushok, A.Yu. Vorob'ev
    Synthesis of pyrazolo- and [1,2,4]triazolo-[1,5-а]quinolin-9-ols by cycloaddition to 8-hydroxyquinoline N-imide
    Chemistry of Heterocyclic Compounds, 2019, V. 55, N 3, pp 229-234 doi:10.1007/s10593-019-02446-0, IF=1.492
  728. П.А. Никитина, Н.И. Бормотов, Л.Н. Шишкина, А.Я. Тихонов, В.П. Перевалов
    Синтез и противовирусная активность в отношении вируса осповакцины 1-гидрокси-2-(2-гидроксифенил)имидазолов
    Известия Академии наук. Серия химическая. 2019. № 3. С. 634-637. (Synthesis and antiviral activity of 1-hydroxy-2-(2-hydroxyphenyl)imidazoles against vaccinia virus/ P.A. Nikitina, N.I. Bormotov, L.N. Shishkina, A.Ya. Tikhonov, V.P. Perevalov// Russian Chemical Bulletin, 2019, V. 68, N 3, pp 634-637 doi:10.1007/s11172-019-2467-6), IF=1.014
  729. П.А. Никитина, Н.И. Бормотов, Л.Н. Шишкина, А.Я. Тихонов, В.П. Перевалов
    Синтез и противовирусная активность в отношении вируса осповакцины 1-гидрокси-2-(2-гидроксифенил)имидазолов
    Известия Академии наук. Серия химическая. 2019. № 3. С. 634-637. (Synthesis and antiviral activity of 1-hydroxy-2-(2-hydroxyphenyl)imidazoles against vaccinia virus/ P.A. Nikitina, N.I. Bormotov, L.N. Shishkina, A.Ya. Tikhonov, V.P. Perevalov// Russian Chemical Bulletin, 2019, V. 68, N 3, pp 634-637 doi:10.1007/s11172-019-2467-6), IF=1.014
  730. П.А. Никитина, Н.И. Бормотов, Л.Н. Шишкина, А.Я. Тихонов, В.П. Перевалов
    Синтез и противовирусная активность в отношении вируса осповакцины 1-гидрокси-2-(2-гидроксифенил)имидазолов
    Известия Академии наук. Серия химическая. 2019. № 3. С. 634-637. (Synthesis and antiviral activity of 1-hydroxy-2-(2-hydroxyphenyl)imidazoles against vaccinia virus/ P.A. Nikitina, N.I. Bormotov, L.N. Shishkina, A.Ya. Tikhonov, V.P. Perevalov// Russian Chemical Bulletin, 2019, V. 68, N 3, pp 634-637 doi:10.1007/s11172-019-2467-6), IF=1.014
  731. П.А. Никитина, Н.И. Бормотов, Л.Н. Шишкина, А.Я. Тихонов, В.П. Перевалов
    Синтез и противовирусная активность в отношении вируса осповакцины 1-гидрокси-2-(2-гидроксифенил)имидазолов
    Известия Академии наук. Серия химическая. 2019. № 3. С. 634-637. (Synthesis and antiviral activity of 1-hydroxy-2-(2-hydroxyphenyl)imidazoles against vaccinia virus/ P.A. Nikitina, N.I. Bormotov, L.N. Shishkina, A.Ya. Tikhonov, V.P. Perevalov// Russian Chemical Bulletin, 2019, V. 68, N 3, pp 634-637 doi:10.1007/s11172-019-2467-6), IF=1.014
  732. И.В. Береговая, Л.Н. Щеголева, В.И. Боровков, В.М. Карпов
    Анион-радикал перфторбензоциклобутена - структурно нежесткая частица
    Журнал структурной химии. 2019. Т. 60. № 3. С. 392-395. DOI:10.26902/JSC_id39468 (Perfluorobenzocyclobutene radical anion: A structurally flexible particle/ I.V. Beregovaya, L.N. Shchegoleva, V.I. Borovkov, V.M. Karpov// Journal of Structural Chemistry, 2019, V. 60, N 3, pp 373-376 doi:10.1134/S0022476619030041), IF=0.541
  733. Д.В. Трухин, О.Ю. Рогожникова, Т.И. Троицкая, А.А. Кужелев, Е.В. Амосов, H.J. Halpern, В.В. Коваль, В.М. Тормышев
    Новые спиновые зонды: три-и гексакатионные производные стабильных радикалов трис(тетратиаарил)метильного ряда
    Журнал органической химии. 2019. Т. 55. № 3. С. 347-353. DOI:10.1134/S0514749219030030 (New Spin Probes: Triand Hexacationic Derivatives of Persistent Tris(tetrathioaryl)methyl Radicals/ D.V. Trukhin, O.Yu.Rogozhnikova, T.I. Troitskaya, A.A, Kuzhelev, E.V. Amosov,H.J. Halpernc, V.V. Koval'b, V.M. Tormyshev// Russian Journal of Organic Chemistry, 2019, V. 55, N 3, pp 296-301 doi:10.1134/S1070428019030035), IF=0.751
  734. Д.В. Трухин, О.Ю. Рогожникова, Т.И. Троицкая, А.А. Кужелев, Е.В. Амосов, H.J. Halpern, В.В. Коваль, В.М. Тормышев
    Новые спиновые зонды: три-и гексакатионные производные стабильных радикалов трис(тетратиаарил)метильного ряда
    Журнал органической химии. 2019. Т. 55. № 3. С. 347-353. DOI:10.1134/S0514749219030030 (New Spin Probes: Triand Hexacationic Derivatives of Persistent Tris(tetrathioaryl)methyl Radicals/ D.V. Trukhin, O.Yu.Rogozhnikova, T.I. Troitskaya, A.A, Kuzhelev, E.V. Amosov,H.J. Halpernc, V.V. Koval'b, V.M. Tormyshev// Russian Journal of Organic Chemistry, 2019, V. 55, N 3, pp 296-301 doi:10.1134/S1070428019030035), IF=0.751
  735. D.O. Prima, A.G. Makarov, I.Yu. Bagryanskaya, A.E. Kolesnikov, L.V. Zargarova, D.S. Baev, T.F. Eliseeva, L.V. Politanskaya, A.Yu. Makarov, Yu.G. Slizhov, A. V. Zibarev
    Fluorine-Containing n-6 and Angulaand Linear n-6-n' (n, n' = 5, 6, 7) Diaza-Heterocyclic Scaffolds Assembled on Benzene Core in Unified Way
    ChemistrySelect, 2019, V. 4, N 8, Pp 2383-2386 doi:10.1002/slct.201803970, IF=1.716
  736. D.O. Prima, A.G. Makarov, I.Yu. Bagryanskaya, A.E. Kolesnikov, L.V. Zargarova, D.S. Baev, T.F. Eliseeva, L.V. Politanskaya, A.Yu. Makarov, Yu.G. Slizhov, A. V. Zibarev
    Fluorine-Containing n-6 and Angulaand Linear n-6-n' (n, n' = 5, 6, 7) Diaza-Heterocyclic Scaffolds Assembled on Benzene Core in Unified Way
    ChemistrySelect, 2019, V. 4, N 8, Pp 2383-2386 doi:10.1002/slct.201803970, IF=1.716
  737. D.O. Prima, A.G. Makarov, I.Yu. Bagryanskaya, A.E. Kolesnikov, L.V. Zargarova, D.S. Baev, T.F. Eliseeva, L.V. Politanskaya, A.Yu. Makarov, Yu.G. Slizhov, A. V. Zibarev
    Fluorine-Containing n-6 and Angulaand Linear n-6-n' (n, n' = 5, 6, 7) Diaza-Heterocyclic Scaffolds Assembled on Benzene Core in Unified Way
    ChemistrySelect, 2019, V. 4, N 8, Pp 2383-2386 doi:10.1002/slct.201803970, IF=1.716
  738. M. Edeleva, G. Audran, S. Marque, E. Bagryanskaya
    Smart Control of Nitroxide-Mediated Polymerization Initiators’ Reactivity by pH, Complexation with Metals, and Chemical Transformations
    Materials, 2019, V. 12, N 5, Pp. 688-707 doi:10.3390/ma12050688, IF=2.972
  739. M. Edeleva, G. Audran, S. Marque, E. Bagryanskaya
    Smart Control of Nitroxide-Mediated Polymerization Initiators’ Reactivity by pH, Complexation with Metals, and Chemical Transformations
    Materials, 2019, V. 12, N 5, Pp. 688-707 doi:10.3390/ma12050688, IF=2.972
  740. A.M. Agafontsev, A. Ravi, T.A. Shumilova, A. Oshchepkov, E.A. Kataev
    Molecular receptors for recognition and sensing of nucleotides
    Chemistry - A European Journal, 2019, V. 25, N 11, Pp 2684-2694 doi:10.1002/chem.201802978, IF=5.16
  741. A.M. Agafontsev, A. Ravi, T.A. Shumilova, A. Oshchepkov, E.A. Kataev
    Molecular receptors for recognition and sensing of nucleotides
    Chemistry - A European Journal, 2019, V. 25, N 11, Pp 2684-2694 doi:10.1002/chem.201802978, IF=5.16
  742. A.M. Agafontsev, A. Ravi, T.A. Shumilova, A. Oshchepkov, E.A. Kataev
    Molecular receptors for recognition and sensing of nucleotides
    Chemistry - A European Journal, 2019, V. 25, N 11, Pp 2684-2694 doi:10.1002/chem.201802978, IF=5.16
  743. A.M. Agafontsev, A. Ravi, T.A. Shumilova, A. Oshchepkov, E.A. Kataev
    Molecular receptors for recognition and sensing of nucleotides
    Chemistry - A European Journal, 2019, V. 25, N 11, Pp 2684-2694 doi:10.1002/chem.201802978, IF=5.16
  744. A.V. Artem.ev, E.A. Pritchina, M.I. Rakhmanova, N.P. Gritsan, I.Yu. Bagryanskaya, S.F. Malysheva, N.A. Belogorlova
    Alkyl-dependent self-assembly of the first red-emitting zwitterionic {Cu4I6} clusters from [alkyl-P(2-Py)3]+ salts and CuI: when size matters
    Dalton Trans., 2019, V. 48, N 7, Pp 2328-2337 doi:10.1039/C8DT04328K, IF=4.052
  745. A.V. Artem.ev, E.A. Pritchina, M.I. Rakhmanova, N.P. Gritsan, I.Yu. Bagryanskaya, S.F. Malysheva, N.A. Belogorlova
    Alkyl-dependent self-assembly of the first red-emitting zwitterionic {Cu4I6} clusters from [alkyl-P(2-Py)3]+ salts and CuI: when size matters
    Dalton Trans., 2019, V. 48, N 7, Pp 2328-2337 doi:10.1039/C8DT04328K, IF=4.052
  746. A.V. Artem.ev, E.A. Pritchina, M.I. Rakhmanova, N.P. Gritsan, I.Yu. Bagryanskaya, S.F. Malysheva, N.A. Belogorlova
    Alkyl-dependent self-assembly of the first red-emitting zwitterionic {Cu4I6} clusters from [alkyl-P(2-Py)3]+ salts and CuI: when size matters
    Dalton Trans., 2019, V. 48, N 7, Pp 2328-2337 doi:10.1039/C8DT04328K, IF=4.052
  747. A.V. Artem.ev, E.A. Pritchina, M.I. Rakhmanova, N.P. Gritsan, I.Yu. Bagryanskaya, S.F. Malysheva, N.A. Belogorlova
    Alkyl-dependent self-assembly of the first red-emitting zwitterionic {Cu4I6} clusters from [alkyl-P(2-Py)3]+ salts and CuI: when size matters
    Dalton Trans., 2019, V. 48, N 7, Pp 2328-2337 doi:10.1039/C8DT04328K, IF=4.052
  748. A.V. Artem.ev, E.A. Pritchina, M.I. Rakhmanova, N.P. Gritsan, I.Yu. Bagryanskaya, S.F. Malysheva, N.A. Belogorlova
    Alkyl-dependent self-assembly of the first red-emitting zwitterionic {Cu4I6} clusters from [alkyl-P(2-Py)3]+ salts and CuI: when size matters
    Dalton Trans., 2019, V. 48, N 7, Pp 2328-2337 doi:10.1039/C8DT04328K, IF=4.052
  749. A.V. Artem.ev, E.A. Pritchina, M.I. Rakhmanova, N.P. Gritsan, I.Yu. Bagryanskaya, S.F. Malysheva, N.A. Belogorlova
    Alkyl-dependent self-assembly of the first red-emitting zwitterionic {Cu4I6} clusters from [alkyl-P(2-Py)3]+ salts and CuI: when size matters
    Dalton Trans., 2019, V. 48, N 7, Pp 2328-2337 doi:10.1039/C8DT04328K, IF=4.052
  750. A.Kulikov,N.Sinyakova,E.Kulikova,N.Evglevsky,I.Kolotygin,K.Volcho,N.Salakhutdinov,V.Kulikov,A.Romaschenko,M.Moshkin
    Effects of acute and chronic treatment of STEP inhibitor, TC-2153, on the nervous system and behaviour of zebrafish (Danio rerio)
    European Neuropsychopharmacology, V. 29, Supplement 1, 2019, Pp S198-S199, P.216 doi:10.1016/j.euroneuro.2018.11.330, IF=4.468
  751. A.Kulikov,N.Sinyakova,E.Kulikova,N.Evglevsky,I.Kolotygin,K.Volcho,N.Salakhutdinov,V.Kulikov,A.Romaschenko,M.Moshkin
    Effects of acute and chronic treatment of STEP inhibitor, TC-2153, on the nervous system and behaviour of zebrafish (Danio rerio)
    European Neuropsychopharmacology, V. 29, Supplement 1, 2019, Pp S198-S199, P.216 doi:10.1016/j.euroneuro.2018.11.330, IF=4.468
  752. A.Kulikov,N.Sinyakova,E.Kulikova,N.Evglevsky,I.Kolotygin,K.Volcho,N.Salakhutdinov,V.Kulikov,A.Romaschenko,M.Moshkin
    Effects of acute and chronic treatment of STEP inhibitor, TC-2153, on the nervous system and behaviour of zebrafish (Danio rerio)
    European Neuropsychopharmacology, V. 29, Supplement 1, 2019, Pp S198-S199, P.216 doi:10.1016/j.euroneuro.2018.11.330, IF=4.468
  753. A.Kulikov,N.Sinyakova,E.Kulikova,N.Evglevsky,I.Kolotygin,K.Volcho,N.Salakhutdinov,V.Kulikov,A.Romaschenko,M.Moshkin
    Effects of acute and chronic treatment of STEP inhibitor, TC-2153, on the nervous system and behaviour of zebrafish (Danio rerio)
    European Neuropsychopharmacology, V. 29, Supplement 1, 2019, Pp S198-S199, P.216 doi:10.1016/j.euroneuro.2018.11.330, IF=4.468
  754. A.Kulikov,N.Sinyakova,E.Kulikova,N.Evglevsky,I.Kolotygin,K.Volcho,N.Salakhutdinov,V.Kulikov,A.Romaschenko,M.Moshkin
    Effects of acute and chronic treatment of STEP inhibitor, TC-2153, on the nervous system and behaviour of zebrafish (Danio rerio)
    European Neuropsychopharmacology, V. 29, Supplement 1, 2019, Pp S198-S199, P.216 doi:10.1016/j.euroneuro.2018.11.330, IF=4.468
  755. A.Kulikov,N.Sinyakova,E.Kulikova,N.Evglevsky,I.Kolotygin,K.Volcho,N.Salakhutdinov,V.Kulikov,A.Romaschenko,M.Moshkin
    Effects of acute and chronic treatment of STEP inhibitor, TC-2153, on the nervous system and behaviour of zebrafish (Danio rerio)
    European Neuropsychopharmacology, V. 29, Supplement 1, 2019, Pp S198-S199, P.216 doi:10.1016/j.euroneuro.2018.11.330, IF=4.468
  756. A.Kulikov,N.Sinyakova,E.Kulikova,N.Evglevsky,I.Kolotygin,K.Volcho,N.Salakhutdinov,V.Kulikov,A.Romaschenko,M.Moshkin
    Effects of acute and chronic treatment of STEP inhibitor, TC-2153, on the nervous system and behaviour of zebrafish (Danio rerio)
    European Neuropsychopharmacology, V. 29, Supplement 1, 2019, Pp S198-S199, P.216 doi:10.1016/j.euroneuro.2018.11.330, IF=4.468
  757. A.Kulikov,N.Sinyakova,E.Kulikova,N.Evglevsky,I.Kolotygin,K.Volcho,N.Salakhutdinov,V.Kulikov,A.Romaschenko,M.Moshkin
    Effects of acute and chronic treatment of STEP inhibitor, TC-2153, on the nervous system and behaviour of zebrafish (Danio rerio)
    European Neuropsychopharmacology, V. 29, Supplement 1, 2019, Pp S198-S199, P.216 doi:10.1016/j.euroneuro.2018.11.330, IF=4.468
  758. V.Yu. Shuvalovv, A.S. Rupp, A.S. Fisyuk, A.K. Kuratova, A.A. Nefedov, G.P. Sagitullina
    Synthesis and Optical Properties of Alkaloid Quindoline, Its Structural Analogues and Substituted δ-Carbolines
    ChemistrySelect, 2019, V. 4, N 5, Pp 1696-1699 doi:10.1002/slct.201803515, IF=1.716
  759. V.Yu. Shuvalovv, A.S. Rupp, A.S. Fisyuk, A.K. Kuratova, A.A. Nefedov, G.P. Sagitullina
    Synthesis and Optical Properties of Alkaloid Quindoline, Its Structural Analogues and Substituted δ-Carbolines
    ChemistrySelect, 2019, V. 4, N 5, Pp 1696-1699 doi:10.1002/slct.201803515, IF=1.716
  760. V.Yu. Shuvalovv, A.S. Rupp, A.S. Fisyuk, A.K. Kuratova, A.A. Nefedov, G.P. Sagitullina
    Synthesis and Optical Properties of Alkaloid Quindoline, Its Structural Analogues and Substituted δ-Carbolines
    ChemistrySelect, 2019, V. 4, N 5, Pp 1696-1699 doi:10.1002/slct.201803515, IF=1.716
  761. V.Yu. Shuvalovv, A.S. Rupp, A.S. Fisyuk, A.K. Kuratova, A.A. Nefedov, G.P. Sagitullina
    Synthesis and Optical Properties of Alkaloid Quindoline, Its Structural Analogues and Substituted δ-Carbolines
    ChemistrySelect, 2019, V. 4, N 5, Pp 1696-1699 doi:10.1002/slct.201803515, IF=1.716
  762. V.Yu. Shuvalovv, A.S. Rupp, A.S. Fisyuk, A.K. Kuratova, A.A. Nefedov, G.P. Sagitullina
    Synthesis and Optical Properties of Alkaloid Quindoline, Its Structural Analogues and Substituted δ-Carbolines
    ChemistrySelect, 2019, V. 4, N 5, Pp 1696-1699 doi:10.1002/slct.201803515, IF=1.716
  763. A.G. Ogienko, A.V. Markov, A.V. Sen'kova, E.B. Logashenko, O.V. Salomatina, S.A. Myz, A.A. Ogienko, A.A. Nefedov, E.A. Losev, T.N. Drebushchak, N.F. Salakhutdinov, V.V. Boldyrev, V.V. Vlasov, M.A. Zenkova, E.V. Boldyreva
    Increasing bioavailability of very poorly water-soluble compounds. A case study of an anti-tumor drug, soloxolon methyl
    Journal of Drug Delivery Science and Technology, 2019, V. 49, Pages 35-42 doi:10.1016/j.jddst.2018.10.025, IF=2.606
  764. A.G. Ogienko, A.V. Markov, A.V. Sen'kova, E.B. Logashenko, O.V. Salomatina, S.A. Myz, A.A. Ogienko, A.A. Nefedov, E.A. Losev, T.N. Drebushchak, N.F. Salakhutdinov, V.V. Boldyrev, V.V. Vlasov, M.A. Zenkova, E.V. Boldyreva
    Increasing bioavailability of very poorly water-soluble compounds. A case study of an anti-tumor drug, soloxolon methyl
    Journal of Drug Delivery Science and Technology, 2019, V. 49, Pages 35-42 doi:10.1016/j.jddst.2018.10.025, IF=2.606
  765. A.G. Ogienko, A.V. Markov, A.V. Sen'kova, E.B. Logashenko, O.V. Salomatina, S.A. Myz, A.A. Ogienko, A.A. Nefedov, E.A. Losev, T.N. Drebushchak, N.F. Salakhutdinov, V.V. Boldyrev, V.V. Vlasov, M.A. Zenkova, E.V. Boldyreva
    Increasing bioavailability of very poorly water-soluble compounds. A case study of an anti-tumor drug, soloxolon methyl
    Journal of Drug Delivery Science and Technology, 2019, V. 49, Pages 35-42 doi:10.1016/j.jddst.2018.10.025, IF=2.606
  766. A.G. Ogienko, A.V. Markov, A.V. Sen'kova, E.B. Logashenko, O.V. Salomatina, S.A. Myz, A.A. Ogienko, A.A. Nefedov, E.A. Losev, T.N. Drebushchak, N.F. Salakhutdinov, V.V. Boldyrev, V.V. Vlasov, M.A. Zenkova, E.V. Boldyreva
    Increasing bioavailability of very poorly water-soluble compounds. A case study of an anti-tumor drug, soloxolon methyl
    Journal of Drug Delivery Science and Technology, 2019, V. 49, Pages 35-42 doi:10.1016/j.jddst.2018.10.025, IF=2.606
  767. A.G. Ogienko, A.V. Markov, A.V. Sen'kova, E.B. Logashenko, O.V. Salomatina, S.A. Myz, A.A. Ogienko, A.A. Nefedov, E.A. Losev, T.N. Drebushchak, N.F. Salakhutdinov, V.V. Boldyrev, V.V. Vlasov, M.A. Zenkova, E.V. Boldyreva
    Increasing bioavailability of very poorly water-soluble compounds. A case study of an anti-tumor drug, soloxolon methyl
    Journal of Drug Delivery Science and Technology, 2019, V. 49, Pages 35-42 doi:10.1016/j.jddst.2018.10.025, IF=2.606
  768. A.G. Ogienko, A.V. Markov, A.V. Sen'kova, E.B. Logashenko, O.V. Salomatina, S.A. Myz, A.A. Ogienko, A.A. Nefedov, E.A. Losev, T.N. Drebushchak, N.F. Salakhutdinov, V.V. Boldyrev, V.V. Vlasov, M.A. Zenkova, E.V. Boldyreva
    Increasing bioavailability of very poorly water-soluble compounds. A case study of an anti-tumor drug, soloxolon methyl
    Journal of Drug Delivery Science and Technology, 2019, V. 49, Pages 35-42 doi:10.1016/j.jddst.2018.10.025, IF=2.606
  769. A.G. Ogienko, A.V. Markov, A.V. Sen'kova, E.B. Logashenko, O.V. Salomatina, S.A. Myz, A.A. Ogienko, A.A. Nefedov, E.A. Losev, T.N. Drebushchak, N.F. Salakhutdinov, V.V. Boldyrev, V.V. Vlasov, M.A. Zenkova, E.V. Boldyreva
    Increasing bioavailability of very poorly water-soluble compounds. A case study of an anti-tumor drug, soloxolon methyl
    Journal of Drug Delivery Science and Technology, 2019, V. 49, Pages 35-42 doi:10.1016/j.jddst.2018.10.025, IF=2.606
  770. A.G. Ogienko, A.V. Markov, A.V. Sen'kova, E.B. Logashenko, O.V. Salomatina, S.A. Myz, A.A. Ogienko, A.A. Nefedov, E.A. Losev, T.N. Drebushchak, N.F. Salakhutdinov, V.V. Boldyrev, V.V. Vlasov, M.A. Zenkova, E.V. Boldyreva
    Increasing bioavailability of very poorly water-soluble compounds. A case study of an anti-tumor drug, soloxolon methyl
    Journal of Drug Delivery Science and Technology, 2019, V. 49, Pages 35-42 doi:10.1016/j.jddst.2018.10.025, IF=2.606
  771. A.G. Ogienko, A.V. Markov, A.V. Sen'kova, E.B. Logashenko, O.V. Salomatina, S.A. Myz, A.A. Ogienko, A.A. Nefedov, E.A. Losev, T.N. Drebushchak, N.F. Salakhutdinov, V.V. Boldyrev, V.V. Vlasov, M.A. Zenkova, E.V. Boldyreva
    Increasing bioavailability of very poorly water-soluble compounds. A case study of an anti-tumor drug, soloxolon methyl
    Journal of Drug Delivery Science and Technology, 2019, V. 49, Pages 35-42 doi:10.1016/j.jddst.2018.10.025, IF=2.606
  772. A.G. Ogienko, A.V. Markov, A.V. Sen'kova, E.B. Logashenko, O.V. Salomatina, S.A. Myz, A.A. Ogienko, A.A. Nefedov, E.A. Losev, T.N. Drebushchak, N.F. Salakhutdinov, V.V. Boldyrev, V.V. Vlasov, M.A. Zenkova, E.V. Boldyreva
    Increasing bioavailability of very poorly water-soluble compounds. A case study of an anti-tumor drug, soloxolon methyl
    Journal of Drug Delivery Science and Technology, 2019, V. 49, Pages 35-42 doi:10.1016/j.jddst.2018.10.025, IF=2.606
  773. A.G. Ogienko, A.V. Markov, A.V. Sen'kova, E.B. Logashenko, O.V. Salomatina, S.A. Myz, A.A. Ogienko, A.A. Nefedov, E.A. Losev, T.N. Drebushchak, N.F. Salakhutdinov, V.V. Boldyrev, V.V. Vlasov, M.A. Zenkova, E.V. Boldyreva
    Increasing bioavailability of very poorly water-soluble compounds. A case study of an anti-tumor drug, soloxolon methyl
    Journal of Drug Delivery Science and Technology, 2019, V. 49, Pages 35-42 doi:10.1016/j.jddst.2018.10.025, IF=2.606
  774. A.G. Ogienko, A.V. Markov, A.V. Sen'kova, E.B. Logashenko, O.V. Salomatina, S.A. Myz, A.A. Ogienko, A.A. Nefedov, E.A. Losev, T.N. Drebushchak, N.F. Salakhutdinov, V.V. Boldyrev, V.V. Vlasov, M.A. Zenkova, E.V. Boldyreva
    Increasing bioavailability of very poorly water-soluble compounds. A case study of an anti-tumor drug, soloxolon methyl
    Journal of Drug Delivery Science and Technology, 2019, V. 49, Pages 35-42 doi:10.1016/j.jddst.2018.10.025, IF=2.606
  775. M. Edeleva, D. Morozov, D. Parkhomenko, Yu. Polienko, A. Iurchenkova, I. Kirilyuk, E. Bagryanskaya
    Versatile approach to activation of alkoxyamine homolysis by 1,3-dipolar cycloaddition for efficient and safe nitroxide mediated polymerization
    Chem. Commun., 2019,V. 55, N 2, Pp 190-193 doi:10.1039/C8CC08541B, IF=6.164
  776. K.A. Vinogradova, N.A. Shekhovtsov, A.S. Berezin, T.S. Sukhikh, V.P. Krivopalov, E.B. Nikolaenkova, I.V. Plokhikh, M.B. Bushuev
    A near-infra-red emitting manganese(II) complex with a pyrimidine-based ligand
    Inorganic Chemistry Communications, V. 100, February 2019, Pp 11-15 doi:10.1016/j.inoche.2018.12.002, IF=1.795
  777. K.A. Vinogradova, N.A. Shekhovtsov, A.S. Berezin, T.S. Sukhikh, V.P. Krivopalov, E.B. Nikolaenkova, I.V. Plokhikh, M.B. Bushuev
    A near-infra-red emitting manganese(II) complex with a pyrimidine-based ligand
    Inorganic Chemistry Communications, V. 100, February 2019, Pp 11-15 doi:10.1016/j.inoche.2018.12.002, IF=1.795
  778. K.A. Vinogradova, N.A. Shekhovtsov, A.S. Berezin, T.S. Sukhikh, V.P. Krivopalov, E.B. Nikolaenkova, I.V. Plokhikh, M.B. Bushuev
    A near-infra-red emitting manganese(II) complex with a pyrimidine-based ligand
    Inorganic Chemistry Communications, V. 100, February 2019, Pp 11-15 doi:10.1016/j.inoche.2018.12.002, IF=1.795
  779. K.A. Vinogradova, N.A. Shekhovtsov, A.S. Berezin, T.S. Sukhikh, V.P. Krivopalov, E.B. Nikolaenkova, I.V. Plokhikh, M.B. Bushuev
    A near-infra-red emitting manganese(II) complex with a pyrimidine-based ligand
    Inorganic Chemistry Communications, V. 100, February 2019, Pp 11-15 doi:10.1016/j.inoche.2018.12.002, IF=1.795
  780. K.A. Vinogradova, N.A. Shekhovtsov, A.S. Berezin, T.S. Sukhikh, V.P. Krivopalov, E.B. Nikolaenkova, I.V. Plokhikh, M.B. Bushuev
    A near-infra-red emitting manganese(II) complex with a pyrimidine-based ligand
    Inorganic Chemistry Communications, V. 100, February 2019, Pp 11-15 doi:10.1016/j.inoche.2018.12.002, IF=1.795
  781. K.A. Vinogradova, N.A. Shekhovtsov, A.S. Berezin, T.S. Sukhikh, V.P. Krivopalov, E.B. Nikolaenkova, I.V. Plokhikh, M.B. Bushuev
    A near-infra-red emitting manganese(II) complex with a pyrimidine-based ligand
    Inorganic Chemistry Communications, V. 100, February 2019, Pp 11-15 doi:10.1016/j.inoche.2018.12.002, IF=1.795
  782. Д.М. Могнонов, О.Ж. Аюрова, Д.Ш. Ширапов, С.В. Морозов, А.М. Мангадаев
    Оценка корректности результатов обращенной газовой хроматографии при определении термодинамической совместимости полимерных смесей
    Сорбционные и хроматографические процессы. 2019. Т. 19. № 1. С. 67-74. (Evaluation of the correctness of the results reversed gas chromatography in determining thermodynamiccompatibility polymer blends/ Mognonov D. M., Ayurova O. Zh.1, Shirapov D. Sh., Morozov S.ergei V., Mangadaev A. M.// Сорбционные и хроматографические процессы. 2019. Т. 19. № 1. С. 67-74. (in Russian) doi:10.17308/sorpchrom.2019.19/651)
  783. Д.М. Могнонов, О.Ж. Аюрова, Д.Ш. Ширапов, С.В. Морозов, А.М. Мангадаев
    Оценка корректности результатов обращенной газовой хроматографии при определении термодинамической совместимости полимерных смесей
    Сорбционные и хроматографические процессы. 2019. Т. 19. № 1. С. 67-74. (Evaluation of the correctness of the results reversed gas chromatography in determining thermodynamiccompatibility polymer blends/ Mognonov D. M., Ayurova O. Zh.1, Shirapov D. Sh., Morozov S.ergei V., Mangadaev A. M.// Сорбционные и хроматографические процессы. 2019. Т. 19. № 1. С. 67-74. (in Russian) doi:10.17308/sorpchrom.2019.19/651)
  784. Д.М. Могнонов, О.Ж. Аюрова, Д.Ш. Ширапов, С.В. Морозов, А.М. Мангадаев
    Оценка корректности результатов обращенной газовой хроматографии при определении термодинамической совместимости полимерных смесей
    Сорбционные и хроматографические процессы. 2019. Т. 19. № 1. С. 67-74. (Evaluation of the correctness of the results reversed gas chromatography in determining thermodynamiccompatibility polymer blends/ Mognonov D. M., Ayurova O. Zh.1, Shirapov D. Sh., Morozov S.ergei V., Mangadaev A. M.// Сорбционные и хроматографические процессы. 2019. Т. 19. № 1. С. 67-74. (in Russian) doi:10.17308/sorpchrom.2019.19/651)
  785. Д.М. Могнонов, О.Ж. Аюрова, Д.Ш. Ширапов, С.В. Морозов, А.М. Мангадаев
    Оценка корректности результатов обращенной газовой хроматографии при определении термодинамической совместимости полимерных смесей
    Сорбционные и хроматографические процессы. 2019. Т. 19. № 1. С. 67-74. (Evaluation of the correctness of the results reversed gas chromatography in determining thermodynamiccompatibility polymer blends/ Mognonov D. M., Ayurova O. Zh.1, Shirapov D. Sh., Morozov S.ergei V., Mangadaev A. M.// Сорбционные и хроматографические процессы. 2019. Т. 19. № 1. С. 67-74. (in Russian) doi:10.17308/sorpchrom.2019.19/651)
  786. Д.И. Деревянко, Н.А. Орлова, В.В. Шелковников, И.К. Шундрина, Б.Г. Гольденберг, В.П. Корольков
    Формирование высокоаспектных микроструктур на тетраакрилат/акриламидных мономерах под действием синхротронного излучения
    Химия высоких энергий. 2019. Т. 53. № 2. С. 127-134. (Fabrication of High-Aspect-Ratio Microstructures on Tetraacrylate/Acrylamide Monomers Using Synchrotron Radiation/ D. I. Derevyanko, N. A. Orlova, V. V. Shelkovnikov, I. K. Shundrina, B. G. Goldenberg, V. P. Korolkov// High Energy Chemistry, 2019, V. 53, N 2, pp 136-142 doi:10.1134/S0018143919020048), IF=0.634
  787. Д.И. Деревянко, Н.А. Орлова, В.В. Шелковников, И.К. Шундрина, Б.Г. Гольденберг, В.П. Корольков
    Формирование высокоаспектных микроструктур на тетраакрилат/акриламидных мономерах под действием синхротронного излучения
    Химия высоких энергий. 2019. Т. 53. № 2. С. 127-134. (Fabrication of High-Aspect-Ratio Microstructures on Tetraacrylate/Acrylamide Monomers Using Synchrotron Radiation/ D. I. Derevyanko, N. A. Orlova, V. V. Shelkovnikov, I. K. Shundrina, B. G. Goldenberg, V. P. Korolkov// High Energy Chemistry, 2019, V. 53, N 2, pp 136-142 doi:10.1134/S0018143919020048), IF=0.634
  788. N. Dyrkheeva, O. Luzina, A. Filimonov, O. Zakharova, E. Ilina, A. Zakharenko, M. Kuprushkin, D. Nilov, I. Gushchina, V. Svedas, N. Salakhutdinov, O. Lavrik
    Inhibitory Effect of New Semisynthetic Usnic Acid Derivatives on Human Tyrosyl-DNA Phosphodiesterase 1
    Planta Medica, 2019, V. 85, N 2, Pp 103-111 doi:10.1055/a-0681-7069, IF=2.746
  789. N. Dyrkheeva, O. Luzina, A. Filimonov, O. Zakharova, E. Ilina, A. Zakharenko, M. Kuprushkin, D. Nilov, I. Gushchina, V. Svedas, N. Salakhutdinov, O. Lavrik
    Inhibitory Effect of New Semisynthetic Usnic Acid Derivatives on Human Tyrosyl-DNA Phosphodiesterase 1
    Planta Medica, 2019, V. 85, N 2, Pp 103-111 doi:10.1055/a-0681-7069, IF=2.746
  790. N. Dyrkheeva, O. Luzina, A. Filimonov, O. Zakharova, E. Ilina, A. Zakharenko, M. Kuprushkin, D. Nilov, I. Gushchina, V. Svedas, N. Salakhutdinov, O. Lavrik
    Inhibitory Effect of New Semisynthetic Usnic Acid Derivatives on Human Tyrosyl-DNA Phosphodiesterase 1
    Planta Medica, 2019, V. 85, N 2, Pp 103-111 doi:10.1055/a-0681-7069, IF=2.746
  791. N. Dyrkheeva, O. Luzina, A. Filimonov, O. Zakharova, E. Ilina, A. Zakharenko, M. Kuprushkin, D. Nilov, I. Gushchina, V. Svedas, N. Salakhutdinov, O. Lavrik
    Inhibitory Effect of New Semisynthetic Usnic Acid Derivatives on Human Tyrosyl-DNA Phosphodiesterase 1
    Planta Medica, 2019, V. 85, N 2, Pp 103-111 doi:10.1055/a-0681-7069, IF=2.746
  792. N. Dyrkheeva, O. Luzina, A. Filimonov, O. Zakharova, E. Ilina, A. Zakharenko, M. Kuprushkin, D. Nilov, I. Gushchina, V. Svedas, N. Salakhutdinov, O. Lavrik
    Inhibitory Effect of New Semisynthetic Usnic Acid Derivatives on Human Tyrosyl-DNA Phosphodiesterase 1
    Planta Medica, 2019, V. 85, N 2, Pp 103-111 doi:10.1055/a-0681-7069, IF=2.746
  793. N. Dyrkheeva, O. Luzina, A. Filimonov, O. Zakharova, E. Ilina, A. Zakharenko, M. Kuprushkin, D. Nilov, I. Gushchina, V. Svedas, N. Salakhutdinov, O. Lavrik
    Inhibitory Effect of New Semisynthetic Usnic Acid Derivatives on Human Tyrosyl-DNA Phosphodiesterase 1
    Planta Medica, 2019, V. 85, N 2, Pp 103-111 doi:10.1055/a-0681-7069, IF=2.746
  794. N. Dyrkheeva, O. Luzina, A. Filimonov, O. Zakharova, E. Ilina, A. Zakharenko, M. Kuprushkin, D. Nilov, I. Gushchina, V. Svedas, N. Salakhutdinov, O. Lavrik
    Inhibitory Effect of New Semisynthetic Usnic Acid Derivatives on Human Tyrosyl-DNA Phosphodiesterase 1
    Planta Medica, 2019, V. 85, N 2, Pp 103-111 doi:10.1055/a-0681-7069, IF=2.746
  795. N. Dyrkheeva, O. Luzina, A. Filimonov, O. Zakharova, E. Ilina, A. Zakharenko, M. Kuprushkin, D. Nilov, I. Gushchina, V. Svedas, N. Salakhutdinov, O. Lavrik
    Inhibitory Effect of New Semisynthetic Usnic Acid Derivatives on Human Tyrosyl-DNA Phosphodiesterase 1
    Planta Medica, 2019, V. 85, N 2, Pp 103-111 doi:10.1055/a-0681-7069, IF=2.746
  796. N. Dyrkheeva, O. Luzina, A. Filimonov, O. Zakharova, E. Ilina, A. Zakharenko, M. Kuprushkin, D. Nilov, I. Gushchina, V. Svedas, N. Salakhutdinov, O. Lavrik
    Inhibitory Effect of New Semisynthetic Usnic Acid Derivatives on Human Tyrosyl-DNA Phosphodiesterase 1
    Planta Medica, 2019, V. 85, N 2, Pp 103-111 doi:10.1055/a-0681-7069, IF=2.746
  797. S.M. Adekenov, P.Zh. Zhanimkhanova, Zh.S. Nurmaganbetov, A. Amanzhan, S.V. Chernov, A.Zh. Turmukhambetov, I.Yu. Bagryanskaya, Yu.V. Gatilov, E.E. Shults
    Synthetic modifications of carboline alkaloid harmine: synthesis of 8-substituted derivatives
    Chemistry of Heterocyclic Compounds, 2019, V. 55, N 2, pp 135-141 doi:10.1007/s10593-019-02429-1, IF=1.492
  798. S.M. Adekenov, P.Zh. Zhanimkhanova, Zh.S. Nurmaganbetov, A. Amanzhan, S.V. Chernov, A.Zh. Turmukhambetov, I.Yu. Bagryanskaya, Yu.V. Gatilov, E.E. Shults
    Synthetic modifications of carboline alkaloid harmine: synthesis of 8-substituted derivatives
    Chemistry of Heterocyclic Compounds, 2019, V. 55, N 2, pp 135-141 doi:10.1007/s10593-019-02429-1, IF=1.492
  799. S.M. Adekenov, P.Zh. Zhanimkhanova, Zh.S. Nurmaganbetov, A. Amanzhan, S.V. Chernov, A.Zh. Turmukhambetov, I.Yu. Bagryanskaya, Yu.V. Gatilov, E.E. Shults
    Synthetic modifications of carboline alkaloid harmine: synthesis of 8-substituted derivatives
    Chemistry of Heterocyclic Compounds, 2019, V. 55, N 2, pp 135-141 doi:10.1007/s10593-019-02429-1, IF=1.492
  800. S.M. Adekenov, P.Zh. Zhanimkhanova, Zh.S. Nurmaganbetov, A. Amanzhan, S.V. Chernov, A.Zh. Turmukhambetov, I.Yu. Bagryanskaya, Yu.V. Gatilov, E.E. Shults
    Synthetic modifications of carboline alkaloid harmine: synthesis of 8-substituted derivatives
    Chemistry of Heterocyclic Compounds, 2019, V. 55, N 2, pp 135-141 doi:10.1007/s10593-019-02429-1, IF=1.492
  801. S.M. Adekenov, P.Zh. Zhanimkhanova, Zh.S. Nurmaganbetov, A. Amanzhan, S.V. Chernov, A.Zh. Turmukhambetov, I.Yu. Bagryanskaya, Yu.V. Gatilov, E.E. Shults
    Synthetic modifications of carboline alkaloid harmine: synthesis of 8-substituted derivatives
    Chemistry of Heterocyclic Compounds, 2019, V. 55, N 2, pp 135-141 doi:10.1007/s10593-019-02429-1, IF=1.492
  802. С.В. Ларионов, М.И. Рахманова, Л.А. Глинская, Д.Ю. Наумов, А.С. Виноградов, В.М. Карпов, В.Е. Платонов, В.П. Фадеева
    Комплексы Zn(II) с анионами тетрафтортерефталевой, октафторбифенил- 4,4'-дикарбоновой кислот и 1,10-фенантролином
    Журнал общей химии, 2019, Т. 89, N 2, Cc. 265-270, DOI: 10.1134/S0044460X1902015X (Zinc(II) Complexes with Tetrafluoroterephthalic and Octafluorobiphenyl-4,4'-dicarboxylic Acid Anions and 1,10-Phenanthroline/ S. V. Larionov, M. I. Rakhmanova, L. A. Glinskaya, D. Yu. Naumov, A. S. Vinogradov, V. M. Karpov, V. E. Platonov, V. P. Fadeeva// Russian Journal of General Chemistry, 2019, V. 89, N 2, pp 261-265 doi:10.1134/S1070363219020154), IF=0.643
  803. С.В. Ларионов, М.И. Рахманова, Л.А. Глинская, Д.Ю. Наумов, А.С. Виноградов, В.М. Карпов, В.Е. Платонов, В.П. Фадеева
    Комплексы Zn(II) с анионами тетрафтортерефталевой, октафторбифенил- 4,4'-дикарбоновой кислот и 1,10-фенантролином
    Журнал общей химии, 2019, Т. 89, N 2, Cc. 265-270, DOI: 10.1134/S0044460X1902015X (Zinc(II) Complexes with Tetrafluoroterephthalic and Octafluorobiphenyl-4,4'-dicarboxylic Acid Anions and 1,10-Phenanthroline/ S. V. Larionov, M. I. Rakhmanova, L. A. Glinskaya, D. Yu. Naumov, A. S. Vinogradov, V. M. Karpov, V. E. Platonov, V. P. Fadeeva// Russian Journal of General Chemistry, 2019, V. 89, N 2, pp 261-265 doi:10.1134/S1070363219020154), IF=0.643
  804. С.В. Ларионов, М.И. Рахманова, Л.А. Глинская, Д.Ю. Наумов, А.С. Виноградов, В.М. Карпов, В.Е. Платонов, В.П. Фадеева
    Комплексы Zn(II) с анионами тетрафтортерефталевой, октафторбифенил- 4,4'-дикарбоновой кислот и 1,10-фенантролином
    Журнал общей химии, 2019, Т. 89, N 2, Cc. 265-270, DOI: 10.1134/S0044460X1902015X (Zinc(II) Complexes with Tetrafluoroterephthalic and Octafluorobiphenyl-4,4'-dicarboxylic Acid Anions and 1,10-Phenanthroline/ S. V. Larionov, M. I. Rakhmanova, L. A. Glinskaya, D. Yu. Naumov, A. S. Vinogradov, V. M. Karpov, V. E. Platonov, V. P. Fadeeva// Russian Journal of General Chemistry, 2019, V. 89, N 2, pp 261-265 doi:10.1134/S1070363219020154), IF=0.643
  805. С.В. Ларионов, М.И. Рахманова, Л.А. Глинская, Д.Ю. Наумов, А.С. Виноградов, В.М. Карпов, В.Е. Платонов, В.П. Фадеева
    Комплексы Zn(II) с анионами тетрафтортерефталевой, октафторбифенил- 4,4'-дикарбоновой кислот и 1,10-фенантролином
    Журнал общей химии, 2019, Т. 89, N 2, Cc. 265-270, DOI: 10.1134/S0044460X1902015X (Zinc(II) Complexes with Tetrafluoroterephthalic and Octafluorobiphenyl-4,4'-dicarboxylic Acid Anions and 1,10-Phenanthroline/ S. V. Larionov, M. I. Rakhmanova, L. A. Glinskaya, D. Yu. Naumov, A. S. Vinogradov, V. M. Karpov, V. E. Platonov, V. P. Fadeeva// Russian Journal of General Chemistry, 2019, V. 89, N 2, pp 261-265 doi:10.1134/S1070363219020154), IF=0.643
  806. А.Б. Будаев, А.В. Иванов, О.В. Петрова, А.Я. Тихонов, В.А. Самсонов, Л.Н. Собенина, Б.А. Трофимов
    От 1,2,5-оксадиазоло[3,4-g]индолов к пирроло[2,3-f]хиноксалинам в одну препаративную стадию
    Журнал органической химии. 2019. Т. 55. № 2. С. 311-313. (From 1,2,5-Oxadiazolo[3,4-g]indoles to Pyrrolo[2,3-f]quinoxalines in One Preparative Stage/ A.B. Budaev, A.V. Ivanov, O.V. Petrova, A.Ya. Tikhonov, V.A. Samsonov, L.N. Sobenina, B.A. Trofimov// Russian Journal of Organic Chemistry, 2019, V. 55, N 2, pp 273-275 doi:10.1134/S1070428019020234), IF=0.751
  807. А.Б. Будаев, А.В. Иванов, О.В. Петрова, А.Я. Тихонов, В.А. Самсонов, Л.Н. Собенина, Б.А. Трофимов
    От 1,2,5-оксадиазоло[3,4-g]индолов к пирроло[2,3-f]хиноксалинам в одну препаративную стадию
    Журнал органической химии. 2019. Т. 55. № 2. С. 311-313. (From 1,2,5-Oxadiazolo[3,4-g]indoles to Pyrrolo[2,3-f]quinoxalines in One Preparative Stage/ A.B. Budaev, A.V. Ivanov, O.V. Petrova, A.Ya. Tikhonov, V.A. Samsonov, L.N. Sobenina, B.A. Trofimov// Russian Journal of Organic Chemistry, 2019, V. 55, N 2, pp 273-275 doi:10.1134/S1070428019020234), IF=0.751
  808. А.Б. Будаев, А.В. Иванов, О.В. Петрова, А.Я. Тихонов, В.А. Самсонов, Л.Н. Собенина, Б.А. Трофимов
    От 1,2,5-оксадиазоло[3,4-g]индолов к пирроло[2,3-f]хиноксалинам в одну препаративную стадию
    Журнал органической химии. 2019. Т. 55. № 2. С. 311-313. (From 1,2,5-Oxadiazolo[3,4-g]indoles to Pyrrolo[2,3-f]quinoxalines in One Preparative Stage/ A.B. Budaev, A.V. Ivanov, O.V. Petrova, A.Ya. Tikhonov, V.A. Samsonov, L.N. Sobenina, B.A. Trofimov// Russian Journal of Organic Chemistry, 2019, V. 55, N 2, pp 273-275 doi:10.1134/S1070428019020234), IF=0.751
  809. А.Б. Будаев, А.В. Иванов, О.В. Петрова, А.Я. Тихонов, В.А. Самсонов, Л.Н. Собенина, Б.А. Трофимов
    От 1,2,5-оксадиазоло[3,4-g]индолов к пирроло[2,3-f]хиноксалинам в одну препаративную стадию
    Журнал органической химии. 2019. Т. 55. № 2. С. 311-313. (From 1,2,5-Oxadiazolo[3,4-g]indoles to Pyrrolo[2,3-f]quinoxalines in One Preparative Stage/ A.B. Budaev, A.V. Ivanov, O.V. Petrova, A.Ya. Tikhonov, V.A. Samsonov, L.N. Sobenina, B.A. Trofimov// Russian Journal of Organic Chemistry, 2019, V. 55, N 2, pp 273-275 doi:10.1134/S1070428019020234), IF=0.751
  810. А.Б. Будаев, А.В. Иванов, О.В. Петрова, А.Я. Тихонов, В.А. Самсонов, Л.Н. Собенина, Б.А. Трофимов
    От 1,2,5-оксадиазоло[3,4-g]индолов к пирроло[2,3-f]хиноксалинам в одну препаративную стадию
    Журнал органической химии. 2019. Т. 55. № 2. С. 311-313. (From 1,2,5-Oxadiazolo[3,4-g]indoles to Pyrrolo[2,3-f]quinoxalines in One Preparative Stage/ A.B. Budaev, A.V. Ivanov, O.V. Petrova, A.Ya. Tikhonov, V.A. Samsonov, L.N. Sobenina, B.A. Trofimov// Russian Journal of Organic Chemistry, 2019, V. 55, N 2, pp 273-275 doi:10.1134/S1070428019020234), IF=0.751
  811. R.Yu. Peshkov, Ch. Wang, E.V. Panteleeva, T.V. Rybalova, E.V. Tretyakov
    Radical Anions of Aromatic Carbonitriles as Reagents for Arylation of Fluorinated Benzonitriles
    J. Org. Chem., 2019, 84 (2), pp 963-972 doi:10.1021/acs.joc.8b02904, IF=4.745
  812. A.B. Budaev, A.V. Ivanov, O.V. Petrova, V.A. Samsonov, I.A. Ushakov, A.Ya. Tikhonov, L.N. Sobenina, B.A. Trofimov
    1,2,5-Oxadiazolo[3,4-g]indoles via annelation of 6,7-dihydrobenzo[c][1,2,5]oxadiazol-4(5H)-one oxime with acetylene
    Mendeleev Communications, 2019, V. 29, N 1, Pp 53-54 doi:10.1016/j.mencom.2019.01.016, IF=2.01
  813. A.B. Budaev, A.V. Ivanov, O.V. Petrova, V.A. Samsonov, I.A. Ushakov, A.Ya. Tikhonov, L.N. Sobenina, B.A. Trofimov
    1,2,5-Oxadiazolo[3,4-g]indoles via annelation of 6,7-dihydrobenzo[c][1,2,5]oxadiazol-4(5H)-one oxime with acetylene
    Mendeleev Communications, 2019, V. 29, N 1, Pp 53-54 doi:10.1016/j.mencom.2019.01.016, IF=2.01
  814. A.B. Budaev, A.V. Ivanov, O.V. Petrova, V.A. Samsonov, I.A. Ushakov, A.Ya. Tikhonov, L.N. Sobenina, B.A. Trofimov
    1,2,5-Oxadiazolo[3,4-g]indoles via annelation of 6,7-dihydrobenzo[c][1,2,5]oxadiazol-4(5H)-one oxime with acetylene
    Mendeleev Communications, 2019, V. 29, N 1, Pp 53-54 doi:10.1016/j.mencom.2019.01.016, IF=2.01
  815. A.B. Budaev, A.V. Ivanov, O.V. Petrova, V.A. Samsonov, I.A. Ushakov, A.Ya. Tikhonov, L.N. Sobenina, B.A. Trofimov
    1,2,5-Oxadiazolo[3,4-g]indoles via annelation of 6,7-dihydrobenzo[c][1,2,5]oxadiazol-4(5H)-one oxime with acetylene
    Mendeleev Communications, 2019, V. 29, N 1, Pp 53-54 doi:10.1016/j.mencom.2019.01.016, IF=2.01
  816. A.B. Budaev, A.V. Ivanov, O.V. Petrova, V.A. Samsonov, I.A. Ushakov, A.Ya. Tikhonov, L.N. Sobenina, B.A. Trofimov
    1,2,5-Oxadiazolo[3,4-g]indoles via annelation of 6,7-dihydrobenzo[c][1,2,5]oxadiazol-4(5H)-one oxime with acetylene
    Mendeleev Communications, 2019, V. 29, N 1, Pp 53-54 doi:10.1016/j.mencom.2019.01.016, IF=2.01
  817. A.B. Budaev, A.V. Ivanov, O.V. Petrova, V.A. Samsonov, I.A. Ushakov, A.Ya. Tikhonov, L.N. Sobenina, B.A. Trofimov
    1,2,5-Oxadiazolo[3,4-g]indoles via annelation of 6,7-dihydrobenzo[c][1,2,5]oxadiazol-4(5H)-one oxime with acetylene
    Mendeleev Communications, 2019, V. 29, N 1, Pp 53-54 doi:10.1016/j.mencom.2019.01.016, IF=2.01
  818. V.A. Sannikova, M.P. Davydova, P.S. Sherin, S.V. Babenko, V.V. Korolev, A.A. Stepanov, P.V. Nikul'shin, E.V. Kalneus, S.F. Vasilevsky, E. Benassi, A.R. Melnikov
    Determination of Hyperfine Coupling Constants of Fluorinated Diphenylacetylene Radical Anions by Magnetic Field-Affected Reaction Yield Spectroscopy
    J. Phys. Chem. A, 2019, 123 (2), pp 505-516 doi:10.1021/acs.jpca.8b10306, IF=2.641
  819. V.A. Sannikova, M.P. Davydova, P.S. Sherin, S.V. Babenko, V.V. Korolev, A.A. Stepanov, P.V. Nikul'shin, E.V. Kalneus, S.F. Vasilevsky, E. Benassi, A.R. Melnikov
    Determination of Hyperfine Coupling Constants of Fluorinated Diphenylacetylene Radical Anions by Magnetic Field-Affected Reaction Yield Spectroscopy
    J. Phys. Chem. A, 2019, 123 (2), pp 505-516 doi:10.1021/acs.jpca.8b10306, IF=2.641
  820. V.A. Sannikova, M.P. Davydova, P.S. Sherin, S.V. Babenko, V.V. Korolev, A.A. Stepanov, P.V. Nikul'shin, E.V. Kalneus, S.F. Vasilevsky, E. Benassi, A.R. Melnikov
    Determination of Hyperfine Coupling Constants of Fluorinated Diphenylacetylene Radical Anions by Magnetic Field-Affected Reaction Yield Spectroscopy
    J. Phys. Chem. A, 2019, 123 (2), pp 505-516 doi:10.1021/acs.jpca.8b10306, IF=2.641
  821. V.A. Sannikova, M.P. Davydova, P.S. Sherin, S.V. Babenko, V.V. Korolev, A.A. Stepanov, P.V. Nikul'shin, E.V. Kalneus, S.F. Vasilevsky, E. Benassi, A.R. Melnikov
    Determination of Hyperfine Coupling Constants of Fluorinated Diphenylacetylene Radical Anions by Magnetic Field-Affected Reaction Yield Spectroscopy
    J. Phys. Chem. A, 2019, 123 (2), pp 505-516 doi:10.1021/acs.jpca.8b10306, IF=2.641
  822. V.A. Sannikova, M.P. Davydova, P.S. Sherin, S.V. Babenko, V.V. Korolev, A.A. Stepanov, P.V. Nikul'shin, E.V. Kalneus, S.F. Vasilevsky, E. Benassi, A.R. Melnikov
    Determination of Hyperfine Coupling Constants of Fluorinated Diphenylacetylene Radical Anions by Magnetic Field-Affected Reaction Yield Spectroscopy
    J. Phys. Chem. A, 2019, 123 (2), pp 505-516 doi:10.1021/acs.jpca.8b10306, IF=2.641
  823. V.A. Sannikova, M.P. Davydova, P.S. Sherin, S.V. Babenko, V.V. Korolev, A.A. Stepanov, P.V. Nikul'shin, E.V. Kalneus, S.F. Vasilevsky, E. Benassi, A.R. Melnikov
    Determination of Hyperfine Coupling Constants of Fluorinated Diphenylacetylene Radical Anions by Magnetic Field-Affected Reaction Yield Spectroscopy
    J. Phys. Chem. A, 2019, 123 (2), pp 505-516 doi:10.1021/acs.jpca.8b10306, IF=2.641
  824. V.A. Sannikova, M.P. Davydova, P.S. Sherin, S.V. Babenko, V.V. Korolev, A.A. Stepanov, P.V. Nikul'shin, E.V. Kalneus, S.F. Vasilevsky, E. Benassi, A.R. Melnikov
    Determination of Hyperfine Coupling Constants of Fluorinated Diphenylacetylene Radical Anions by Magnetic Field-Affected Reaction Yield Spectroscopy
    J. Phys. Chem. A, 2019, 123 (2), pp 505-516 doi:10.1021/acs.jpca.8b10306, IF=2.641
  825. V.A. Sannikova, M.P. Davydova, P.S. Sherin, S.V. Babenko, V.V. Korolev, A.A. Stepanov, P.V. Nikul'shin, E.V. Kalneus, S.F. Vasilevsky, E. Benassi, A.R. Melnikov
    Determination of Hyperfine Coupling Constants of Fluorinated Diphenylacetylene Radical Anions by Magnetic Field-Affected Reaction Yield Spectroscopy
    J. Phys. Chem. A, 2019, 123 (2), pp 505-516 doi:10.1021/acs.jpca.8b10306, IF=2.641
  826. V.A. Sannikova, M.P. Davydova, P.S. Sherin, S.V. Babenko, V.V. Korolev, A.A. Stepanov, P.V. Nikul'shin, E.V. Kalneus, S.F. Vasilevsky, E. Benassi, A.R. Melnikov
    Determination of Hyperfine Coupling Constants of Fluorinated Diphenylacetylene Radical Anions by Magnetic Field-Affected Reaction Yield Spectroscopy
    J. Phys. Chem. A, 2019, 123 (2), pp 505-516 doi:10.1021/acs.jpca.8b10306, IF=2.641
  827. V.A. Sannikova, M.P. Davydova, P.S. Sherin, S.V. Babenko, V.V. Korolev, A.A. Stepanov, P.V. Nikul'shin, E.V. Kalneus, S.F. Vasilevsky, E. Benassi, A.R. Melnikov
    Determination of Hyperfine Coupling Constants of Fluorinated Diphenylacetylene Radical Anions by Magnetic Field-Affected Reaction Yield Spectroscopy
    J. Phys. Chem. A, 2019, 123 (2), pp 505-516 doi:10.1021/acs.jpca.8b10306, IF=2.641
  828. N. Pushkarevsky, E. Chulanova, L. Shundrin, A. Smolentsev, G. Salnikov, E. Pritchina, A. Genaev, I. Irtegova, I. Bagryanskaya, S. Konchenko, N. Gritsan, J. Beckmann, A. Zibarev
    Radical Anions, Radical-Anion Salts and Anionic Complexes of 2,1,3-Benzochalcogenadiazoles (S, Se, Te)
    Chemistry - A European Journal, Chemistry - A European Journal, 2019, V. 25, N 3, Pp 806-816 doi:10.1002/chem.201803465, IF=5.16
  829. N. Pushkarevsky, E. Chulanova, L. Shundrin, A. Smolentsev, G. Salnikov, E. Pritchina, A. Genaev, I. Irtegova, I. Bagryanskaya, S. Konchenko, N. Gritsan, J. Beckmann, A. Zibarev
    Radical Anions, Radical-Anion Salts and Anionic Complexes of 2,1,3-Benzochalcogenadiazoles (S, Se, Te)
    Chemistry - A European Journal, Chemistry - A European Journal, 2019, V. 25, N 3, Pp 806-816 doi:10.1002/chem.201803465, IF=5.16
  830. N. Pushkarevsky, E. Chulanova, L. Shundrin, A. Smolentsev, G. Salnikov, E. Pritchina, A. Genaev, I. Irtegova, I. Bagryanskaya, S. Konchenko, N. Gritsan, J. Beckmann, A. Zibarev
    Radical Anions, Radical-Anion Salts and Anionic Complexes of 2,1,3-Benzochalcogenadiazoles (S, Se, Te)
    Chemistry - A European Journal, Chemistry - A European Journal, 2019, V. 25, N 3, Pp 806-816 doi:10.1002/chem.201803465, IF=5.16
  831. N. Pushkarevsky, E. Chulanova, L. Shundrin, A. Smolentsev, G. Salnikov, E. Pritchina, A. Genaev, I. Irtegova, I. Bagryanskaya, S. Konchenko, N. Gritsan, J. Beckmann, A. Zibarev
    Radical Anions, Radical-Anion Salts and Anionic Complexes of 2,1,3-Benzochalcogenadiazoles (S, Se, Te)
    Chemistry - A European Journal, Chemistry - A European Journal, 2019, V. 25, N 3, Pp 806-816 doi:10.1002/chem.201803465, IF=5.16
  832. N. Pushkarevsky, E. Chulanova, L. Shundrin, A. Smolentsev, G. Salnikov, E. Pritchina, A. Genaev, I. Irtegova, I. Bagryanskaya, S. Konchenko, N. Gritsan, J. Beckmann, A. Zibarev
    Radical Anions, Radical-Anion Salts and Anionic Complexes of 2,1,3-Benzochalcogenadiazoles (S, Se, Te)
    Chemistry - A European Journal, Chemistry - A European Journal, 2019, V. 25, N 3, Pp 806-816 doi:10.1002/chem.201803465, IF=5.16
  833. N. Pushkarevsky, E. Chulanova, L. Shundrin, A. Smolentsev, G. Salnikov, E. Pritchina, A. Genaev, I. Irtegova, I. Bagryanskaya, S. Konchenko, N. Gritsan, J. Beckmann, A. Zibarev
    Radical Anions, Radical-Anion Salts and Anionic Complexes of 2,1,3-Benzochalcogenadiazoles (S, Se, Te)
    Chemistry - A European Journal, Chemistry - A European Journal, 2019, V. 25, N 3, Pp 806-816 doi:10.1002/chem.201803465, IF=5.16
  834. M.Y. Pakharukova, V.A. Samsonov, E.A. Serbina, V.A. Mordvinov
    A study of tribendimidine effects in vitro and in vivo on the liver fluke Opisthorchis felineus
    Parasites & Vectors, 2019, V.12, N 1, Art. Num 23 doi:10.1186/s13071-019-3288-z, IF=3.031
  835. M.Y. Pakharukova, V.A. Samsonov, E.A. Serbina, V.A. Mordvinov
    A study of tribendimidine effects in vitro and in vivo on the liver fluke Opisthorchis felineus
    Parasites & Vectors, 2019, V.12, N 1, Art. Num 23 doi:10.1186/s13071-019-3288-z, IF=3.031
  836. M.Y. Pakharukova, V.A. Samsonov, E.A. Serbina, V.A. Mordvinov
    A study of tribendimidine effects in vitro and in vivo on the liver fluke Opisthorchis felineus
    Parasites & Vectors, 2019, V.12, N 1, Art. Num 23 doi:10.1186/s13071-019-3288-z, IF=3.031
  837. D.I. Sharapa, A. Genaev, L. Cavallo, Yu. Minenkov
    A Robust and Cost-Efficient Scheme for Accurate Conformational Energies of Organic Molecules
    ChemPhysChem, 2019, V. 20, N 1, Pp 92-102 doi:10.1002/cphc.201801063, IF=3.077
  838. D.I. Sharapa, A. Genaev, L. Cavallo, Yu. Minenkov
    A Robust and Cost-Efficient Scheme for Accurate Conformational Energies of Organic Molecules
    ChemPhysChem, 2019, V. 20, N 1, Pp 92-102 doi:10.1002/cphc.201801063, IF=3.077
  839. D.I. Sharapa, A. Genaev, L. Cavallo, Yu. Minenkov
    A Robust and Cost-Efficient Scheme for Accurate Conformational Energies of Organic Molecules
    ChemPhysChem, 2019, V. 20, N 1, Pp 92-102 doi:10.1002/cphc.201801063, IF=3.077
  840. O.P. Korobeinichev, A.A. Paletsky, M.B. Gonchikzhapov, R.K. Glaznev, I.E. Gerasimov, Y.K. Naganovsky, I.K. Shundrina, A.Yu. Snegirev, R. Vinu
    Kinetics of Thermal Decomposition of PMMA at Different Heating Rates and in a Wide Temperature Range
    Thermochimica Acta, 2019, V. 671, Pp 17-25 doi:Thermochimica Acta, Available online 30 , IF=2.251
  841. O.P. Korobeinichev, A.A. Paletsky, M.B. Gonchikzhapov, R.K. Glaznev, I.E. Gerasimov, Y.K. Naganovsky, I.K. Shundrina, A.Yu. Snegirev, R. Vinu
    Kinetics of Thermal Decomposition of PMMA at Different Heating Rates and in a Wide Temperature Range
    Thermochimica Acta, 2019, V. 671, Pp 17-25 doi:Thermochimica Acta, Available online 30 , IF=2.251
  842. O.P. Korobeinichev, A.A. Paletsky, M.B. Gonchikzhapov, R.K. Glaznev, I.E. Gerasimov, Y.K. Naganovsky, I.K. Shundrina, A.Yu. Snegirev, R. Vinu
    Kinetics of Thermal Decomposition of PMMA at Different Heating Rates and in a Wide Temperature Range
    Thermochimica Acta, 2019, V. 671, Pp 17-25 doi:Thermochimica Acta, Available online 30 , IF=2.251
  843. O.P. Korobeinichev, A.A. Paletsky, M.B. Gonchikzhapov, R.K. Glaznev, I.E. Gerasimov, Y.K. Naganovsky, I.K. Shundrina, A.Yu. Snegirev, R. Vinu
    Kinetics of Thermal Decomposition of PMMA at Different Heating Rates and in a Wide Temperature Range
    Thermochimica Acta, 2019, V. 671, Pp 17-25 doi:Thermochimica Acta, Available online 30 , IF=2.251
  844. O.P. Korobeinichev, A.A. Paletsky, M.B. Gonchikzhapov, R.K. Glaznev, I.E. Gerasimov, Y.K. Naganovsky, I.K. Shundrina, A.Yu. Snegirev, R. Vinu
    Kinetics of Thermal Decomposition of PMMA at Different Heating Rates and in a Wide Temperature Range
    Thermochimica Acta, 2019, V. 671, Pp 17-25 doi:Thermochimica Acta, Available online 30 , IF=2.251
  845. O.P. Korobeinichev, A.A. Paletsky, M.B. Gonchikzhapov, R.K. Glaznev, I.E. Gerasimov, Y.K. Naganovsky, I.K. Shundrina, A.Yu. Snegirev, R. Vinu
    Kinetics of Thermal Decomposition of PMMA at Different Heating Rates and in a Wide Temperature Range
    Thermochimica Acta, 2019, V. 671, Pp 17-25 doi:Thermochimica Acta, Available online 30 , IF=2.251
  846. O.P. Korobeinichev, A.A. Paletsky, M.B. Gonchikzhapov, R.K. Glaznev, I.E. Gerasimov, Y.K. Naganovsky, I.K. Shundrina, A.Yu. Snegirev, R. Vinu
    Kinetics of Thermal Decomposition of PMMA at Different Heating Rates and in a Wide Temperature Range
    Thermochimica Acta, 2019, V. 671, Pp 17-25 doi:Thermochimica Acta, Available online 30 , IF=2.251
  847. O.P. Korobeinichev, A.A. Paletsky, M.B. Gonchikzhapov, R.K. Glaznev, I.E. Gerasimov, Y.K. Naganovsky, I.K. Shundrina, A.Yu. Snegirev, R. Vinu
    Kinetics of Thermal Decomposition of PMMA at Different Heating Rates and in a Wide Temperature Range
    Thermochimica Acta, 2019, V. 671, Pp 17-25 doi:Thermochimica Acta, Available online 30 , IF=2.251
  848. I.S. Merenkov, M.S. Myshenkov, Yu.M. Zhukov, Yo. Sato, T.S. Frolova, D.V. Danilov, I.A. Kasatkin, O.S. Medvedev, R.V. Pushkarev, O.I. Sinitsyna, M. Terauchi, I.A. Zvereva, M.L. Kosinova, K. Ostrikov
    Orientation-controlled, low-temperature plasma growth and applications of h-BN nanosheets
    Nano Research, 2019, V. 12, N 1, pp 91-99 doi:10.1007/s12274-018-2185-7, IF=8.515
  849. I.S. Merenkov, M.S. Myshenkov, Yu.M. Zhukov, Yo. Sato, T.S. Frolova, D.V. Danilov, I.A. Kasatkin, O.S. Medvedev, R.V. Pushkarev, O.I. Sinitsyna, M. Terauchi, I.A. Zvereva, M.L. Kosinova, K. Ostrikov
    Orientation-controlled, low-temperature plasma growth and applications of h-BN nanosheets
    Nano Research, 2019, V. 12, N 1, pp 91-99 doi:10.1007/s12274-018-2185-7, IF=8.515
  850. I.S. Merenkov, M.S. Myshenkov, Yu.M. Zhukov, Yo. Sato, T.S. Frolova, D.V. Danilov, I.A. Kasatkin, O.S. Medvedev, R.V. Pushkarev, O.I. Sinitsyna, M. Terauchi, I.A. Zvereva, M.L. Kosinova, K. Ostrikov
    Orientation-controlled, low-temperature plasma growth and applications of h-BN nanosheets
    Nano Research, 2019, V. 12, N 1, pp 91-99 doi:10.1007/s12274-018-2185-7, IF=8.515
  851. I.S. Merenkov, M.S. Myshenkov, Yu.M. Zhukov, Yo. Sato, T.S. Frolova, D.V. Danilov, I.A. Kasatkin, O.S. Medvedev, R.V. Pushkarev, O.I. Sinitsyna, M. Terauchi, I.A. Zvereva, M.L. Kosinova, K. Ostrikov
    Orientation-controlled, low-temperature plasma growth and applications of h-BN nanosheets
    Nano Research, 2019, V. 12, N 1, pp 91-99 doi:10.1007/s12274-018-2185-7, IF=8.515
  852. I.S. Merenkov, M.S. Myshenkov, Yu.M. Zhukov, Yo. Sato, T.S. Frolova, D.V. Danilov, I.A. Kasatkin, O.S. Medvedev, R.V. Pushkarev, O.I. Sinitsyna, M. Terauchi, I.A. Zvereva, M.L. Kosinova, K. Ostrikov
    Orientation-controlled, low-temperature plasma growth and applications of h-BN nanosheets
    Nano Research, 2019, V. 12, N 1, pp 91-99 doi:10.1007/s12274-018-2185-7, IF=8.515
  853. I.S. Merenkov, M.S. Myshenkov, Yu.M. Zhukov, Yo. Sato, T.S. Frolova, D.V. Danilov, I.A. Kasatkin, O.S. Medvedev, R.V. Pushkarev, O.I. Sinitsyna, M. Terauchi, I.A. Zvereva, M.L. Kosinova, K. Ostrikov
    Orientation-controlled, low-temperature plasma growth and applications of h-BN nanosheets
    Nano Research, 2019, V. 12, N 1, pp 91-99 doi:10.1007/s12274-018-2185-7, IF=8.515
  854. I.S. Merenkov, M.S. Myshenkov, Yu.M. Zhukov, Yo. Sato, T.S. Frolova, D.V. Danilov, I.A. Kasatkin, O.S. Medvedev, R.V. Pushkarev, O.I. Sinitsyna, M. Terauchi, I.A. Zvereva, M.L. Kosinova, K. Ostrikov
    Orientation-controlled, low-temperature plasma growth and applications of h-BN nanosheets
    Nano Research, 2019, V. 12, N 1, pp 91-99 doi:10.1007/s12274-018-2185-7, IF=8.515
  855. I.S. Merenkov, M.S. Myshenkov, Yu.M. Zhukov, Yo. Sato, T.S. Frolova, D.V. Danilov, I.A. Kasatkin, O.S. Medvedev, R.V. Pushkarev, O.I. Sinitsyna, M. Terauchi, I.A. Zvereva, M.L. Kosinova, K. Ostrikov
    Orientation-controlled, low-temperature plasma growth and applications of h-BN nanosheets
    Nano Research, 2019, V. 12, N 1, pp 91-99 doi:10.1007/s12274-018-2185-7, IF=8.515
  856. I.S. Merenkov, M.S. Myshenkov, Yu.M. Zhukov, Yo. Sato, T.S. Frolova, D.V. Danilov, I.A. Kasatkin, O.S. Medvedev, R.V. Pushkarev, O.I. Sinitsyna, M. Terauchi, I.A. Zvereva, M.L. Kosinova, K. Ostrikov
    Orientation-controlled, low-temperature plasma growth and applications of h-BN nanosheets
    Nano Research, 2019, V. 12, N 1, pp 91-99 doi:10.1007/s12274-018-2185-7, IF=8.515
  857. I.S. Merenkov, M.S. Myshenkov, Yu.M. Zhukov, Yo. Sato, T.S. Frolova, D.V. Danilov, I.A. Kasatkin, O.S. Medvedev, R.V. Pushkarev, O.I. Sinitsyna, M. Terauchi, I.A. Zvereva, M.L. Kosinova, K. Ostrikov
    Orientation-controlled, low-temperature plasma growth and applications of h-BN nanosheets
    Nano Research, 2019, V. 12, N 1, pp 91-99 doi:10.1007/s12274-018-2185-7, IF=8.515
  858. I.S. Merenkov, M.S. Myshenkov, Yu.M. Zhukov, Yo. Sato, T.S. Frolova, D.V. Danilov, I.A. Kasatkin, O.S. Medvedev, R.V. Pushkarev, O.I. Sinitsyna, M. Terauchi, I.A. Zvereva, M.L. Kosinova, K. Ostrikov
    Orientation-controlled, low-temperature plasma growth and applications of h-BN nanosheets
    Nano Research, 2019, V. 12, N 1, pp 91-99 doi:10.1007/s12274-018-2185-7, IF=8.515
  859. I.S. Merenkov, M.S. Myshenkov, Yu.M. Zhukov, Yo. Sato, T.S. Frolova, D.V. Danilov, I.A. Kasatkin, O.S. Medvedev, R.V. Pushkarev, O.I. Sinitsyna, M. Terauchi, I.A. Zvereva, M.L. Kosinova, K. Ostrikov
    Orientation-controlled, low-temperature plasma growth and applications of h-BN nanosheets
    Nano Research, 2019, V. 12, N 1, pp 91-99 doi:10.1007/s12274-018-2185-7, IF=8.515
  860. I.S. Merenkov, M.S. Myshenkov, Yu.M. Zhukov, Yo. Sato, T.S. Frolova, D.V. Danilov, I.A. Kasatkin, O.S. Medvedev, R.V. Pushkarev, O.I. Sinitsyna, M. Terauchi, I.A. Zvereva, M.L. Kosinova, K. Ostrikov
    Orientation-controlled, low-temperature plasma growth and applications of h-BN nanosheets
    Nano Research, 2019, V. 12, N 1, pp 91-99 doi:10.1007/s12274-018-2185-7, IF=8.515
  861. С.В. Деревяшкин, Е.А. Соболева, В.В. Шелковников, А.И. Малышев, В.П. Корольков
    Маскирующие свойства структур на основе триакриламидного производного полифторхалкона при жидкостном и реактивном ионном травлении
    Микроэлектроника, 2019. №1, С. 16-30. (Masking Properties of Structures Based on a Triacrylamide Derivative of Polyfluorochalcone at Wet and Reactive Ion Etching/ S. V. Derevyashkin, E. A. Soboleva V. V. Shelkovnikov, A. I. Malyshev, V. P. Korolkov// Russian Microelectronics, 2019, V. 48, N 1, pp 13-27 doi:10.1134/S1063739719010037)
  862. С.В. Деревяшкин, Е.А. Соболева, В.В. Шелковников, А.И. Малышев, В.П. Корольков
    Маскирующие свойства структур на основе триакриламидного производного полифторхалкона при жидкостном и реактивном ионном травлении
    Микроэлектроника, 2019. №1, С. 16-30. (Masking Properties of Structures Based on a Triacrylamide Derivative of Polyfluorochalcone at Wet and Reactive Ion Etching/ S. V. Derevyashkin, E. A. Soboleva V. V. Shelkovnikov, A. I. Malyshev, V. P. Korolkov// Russian Microelectronics, 2019, V. 48, N 1, pp 13-27 doi:10.1134/S1063739719010037)
  863. Н.В. Полосьмак, С.С. Шацкая, М.В. Задорожный, Л.П. Кундо, Е.В. Карпова
    Результаты исследований золотых изделий из погребений Хунну Ноин-Ула (Монголия)
    Археология, этнография и антропология Евразии. 2019. Т. 47. № 1. С. 83-94. (The Xiongnu Gold from Noin-Ula (Mongolia)/ N.V. Polosmak, S.S. Shatskaya, M.V. Zadorozhnyy, L.P. Kundo, E.V. Karpova// Archaeology, Ethnology and Anthropology of Eurasia, 2019, V. 47, N 1, Pp 83-94 doi:10.17746/1563-0110.2019.47.1.083-094)
  864. Н.В. Полосьмак, С.С. Шацкая, М.В. Задорожный, Л.П. Кундо, Е.В. Карпова
    Результаты исследований золотых изделий из погребений Хунну Ноин-Ула (Монголия)
    Археология, этнография и антропология Евразии. 2019. Т. 47. № 1. С. 83-94. (The Xiongnu Gold from Noin-Ula (Mongolia)/ N.V. Polosmak, S.S. Shatskaya, M.V. Zadorozhnyy, L.P. Kundo, E.V. Karpova// Archaeology, Ethnology and Anthropology of Eurasia, 2019, V. 47, N 1, Pp 83-94 doi:10.17746/1563-0110.2019.47.1.083-094)
  865. Н.В. Полосьмак, С.С. Шацкая, М.В. Задорожный, Л.П. Кундо, Е.В. Карпова
    Результаты исследований золотых изделий из погребений Хунну Ноин-Ула (Монголия)
    Археология, этнография и антропология Евразии. 2019. Т. 47. № 1. С. 83-94. (The Xiongnu Gold from Noin-Ula (Mongolia)/ N.V. Polosmak, S.S. Shatskaya, M.V. Zadorozhnyy, L.P. Kundo, E.V. Karpova// Archaeology, Ethnology and Anthropology of Eurasia, 2019, V. 47, N 1, Pp 83-94 doi:10.17746/1563-0110.2019.47.1.083-094)
  866. Н.В. Полосьмак, С.С. Шацкая, М.В. Задорожный, Л.П. Кундо, Е.В. Карпова
    Результаты исследований золотых изделий из погребений Хунну Ноин-Ула (Монголия)
    Археология, этнография и антропология Евразии. 2019. Т. 47. № 1. С. 83-94. (The Xiongnu Gold from Noin-Ula (Mongolia)/ N.V. Polosmak, S.S. Shatskaya, M.V. Zadorozhnyy, L.P. Kundo, E.V. Karpova// Archaeology, Ethnology and Anthropology of Eurasia, 2019, V. 47, N 1, Pp 83-94 doi:10.17746/1563-0110.2019.47.1.083-094)
  867. A.A. Mannanov, M.S. Kazantsev, A.D. Kuimov, V.G. Konstantinov, D.I. Dominskiy, V.A. Trukhanov, D.S. Anisimov, N.V. Gultikov, V.V. Bruevich, I.P. Koskin, A.A. Sonina, T.V. Rybalova, I.K. Shundrina, E.A. Mostovich, D.Yu. Paraschuk, M.S. Pshenichnikov
    Long-range exciton transport in brightly fluorescent furan/phenylene co-oligomer crystals
    J. Mater. Chem. C, 2019, V. 7, N 1, Pp 60-68 doi:10.1039/C8TC04151B, IF=6.641
  868. A.A. Mannanov, M.S. Kazantsev, A.D. Kuimov, V.G. Konstantinov, D.I. Dominskiy, V.A. Trukhanov, D.S. Anisimov, N.V. Gultikov, V.V. Bruevich, I.P. Koskin, A.A. Sonina, T.V. Rybalova, I.K. Shundrina, E.A. Mostovich, D.Yu. Paraschuk, M.S. Pshenichnikov
    Long-range exciton transport in brightly fluorescent furan/phenylene co-oligomer crystals
    J. Mater. Chem. C, 2019, V. 7, N 1, Pp 60-68 doi:10.1039/C8TC04151B, IF=6.641
  869. A.A. Mannanov, M.S. Kazantsev, A.D. Kuimov, V.G. Konstantinov, D.I. Dominskiy, V.A. Trukhanov, D.S. Anisimov, N.V. Gultikov, V.V. Bruevich, I.P. Koskin, A.A. Sonina, T.V. Rybalova, I.K. Shundrina, E.A. Mostovich, D.Yu. Paraschuk, M.S. Pshenichnikov
    Long-range exciton transport in brightly fluorescent furan/phenylene co-oligomer crystals
    J. Mater. Chem. C, 2019, V. 7, N 1, Pp 60-68 doi:10.1039/C8TC04151B, IF=6.641
  870. A.A. Mannanov, M.S. Kazantsev, A.D. Kuimov, V.G. Konstantinov, D.I. Dominskiy, V.A. Trukhanov, D.S. Anisimov, N.V. Gultikov, V.V. Bruevich, I.P. Koskin, A.A. Sonina, T.V. Rybalova, I.K. Shundrina, E.A. Mostovich, D.Yu. Paraschuk, M.S. Pshenichnikov
    Long-range exciton transport in brightly fluorescent furan/phenylene co-oligomer crystals
    J. Mater. Chem. C, 2019, V. 7, N 1, Pp 60-68 doi:10.1039/C8TC04151B, IF=6.641
  871. A.A. Mannanov, M.S. Kazantsev, A.D. Kuimov, V.G. Konstantinov, D.I. Dominskiy, V.A. Trukhanov, D.S. Anisimov, N.V. Gultikov, V.V. Bruevich, I.P. Koskin, A.A. Sonina, T.V. Rybalova, I.K. Shundrina, E.A. Mostovich, D.Yu. Paraschuk, M.S. Pshenichnikov
    Long-range exciton transport in brightly fluorescent furan/phenylene co-oligomer crystals
    J. Mater. Chem. C, 2019, V. 7, N 1, Pp 60-68 doi:10.1039/C8TC04151B, IF=6.641
  872. A.A. Mannanov, M.S. Kazantsev, A.D. Kuimov, V.G. Konstantinov, D.I. Dominskiy, V.A. Trukhanov, D.S. Anisimov, N.V. Gultikov, V.V. Bruevich, I.P. Koskin, A.A. Sonina, T.V. Rybalova, I.K. Shundrina, E.A. Mostovich, D.Yu. Paraschuk, M.S. Pshenichnikov
    Long-range exciton transport in brightly fluorescent furan/phenylene co-oligomer crystals
    J. Mater. Chem. C, 2019, V. 7, N 1, Pp 60-68 doi:10.1039/C8TC04151B, IF=6.641
  873. A.A. Mannanov, M.S. Kazantsev, A.D. Kuimov, V.G. Konstantinov, D.I. Dominskiy, V.A. Trukhanov, D.S. Anisimov, N.V. Gultikov, V.V. Bruevich, I.P. Koskin, A.A. Sonina, T.V. Rybalova, I.K. Shundrina, E.A. Mostovich, D.Yu. Paraschuk, M.S. Pshenichnikov
    Long-range exciton transport in brightly fluorescent furan/phenylene co-oligomer crystals
    J. Mater. Chem. C, 2019, V. 7, N 1, Pp 60-68 doi:10.1039/C8TC04151B, IF=6.641
  874. A.A. Mannanov, M.S. Kazantsev, A.D. Kuimov, V.G. Konstantinov, D.I. Dominskiy, V.A. Trukhanov, D.S. Anisimov, N.V. Gultikov, V.V. Bruevich, I.P. Koskin, A.A. Sonina, T.V. Rybalova, I.K. Shundrina, E.A. Mostovich, D.Yu. Paraschuk, M.S. Pshenichnikov
    Long-range exciton transport in brightly fluorescent furan/phenylene co-oligomer crystals
    J. Mater. Chem. C, 2019, V. 7, N 1, Pp 60-68 doi:10.1039/C8TC04151B, IF=6.641
  875. A.A. Mannanov, M.S. Kazantsev, A.D. Kuimov, V.G. Konstantinov, D.I. Dominskiy, V.A. Trukhanov, D.S. Anisimov, N.V. Gultikov, V.V. Bruevich, I.P. Koskin, A.A. Sonina, T.V. Rybalova, I.K. Shundrina, E.A. Mostovich, D.Yu. Paraschuk, M.S. Pshenichnikov
    Long-range exciton transport in brightly fluorescent furan/phenylene co-oligomer crystals
    J. Mater. Chem. C, 2019, V. 7, N 1, Pp 60-68 doi:10.1039/C8TC04151B, IF=6.641
  876. A.L. Zakharenko, O.A. Luzina, D.N. Sokolov, V.I. Kaledin, V.P. Nikolin, N.A. Popova, J. Patel, O.D. Zakharova, A.A. Chepanova, A. Zafar, J. Reynisson, E. Leung, I.K-H. Leung, K.P. Volcho, N.F. Salakhutdinov, O.I. Lavrik
    Novel tyrosyl-DNA phosphodiesterase 1 inhibitors enhance the therapeutic impact of topoteсan on in vivo tumor models
    European Journal of Medicinal Chemistry, 2019, V. 161, Pages 581-593 doi:10.1016/j.ejmech.2018.10.055, IF=4.833
  877. A.L. Zakharenko, O.A. Luzina, D.N. Sokolov, V.I. Kaledin, V.P. Nikolin, N.A. Popova, J. Patel, O.D. Zakharova, A.A. Chepanova, A. Zafar, J. Reynisson, E. Leung, I.K-H. Leung, K.P. Volcho, N.F. Salakhutdinov, O.I. Lavrik
    Novel tyrosyl-DNA phosphodiesterase 1 inhibitors enhance the therapeutic impact of topoteсan on in vivo tumor models
    European Journal of Medicinal Chemistry, 2019, V. 161, Pages 581-593 doi:10.1016/j.ejmech.2018.10.055, IF=4.833
  878. A.L. Zakharenko, O.A. Luzina, D.N. Sokolov, V.I. Kaledin, V.P. Nikolin, N.A. Popova, J. Patel, O.D. Zakharova, A.A. Chepanova, A. Zafar, J. Reynisson, E. Leung, I.K-H. Leung, K.P. Volcho, N.F. Salakhutdinov, O.I. Lavrik
    Novel tyrosyl-DNA phosphodiesterase 1 inhibitors enhance the therapeutic impact of topoteсan on in vivo tumor models
    European Journal of Medicinal Chemistry, 2019, V. 161, Pages 581-593 doi:10.1016/j.ejmech.2018.10.055, IF=4.833
  879. A.L. Zakharenko, O.A. Luzina, D.N. Sokolov, V.I. Kaledin, V.P. Nikolin, N.A. Popova, J. Patel, O.D. Zakharova, A.A. Chepanova, A. Zafar, J. Reynisson, E. Leung, I.K-H. Leung, K.P. Volcho, N.F. Salakhutdinov, O.I. Lavrik
    Novel tyrosyl-DNA phosphodiesterase 1 inhibitors enhance the therapeutic impact of topoteсan on in vivo tumor models
    European Journal of Medicinal Chemistry, 2019, V. 161, Pages 581-593 doi:10.1016/j.ejmech.2018.10.055, IF=4.833
  880. A.L. Zakharenko, O.A. Luzina, D.N. Sokolov, V.I. Kaledin, V.P. Nikolin, N.A. Popova, J. Patel, O.D. Zakharova, A.A. Chepanova, A. Zafar, J. Reynisson, E. Leung, I.K-H. Leung, K.P. Volcho, N.F. Salakhutdinov, O.I. Lavrik
    Novel tyrosyl-DNA phosphodiesterase 1 inhibitors enhance the therapeutic impact of topoteсan on in vivo tumor models
    European Journal of Medicinal Chemistry, 2019, V. 161, Pages 581-593 doi:10.1016/j.ejmech.2018.10.055, IF=4.833
  881. A.L. Zakharenko, O.A. Luzina, D.N. Sokolov, V.I. Kaledin, V.P. Nikolin, N.A. Popova, J. Patel, O.D. Zakharova, A.A. Chepanova, A. Zafar, J. Reynisson, E. Leung, I.K-H. Leung, K.P. Volcho, N.F. Salakhutdinov, O.I. Lavrik
    Novel tyrosyl-DNA phosphodiesterase 1 inhibitors enhance the therapeutic impact of topoteсan on in vivo tumor models
    European Journal of Medicinal Chemistry, 2019, V. 161, Pages 581-593 doi:10.1016/j.ejmech.2018.10.055, IF=4.833
  882. A.L. Zakharenko, O.A. Luzina, D.N. Sokolov, V.I. Kaledin, V.P. Nikolin, N.A. Popova, J. Patel, O.D. Zakharova, A.A. Chepanova, A. Zafar, J. Reynisson, E. Leung, I.K-H. Leung, K.P. Volcho, N.F. Salakhutdinov, O.I. Lavrik
    Novel tyrosyl-DNA phosphodiesterase 1 inhibitors enhance the therapeutic impact of topoteсan on in vivo tumor models
    European Journal of Medicinal Chemistry, 2019, V. 161, Pages 581-593 doi:10.1016/j.ejmech.2018.10.055, IF=4.833
  883. A.L. Zakharenko, O.A. Luzina, D.N. Sokolov, V.I. Kaledin, V.P. Nikolin, N.A. Popova, J. Patel, O.D. Zakharova, A.A. Chepanova, A. Zafar, J. Reynisson, E. Leung, I.K-H. Leung, K.P. Volcho, N.F. Salakhutdinov, O.I. Lavrik
    Novel tyrosyl-DNA phosphodiesterase 1 inhibitors enhance the therapeutic impact of topoteсan on in vivo tumor models
    European Journal of Medicinal Chemistry, 2019, V. 161, Pages 581-593 doi:10.1016/j.ejmech.2018.10.055, IF=4.833
  884. A.L. Zakharenko, O.A. Luzina, D.N. Sokolov, V.I. Kaledin, V.P. Nikolin, N.A. Popova, J. Patel, O.D. Zakharova, A.A. Chepanova, A. Zafar, J. Reynisson, E. Leung, I.K-H. Leung, K.P. Volcho, N.F. Salakhutdinov, O.I. Lavrik
    Novel tyrosyl-DNA phosphodiesterase 1 inhibitors enhance the therapeutic impact of topoteсan on in vivo tumor models
    European Journal of Medicinal Chemistry, 2019, V. 161, Pages 581-593 doi:10.1016/j.ejmech.2018.10.055, IF=4.833
  885. A.L. Zakharenko, O.A. Luzina, D.N. Sokolov, V.I. Kaledin, V.P. Nikolin, N.A. Popova, J. Patel, O.D. Zakharova, A.A. Chepanova, A. Zafar, J. Reynisson, E. Leung, I.K-H. Leung, K.P. Volcho, N.F. Salakhutdinov, O.I. Lavrik
    Novel tyrosyl-DNA phosphodiesterase 1 inhibitors enhance the therapeutic impact of topoteсan on in vivo tumor models
    European Journal of Medicinal Chemistry, 2019, V. 161, Pages 581-593 doi:10.1016/j.ejmech.2018.10.055, IF=4.833
  886. A.L. Zakharenko, O.A. Luzina, D.N. Sokolov, V.I. Kaledin, V.P. Nikolin, N.A. Popova, J. Patel, O.D. Zakharova, A.A. Chepanova, A. Zafar, J. Reynisson, E. Leung, I.K-H. Leung, K.P. Volcho, N.F. Salakhutdinov, O.I. Lavrik
    Novel tyrosyl-DNA phosphodiesterase 1 inhibitors enhance the therapeutic impact of topoteсan on in vivo tumor models
    European Journal of Medicinal Chemistry, 2019, V. 161, Pages 581-593 doi:10.1016/j.ejmech.2018.10.055, IF=4.833
  887. A.L. Zakharenko, O.A. Luzina, D.N. Sokolov, V.I. Kaledin, V.P. Nikolin, N.A. Popova, J. Patel, O.D. Zakharova, A.A. Chepanova, A. Zafar, J. Reynisson, E. Leung, I.K-H. Leung, K.P. Volcho, N.F. Salakhutdinov, O.I. Lavrik
    Novel tyrosyl-DNA phosphodiesterase 1 inhibitors enhance the therapeutic impact of topoteсan on in vivo tumor models
    European Journal of Medicinal Chemistry, 2019, V. 161, Pages 581-593 doi:10.1016/j.ejmech.2018.10.055, IF=4.833
  888. Т.Е. Кокина, Ю.П. Устименко, М.И. Рахманова, Л.А. Шелудякова, А.М. Агафонцев, П.Е. Плюснин, А.В. Ткачев, С.В. Ларионов
    Люминесцирующие комплексы ZN(II) и CD(II) c хиральными лигандами, содержащими фрагменты 1,10-фенантролина и природных монотерпеноидов (+)-3-карена или (+)-лимонена
    Журнал общей химии. 2019. Т. 89. № 1. С. 98-107. DOI:10.1134/S0044460X19010165 (Luminescent Complexes of Zn(II) and Cd(II) with Chiral Ligands Containing 1,10-Phenanthroline and Natural Monoterpenoids (+)-3-Carene or (+)-Limonene Fragments/ T.E. Kokina, Yu. P. Ustimenko, M.I. Rakhmanova, L.A. Sheludyakova, A.M. Agafontsev, P.E. Plusnin, A.V. Tkachev, S.V.Larionov// Russian Journal of General Chemistry, 2019, V. 89, N 1, pp 87-95 doi:10.1134/S107036321901016X), IF=0.643
  889. Т.Е. Кокина, Ю.П. Устименко, М.И. Рахманова, Л.А. Шелудякова, А.М. Агафонцев, П.Е. Плюснин, А.В. Ткачев, С.В. Ларионов
    Люминесцирующие комплексы ZN(II) и CD(II) c хиральными лигандами, содержащими фрагменты 1,10-фенантролина и природных монотерпеноидов (+)-3-карена или (+)-лимонена
    Журнал общей химии. 2019. Т. 89. № 1. С. 98-107. DOI:10.1134/S0044460X19010165 (Luminescent Complexes of Zn(II) and Cd(II) with Chiral Ligands Containing 1,10-Phenanthroline and Natural Monoterpenoids (+)-3-Carene or (+)-Limonene Fragments/ T.E. Kokina, Yu. P. Ustimenko, M.I. Rakhmanova, L.A. Sheludyakova, A.M. Agafontsev, P.E. Plusnin, A.V. Tkachev, S.V.Larionov// Russian Journal of General Chemistry, 2019, V. 89, N 1, pp 87-95 doi:10.1134/S107036321901016X), IF=0.643
  890. Т.Е. Кокина, Ю.П. Устименко, М.И. Рахманова, Л.А. Шелудякова, А.М. Агафонцев, П.Е. Плюснин, А.В. Ткачев, С.В. Ларионов
    Люминесцирующие комплексы ZN(II) и CD(II) c хиральными лигандами, содержащими фрагменты 1,10-фенантролина и природных монотерпеноидов (+)-3-карена или (+)-лимонена
    Журнал общей химии. 2019. Т. 89. № 1. С. 98-107. DOI:10.1134/S0044460X19010165 (Luminescent Complexes of Zn(II) and Cd(II) with Chiral Ligands Containing 1,10-Phenanthroline and Natural Monoterpenoids (+)-3-Carene or (+)-Limonene Fragments/ T.E. Kokina, Yu. P. Ustimenko, M.I. Rakhmanova, L.A. Sheludyakova, A.M. Agafontsev, P.E. Plusnin, A.V. Tkachev, S.V.Larionov// Russian Journal of General Chemistry, 2019, V. 89, N 1, pp 87-95 doi:10.1134/S107036321901016X), IF=0.643
  891. Т.Е. Кокина, Ю.П. Устименко, М.И. Рахманова, Л.А. Шелудякова, А.М. Агафонцев, П.Е. Плюснин, А.В. Ткачев, С.В. Ларионов
    Люминесцирующие комплексы ZN(II) и CD(II) c хиральными лигандами, содержащими фрагменты 1,10-фенантролина и природных монотерпеноидов (+)-3-карена или (+)-лимонена
    Журнал общей химии. 2019. Т. 89. № 1. С. 98-107. DOI:10.1134/S0044460X19010165 (Luminescent Complexes of Zn(II) and Cd(II) with Chiral Ligands Containing 1,10-Phenanthroline and Natural Monoterpenoids (+)-3-Carene or (+)-Limonene Fragments/ T.E. Kokina, Yu. P. Ustimenko, M.I. Rakhmanova, L.A. Sheludyakova, A.M. Agafontsev, P.E. Plusnin, A.V. Tkachev, S.V.Larionov// Russian Journal of General Chemistry, 2019, V. 89, N 1, pp 87-95 doi:10.1134/S107036321901016X), IF=0.643
  892. Т.Е. Кокина, Ю.П. Устименко, М.И. Рахманова, Л.А. Шелудякова, А.М. Агафонцев, П.Е. Плюснин, А.В. Ткачев, С.В. Ларионов
    Люминесцирующие комплексы ZN(II) и CD(II) c хиральными лигандами, содержащими фрагменты 1,10-фенантролина и природных монотерпеноидов (+)-3-карена или (+)-лимонена
    Журнал общей химии. 2019. Т. 89. № 1. С. 98-107. DOI:10.1134/S0044460X19010165 (Luminescent Complexes of Zn(II) and Cd(II) with Chiral Ligands Containing 1,10-Phenanthroline and Natural Monoterpenoids (+)-3-Carene or (+)-Limonene Fragments/ T.E. Kokina, Yu. P. Ustimenko, M.I. Rakhmanova, L.A. Sheludyakova, A.M. Agafontsev, P.E. Plusnin, A.V. Tkachev, S.V.Larionov// Russian Journal of General Chemistry, 2019, V. 89, N 1, pp 87-95 doi:10.1134/S107036321901016X), IF=0.643
  893. Т.Е. Кокина, Ю.П. Устименко, М.И. Рахманова, Л.А. Шелудякова, А.М. Агафонцев, П.Е. Плюснин, А.В. Ткачев, С.В. Ларионов
    Люминесцирующие комплексы ZN(II) и CD(II) c хиральными лигандами, содержащими фрагменты 1,10-фенантролина и природных монотерпеноидов (+)-3-карена или (+)-лимонена
    Журнал общей химии. 2019. Т. 89. № 1. С. 98-107. DOI:10.1134/S0044460X19010165 (Luminescent Complexes of Zn(II) and Cd(II) with Chiral Ligands Containing 1,10-Phenanthroline and Natural Monoterpenoids (+)-3-Carene or (+)-Limonene Fragments/ T.E. Kokina, Yu. P. Ustimenko, M.I. Rakhmanova, L.A. Sheludyakova, A.M. Agafontsev, P.E. Plusnin, A.V. Tkachev, S.V.Larionov// Russian Journal of General Chemistry, 2019, V. 89, N 1, pp 87-95 doi:10.1134/S107036321901016X), IF=0.643
  894. M.A. Gromova, Yu.V. Kharitonov, M.A. Pokrovskii, I.Yu. Bagryanskaya, A.G. Pokrovskii, E.E. Shul'ts
    Synthetic Transformations of Higher Terpenoids. 37. Synthesis and Cytotoxicity of 4-(Oxazol-2-Yl)-18-Norisopimaranes
    Chemistry of Natural Compounds, 2019, V. 55, N 1, pp 52-59 doi:10.1007/s10600-019-02613-x, IF=0.567
  895. M.A. Gromova, Yu.V. Kharitonov, M.A. Pokrovskii, I.Yu. Bagryanskaya, A.G. Pokrovskii, E.E. Shul'ts
    Synthetic Transformations of Higher Terpenoids. 37. Synthesis and Cytotoxicity of 4-(Oxazol-2-Yl)-18-Norisopimaranes
    Chemistry of Natural Compounds, 2019, V. 55, N 1, pp 52-59 doi:10.1007/s10600-019-02613-x, IF=0.567
  896. И.В. Егорова, В.В. Жидков, И.П. Гринишак, И.Ю. Багрянская, Н.В. Первухина, И.В. Ельцов, Н.В. Куратьева
    Комплексные соединения сурьмы: {[2,6-(OME)2C6H3]3SBCH2C(O)OET}2[HG2I6]2- и {[2,6-(OME)2C6H3]3SBME}2+[HgI4]2- ˙ ДМСО. Синтез и строение
    Журнал неорганической химии. 2019. Т. 64. № 1. С. 15-22. DOI:10.1134/S0044457X19010070 (Antimony Complexes {[2,6-(OME)2C6H3]3SBCH2C(O)OET}2[HG2I6]2- and {[2,6-(OME)2C6H3]3SBME}2+[HgI4]2- ˙ DMSO : Synthesis and Structure/ I. V. Egorova, V. V. Zhidkov, I. P. Grinishak, I. Yu. Bagryanskaya, N. V. Pervukhina, I. V. El'tsov, N. V. Kurat'eva// Russian Journal of Inorganic Chemistry, 2019, V. 64, N 1, pp 28-35 doi:10.1134/S0036023619010078), IF=0.822
  897. И.В. Егорова, В.В. Жидков, И.П. Гринишак, И.Ю. Багрянская, Н.В. Первухина, И.В. Ельцов, Н.В. Куратьева
    Комплексные соединения сурьмы: {[2,6-(OME)2C6H3]3SBCH2C(O)OET}2[HG2I6]2- и {[2,6-(OME)2C6H3]3SBME}2+[HgI4]2- ˙ ДМСО. Синтез и строение
    Журнал неорганической химии. 2019. Т. 64. № 1. С. 15-22. DOI:10.1134/S0044457X19010070 (Antimony Complexes {[2,6-(OME)2C6H3]3SBCH2C(O)OET}2[HG2I6]2- and {[2,6-(OME)2C6H3]3SBME}2+[HgI4]2- ˙ DMSO : Synthesis and Structure/ I. V. Egorova, V. V. Zhidkov, I. P. Grinishak, I. Yu. Bagryanskaya, N. V. Pervukhina, I. V. El'tsov, N. V. Kurat'eva// Russian Journal of Inorganic Chemistry, 2019, V. 64, N 1, pp 28-35 doi:10.1134/S0036023619010078), IF=0.822
  898. И.В. Егорова, В.В. Жидков, И.П. Гринишак, И.Ю. Багрянская, Н.В. Первухина, И.В. Ельцов, Н.В. Куратьева
    Комплексные соединения сурьмы: {[2,6-(OME)2C6H3]3SBCH2C(O)OET}2[HG2I6]2- и {[2,6-(OME)2C6H3]3SBME}2+[HgI4]2- ˙ ДМСО. Синтез и строение
    Журнал неорганической химии. 2019. Т. 64. № 1. С. 15-22. DOI:10.1134/S0044457X19010070 (Antimony Complexes {[2,6-(OME)2C6H3]3SBCH2C(O)OET}2[HG2I6]2- and {[2,6-(OME)2C6H3]3SBME}2+[HgI4]2- ˙ DMSO : Synthesis and Structure/ I. V. Egorova, V. V. Zhidkov, I. P. Grinishak, I. Yu. Bagryanskaya, N. V. Pervukhina, I. V. El'tsov, N. V. Kurat'eva// Russian Journal of Inorganic Chemistry, 2019, V. 64, N 1, pp 28-35 doi:10.1134/S0036023619010078), IF=0.822
  899. И.В. Егорова, В.В. Жидков, И.П. Гринишак, И.Ю. Багрянская, Н.В. Первухина, И.В. Ельцов, Н.В. Куратьева
    Комплексные соединения сурьмы: {[2,6-(OME)2C6H3]3SBCH2C(O)OET}2[HG2I6]2- и {[2,6-(OME)2C6H3]3SBME}2+[HgI4]2- ˙ ДМСО. Синтез и строение
    Журнал неорганической химии. 2019. Т. 64. № 1. С. 15-22. DOI:10.1134/S0044457X19010070 (Antimony Complexes {[2,6-(OME)2C6H3]3SBCH2C(O)OET}2[HG2I6]2- and {[2,6-(OME)2C6H3]3SBME}2+[HgI4]2- ˙ DMSO : Synthesis and Structure/ I. V. Egorova, V. V. Zhidkov, I. P. Grinishak, I. Yu. Bagryanskaya, N. V. Pervukhina, I. V. El'tsov, N. V. Kurat'eva// Russian Journal of Inorganic Chemistry, 2019, V. 64, N 1, pp 28-35 doi:10.1134/S0036023619010078), IF=0.822
  900. И.В. Егорова, В.В. Жидков, И.П. Гринишак, И.Ю. Багрянская, Н.В. Первухина, И.В. Ельцов, Н.В. Куратьева
    Комплексные соединения сурьмы: {[2,6-(OME)2C6H3]3SBCH2C(O)OET}2[HG2I6]2- и {[2,6-(OME)2C6H3]3SBME}2+[HgI4]2- ˙ ДМСО. Синтез и строение
    Журнал неорганической химии. 2019. Т. 64. № 1. С. 15-22. DOI:10.1134/S0044457X19010070 (Antimony Complexes {[2,6-(OME)2C6H3]3SBCH2C(O)OET}2[HG2I6]2- and {[2,6-(OME)2C6H3]3SBME}2+[HgI4]2- ˙ DMSO : Synthesis and Structure/ I. V. Egorova, V. V. Zhidkov, I. P. Grinishak, I. Yu. Bagryanskaya, N. V. Pervukhina, I. V. El'tsov, N. V. Kurat'eva// Russian Journal of Inorganic Chemistry, 2019, V. 64, N 1, pp 28-35 doi:10.1134/S0036023619010078), IF=0.822
  901. И.В. Егорова, В.В. Жидков, И.П. Гринишак, И.Ю. Багрянская, Н.В. Первухина, И.В. Ельцов, Н.В. Куратьева
    Комплексные соединения сурьмы: {[2,6-(OME)2C6H3]3SBCH2C(O)OET}2[HG2I6]2- и {[2,6-(OME)2C6H3]3SBME}2+[HgI4]2- ˙ ДМСО. Синтез и строение
    Журнал неорганической химии. 2019. Т. 64. № 1. С. 15-22. DOI:10.1134/S0044457X19010070 (Antimony Complexes {[2,6-(OME)2C6H3]3SBCH2C(O)OET}2[HG2I6]2- and {[2,6-(OME)2C6H3]3SBME}2+[HgI4]2- ˙ DMSO : Synthesis and Structure/ I. V. Egorova, V. V. Zhidkov, I. P. Grinishak, I. Yu. Bagryanskaya, N. V. Pervukhina, I. V. El'tsov, N. V. Kurat'eva// Russian Journal of Inorganic Chemistry, 2019, V. 64, N 1, pp 28-35 doi:10.1134/S0036023619010078), IF=0.822
  902. Кукина Т.П., Щербаков Д.Н., Геньш К.В., Пантелеева Н.В., Тулышева Е.А., Сальникова О.И., Гражданников А.Е., Колосов П.В., Галицын Г.Ю.
    Биоактивные компоненты эфирного экстракта древесной зелени облепихи HIPPOPHAE RHAMNOIDES L
    Химия растительного сырья. 2019. № 1. С. 157-164. (Bioactive components of ethereal extract of wood greening sea buckthorn Hippophae rhamnoides L./ T.P. Kukina, D.N. Shcherbakov, K.V. Gensh, N.V. Panteleyeva, E. A. Tulysheva, O.I. Sal'nikova, A.Ye. Grazhdannikov, P.V. Kolosov, G.Yu. Galitsyn// Khimiya Rastitel'nogo Syr'ya, 2019, N 1, Pp 157-164 doi:10.14258/jcprm.2019014340)
  903. Кукина Т.П., Щербаков Д.Н., Геньш К.В., Пантелеева Н.В., Тулышева Е.А., Сальникова О.И., Гражданников А.Е., Колосов П.В., Галицын Г.Ю.
    Биоактивные компоненты эфирного экстракта древесной зелени облепихи HIPPOPHAE RHAMNOIDES L
    Химия растительного сырья. 2019. № 1. С. 157-164. (Bioactive components of ethereal extract of wood greening sea buckthorn Hippophae rhamnoides L./ T.P. Kukina, D.N. Shcherbakov, K.V. Gensh, N.V. Panteleyeva, E. A. Tulysheva, O.I. Sal'nikova, A.Ye. Grazhdannikov, P.V. Kolosov, G.Yu. Galitsyn// Khimiya Rastitel'nogo Syr'ya, 2019, N 1, Pp 157-164 doi:10.14258/jcprm.2019014340)
  904. Кукина Т.П., Щербаков Д.Н., Геньш К.В., Пантелеева Н.В., Тулышева Е.А., Сальникова О.И., Гражданников А.Е., Колосов П.В., Галицын Г.Ю.
    Биоактивные компоненты эфирного экстракта древесной зелени облепихи HIPPOPHAE RHAMNOIDES L
    Химия растительного сырья. 2019. № 1. С. 157-164. (Bioactive components of ethereal extract of wood greening sea buckthorn Hippophae rhamnoides L./ T.P. Kukina, D.N. Shcherbakov, K.V. Gensh, N.V. Panteleyeva, E. A. Tulysheva, O.I. Sal'nikova, A.Ye. Grazhdannikov, P.V. Kolosov, G.Yu. Galitsyn// Khimiya Rastitel'nogo Syr'ya, 2019, N 1, Pp 157-164 doi:10.14258/jcprm.2019014340)
  905. Кукина Т.П., Щербаков Д.Н., Геньш К.В., Пантелеева Н.В., Тулышева Е.А., Сальникова О.И., Гражданников А.Е., Колосов П.В., Галицын Г.Ю.
    Биоактивные компоненты эфирного экстракта древесной зелени облепихи HIPPOPHAE RHAMNOIDES L
    Химия растительного сырья. 2019. № 1. С. 157-164. (Bioactive components of ethereal extract of wood greening sea buckthorn Hippophae rhamnoides L./ T.P. Kukina, D.N. Shcherbakov, K.V. Gensh, N.V. Panteleyeva, E. A. Tulysheva, O.I. Sal'nikova, A.Ye. Grazhdannikov, P.V. Kolosov, G.Yu. Galitsyn// Khimiya Rastitel'nogo Syr'ya, 2019, N 1, Pp 157-164 doi:10.14258/jcprm.2019014340)
  906. Кукина Т.П., Щербаков Д.Н., Геньш К.В., Пантелеева Н.В., Тулышева Е.А., Сальникова О.И., Гражданников А.Е., Колосов П.В., Галицын Г.Ю.
    Биоактивные компоненты эфирного экстракта древесной зелени облепихи HIPPOPHAE RHAMNOIDES L
    Химия растительного сырья. 2019. № 1. С. 157-164. (Bioactive components of ethereal extract of wood greening sea buckthorn Hippophae rhamnoides L./ T.P. Kukina, D.N. Shcherbakov, K.V. Gensh, N.V. Panteleyeva, E. A. Tulysheva, O.I. Sal'nikova, A.Ye. Grazhdannikov, P.V. Kolosov, G.Yu. Galitsyn// Khimiya Rastitel'nogo Syr'ya, 2019, N 1, Pp 157-164 doi:10.14258/jcprm.2019014340)
  907. Кукина Т.П., Щербаков Д.Н., Геньш К.В., Пантелеева Н.В., Тулышева Е.А., Сальникова О.И., Гражданников А.Е., Колосов П.В., Галицын Г.Ю.
    Биоактивные компоненты эфирного экстракта древесной зелени облепихи HIPPOPHAE RHAMNOIDES L
    Химия растительного сырья. 2019. № 1. С. 157-164. (Bioactive components of ethereal extract of wood greening sea buckthorn Hippophae rhamnoides L./ T.P. Kukina, D.N. Shcherbakov, K.V. Gensh, N.V. Panteleyeva, E. A. Tulysheva, O.I. Sal'nikova, A.Ye. Grazhdannikov, P.V. Kolosov, G.Yu. Galitsyn// Khimiya Rastitel'nogo Syr'ya, 2019, N 1, Pp 157-164 doi:10.14258/jcprm.2019014340)
  908. Л.М. Горностаев, О.И. Фоминых, Т.И. Лаврикова, Ю.Г. Халявина, Ю.В. Гатилов, Г.А. Сташина
    Реакции 1,4-нафтохинона и 5-гидрокси-1,4-нафтохинона с нингидрином
    Известия Академии наук. Серия химическая. 2019. № 1. С. 86-91. (Reactions of 1,4-naphthoquinone and 5-hydroxy-1,4-naphthoquinone with ninhydrin/ L.M. Gornostaev, O.I. Fominyh, T.I. Lavrikova, Yu.G. Khalyavina, Yu.V. Gatilov, G.A. Stashina// Russian Chemical Bulletin, V. 68, N 1, pp 86-91 doi:10.1007/s11172-019-2420-8), IF=1.014
  909. Л.М. Горностаев, О.И. Фоминых, Т.И. Лаврикова, Ю.Г. Халявина, Ю.В. Гатилов, Г.А. Сташина
    Реакции 1,4-нафтохинона и 5-гидрокси-1,4-нафтохинона с нингидрином
    Известия Академии наук. Серия химическая. 2019. № 1. С. 86-91. (Reactions of 1,4-naphthoquinone and 5-hydroxy-1,4-naphthoquinone with ninhydrin/ L.M. Gornostaev, O.I. Fominyh, T.I. Lavrikova, Yu.G. Khalyavina, Yu.V. Gatilov, G.A. Stashina// Russian Chemical Bulletin, V. 68, N 1, pp 86-91 doi:10.1007/s11172-019-2420-8), IF=1.014
  910. Л.М. Горностаев, О.И. Фоминых, Т.И. Лаврикова, Ю.Г. Халявина, Ю.В. Гатилов, Г.А. Сташина
    Реакции 1,4-нафтохинона и 5-гидрокси-1,4-нафтохинона с нингидрином
    Известия Академии наук. Серия химическая. 2019. № 1. С. 86-91. (Reactions of 1,4-naphthoquinone and 5-hydroxy-1,4-naphthoquinone with ninhydrin/ L.M. Gornostaev, O.I. Fominyh, T.I. Lavrikova, Yu.G. Khalyavina, Yu.V. Gatilov, G.A. Stashina// Russian Chemical Bulletin, V. 68, N 1, pp 86-91 doi:10.1007/s11172-019-2420-8), IF=1.014
  911. Л.М. Горностаев, О.И. Фоминых, Т.И. Лаврикова, Ю.Г. Халявина, Ю.В. Гатилов, Г.А. Сташина
    Реакции 1,4-нафтохинона и 5-гидрокси-1,4-нафтохинона с нингидрином
    Известия Академии наук. Серия химическая. 2019. № 1. С. 86-91. (Reactions of 1,4-naphthoquinone and 5-hydroxy-1,4-naphthoquinone with ninhydrin/ L.M. Gornostaev, O.I. Fominyh, T.I. Lavrikova, Yu.G. Khalyavina, Yu.V. Gatilov, G.A. Stashina// Russian Chemical Bulletin, V. 68, N 1, pp 86-91 doi:10.1007/s11172-019-2420-8), IF=1.014
  912. Л.М. Горностаев, О.И. Фоминых, Т.И. Лаврикова, Ю.Г. Халявина, Ю.В. Гатилов, Г.А. Сташина
    Реакции 1,4-нафтохинона и 5-гидрокси-1,4-нафтохинона с нингидрином
    Известия Академии наук. Серия химическая. 2019. № 1. С. 86-91. (Reactions of 1,4-naphthoquinone and 5-hydroxy-1,4-naphthoquinone with ninhydrin/ L.M. Gornostaev, O.I. Fominyh, T.I. Lavrikova, Yu.G. Khalyavina, Yu.V. Gatilov, G.A. Stashina// Russian Chemical Bulletin, V. 68, N 1, pp 86-91 doi:10.1007/s11172-019-2420-8), IF=1.014
  913. L. Lampp, O.Yu. Rogozhnikova, D.V. Trukhin, V.M. Tormyshev, M.l K. Bowman, N. Devasahayam, M.C. Krishna, K. Mader, P. Imming
    A radical containing injectable in-situ-oleogel and emulgel for prolonged in-vivo oxygen measurements with CW EPR
    Free Radical Biology and Medicine, 2019, V. 130, Pp 120-127 doi:10.1016/j.freeradbiomed.2018.10.442, IF=5.657
  914. L. Lampp, O.Yu. Rogozhnikova, D.V. Trukhin, V.M. Tormyshev, M.l K. Bowman, N. Devasahayam, M.C. Krishna, K. Mader, P. Imming
    A radical containing injectable in-situ-oleogel and emulgel for prolonged in-vivo oxygen measurements with CW EPR
    Free Radical Biology and Medicine, 2019, V. 130, Pp 120-127 doi:10.1016/j.freeradbiomed.2018.10.442, IF=5.657
  915. L. Lampp, O.Yu. Rogozhnikova, D.V. Trukhin, V.M. Tormyshev, M.l K. Bowman, N. Devasahayam, M.C. Krishna, K. Mader, P. Imming
    A radical containing injectable in-situ-oleogel and emulgel for prolonged in-vivo oxygen measurements with CW EPR
    Free Radical Biology and Medicine, 2019, V. 130, Pp 120-127 doi:10.1016/j.freeradbiomed.2018.10.442, IF=5.657
  916. L. Lampp, O.Yu. Rogozhnikova, D.V. Trukhin, V.M. Tormyshev, M.l K. Bowman, N. Devasahayam, M.C. Krishna, K. Mader, P. Imming
    A radical containing injectable in-situ-oleogel and emulgel for prolonged in-vivo oxygen measurements with CW EPR
    Free Radical Biology and Medicine, 2019, V. 130, Pp 120-127 doi:10.1016/j.freeradbiomed.2018.10.442, IF=5.657
  917. L. Lampp, O.Yu. Rogozhnikova, D.V. Trukhin, V.M. Tormyshev, M.l K. Bowman, N. Devasahayam, M.C. Krishna, K. Mader, P. Imming
    A radical containing injectable in-situ-oleogel and emulgel for prolonged in-vivo oxygen measurements with CW EPR
    Free Radical Biology and Medicine, 2019, V. 130, Pp 120-127 doi:10.1016/j.freeradbiomed.2018.10.442, IF=5.657
  918. L. Lampp, O.Yu. Rogozhnikova, D.V. Trukhin, V.M. Tormyshev, M.l K. Bowman, N. Devasahayam, M.C. Krishna, K. Mader, P. Imming
    A radical containing injectable in-situ-oleogel and emulgel for prolonged in-vivo oxygen measurements with CW EPR
    Free Radical Biology and Medicine, 2019, V. 130, Pp 120-127 doi:10.1016/j.freeradbiomed.2018.10.442, IF=5.657
  919. P. Fedyushin, E. Panteleeva, I. Bagryanskaya, K. Maryunina, K. Inoue, D. Stass, E. Tretyakov
    An approach to fluorinated phthalonitriles containing a nitronyl nitroxide or iminonitroxide moiety
    Journal of Fluorine Chemistry, 2019, V. 217, Pp 1-7 doi:10.1016/j.jfluchem.2018.10.016, IF=2.055
  920. P. Fedyushin, E. Panteleeva, I. Bagryanskaya, K. Maryunina, K. Inoue, D. Stass, E. Tretyakov
    An approach to fluorinated phthalonitriles containing a nitronyl nitroxide or iminonitroxide moiety
    Journal of Fluorine Chemistry, 2019, V. 217, Pp 1-7 doi:10.1016/j.jfluchem.2018.10.016, IF=2.055
  921. P. Fedyushin, E. Panteleeva, I. Bagryanskaya, K. Maryunina, K. Inoue, D. Stass, E. Tretyakov
    An approach to fluorinated phthalonitriles containing a nitronyl nitroxide or iminonitroxide moiety
    Journal of Fluorine Chemistry, 2019, V. 217, Pp 1-7 doi:10.1016/j.jfluchem.2018.10.016, IF=2.055

2018

Reviews, articles

  1. D. Stass, E. Tretyakov
    Estimation of Absolute Spin Counts in Nitronyl Nitroxide-Bearing Graphene Nanoribbons
    Magnetochemistry, 2019, V.5, N 2, P 32-40 doi:10.3390/magnetochemistry5020032
  2. M.Yu. Ivanov, S.A. Prikhod'ko, N. Yu. Adonin, I.A. Kirilyuk, S.V. Adichtchev, N.V. Surovtsev, S.A. Dzuba, M.V. Fedin
    Structural Anomalies in Ionic Liquids near the Glass Transition Revealed by Pulse EPR
    J. Phys. Chem. Lett., Publication Date (Web): July 27, 2018 (Chemical and Dynamical Processes in Solution; Polymers, Glasses, and Soft Matter) doi:10.1021/acs.jpclett.8b02097, IF=8.708
  3. M.Yu. Ivanov, S.A. Prikhod'ko, N. Yu. Adonin, I.A. Kirilyuk, S.V. Adichtchev, N.V. Surovtsev, S.A. Dzuba, M.V. Fedin
    Structural Anomalies in Ionic Liquids near the Glass Transition Revealed by Pulse EPR
    J. Phys. Chem. Lett., Publication Date (Web): July 27, 2018 (Chemical and Dynamical Processes in Solution; Polymers, Glasses, and Soft Matter) doi:10.1021/acs.jpclett.8b02097, IF=8.708
  4. M.Yu. Ivanov, S.A. Prikhod'ko, N. Yu. Adonin, I.A. Kirilyuk, S.V. Adichtchev, N.V. Surovtsev, S.A. Dzuba, M.V. Fedin
    Structural Anomalies in Ionic Liquids near the Glass Transition Revealed by Pulse EPR
    J. Phys. Chem. Lett., Publication Date (Web): July 27, 2018 (Chemical and Dynamical Processes in Solution; Polymers, Glasses, and Soft Matter) doi:10.1021/acs.jpclett.8b02097, IF=8.708
  5. M.Yu. Ivanov, S.A. Prikhod'ko, N. Yu. Adonin, I.A. Kirilyuk, S.V. Adichtchev, N.V. Surovtsev, S.A. Dzuba, M.V. Fedin
    Structural Anomalies in Ionic Liquids near the Glass Transition Revealed by Pulse EPR
    J. Phys. Chem. Lett., Publication Date (Web): July 27, 2018 (Chemical and Dynamical Processes in Solution; Polymers, Glasses, and Soft Matter) doi:10.1021/acs.jpclett.8b02097, IF=8.708
  6. M.Yu. Ivanov, S.A. Prikhod'ko, N. Yu. Adonin, I.A. Kirilyuk, S.V. Adichtchev, N.V. Surovtsev, S.A. Dzuba, M.V. Fedin
    Structural Anomalies in Ionic Liquids near the Glass Transition Revealed by Pulse EPR
    J. Phys. Chem. Lett., Publication Date (Web): July 27, 2018 (Chemical and Dynamical Processes in Solution; Polymers, Glasses, and Soft Matter) doi:10.1021/acs.jpclett.8b02097, IF=8.708
  7. M.Yu. Ivanov, S.A. Prikhod'ko, N. Yu. Adonin, I.A. Kirilyuk, S.V. Adichtchev, N.V. Surovtsev, S.A. Dzuba, M.V. Fedin
    Structural Anomalies in Ionic Liquids near the Glass Transition Revealed by Pulse EPR
    J. Phys. Chem. Lett., Publication Date (Web): July 27, 2018 (Chemical and Dynamical Processes in Solution; Polymers, Glasses, and Soft Matter) doi:10.1021/acs.jpclett.8b02097, IF=8.708
  8. M.Yu. Ivanov, S.A. Prikhod'ko, N. Yu. Adonin, I.A. Kirilyuk, S.V. Adichtchev, N.V. Surovtsev, S.A. Dzuba, M.V. Fedin
    Structural Anomalies in Ionic Liquids near the Glass Transition Revealed by Pulse EPR
    J. Phys. Chem. Lett., Publication Date (Web): July 27, 2018 (Chemical and Dynamical Processes in Solution; Polymers, Glasses, and Soft Matter) doi:10.1021/acs.jpclett.8b02097, IF=8.708
  9. Yu.N. Malyar, M.A. Mikhailenko, N.A. Pankrushina, A.N. Mikheev, S.A. Kuznetsova, T.P. Shakhtshneider
    Effect of Microwave Irradiation on Arabinogalactan and Its Interaction with Betulin Diacetate
    Russian Journal of Bioorganic Chemistry, 2018, Vol. 44, No. 7, pp. 762-767. doi:10.1134/S1068162018070075, IF=0.838
  10. Yu.N. Malyar, M.A. Mikhailenko, N.A. Pankrushina, A.N. Mikheev, S.A. Kuznetsova, T.P. Shakhtshneider
    Effect of Microwave Irradiation on Arabinogalactan and Its Interaction with Betulin Diacetate
    Russian Journal of Bioorganic Chemistry, 2018, Vol. 44, No. 7, pp. 762-767. doi:10.1134/S1068162018070075, IF=0.838
  11. Yu.N. Malyar, M.A. Mikhailenko, N.A. Pankrushina, A.N. Mikheev, S.A. Kuznetsova, T.P. Shakhtshneider
    Effect of Microwave Irradiation on Arabinogalactan and Its Interaction with Betulin Diacetate
    Russian Journal of Bioorganic Chemistry, 2018, Vol. 44, No. 7, pp. 762-767. doi:10.1134/S1068162018070075, IF=0.838
  12. Yu.N. Malyar, M.A. Mikhailenko, N.A. Pankrushina, A.N. Mikheev, S.A. Kuznetsova, T.P. Shakhtshneider
    Effect of Microwave Irradiation on Arabinogalactan and Its Interaction with Betulin Diacetate
    Russian Journal of Bioorganic Chemistry, 2018, Vol. 44, No. 7, pp. 762-767. doi:10.1134/S1068162018070075, IF=0.838
  13. Yu.N. Malyar, M.A. Mikhailenko, N.A. Pankrushina, A.N. Mikheev, S.A. Kuznetsova, T.P. Shakhtshneider
    Effect of Microwave Irradiation on Arabinogalactan and Its Interaction with Betulin Diacetate
    Russian Journal of Bioorganic Chemistry, 2018, Vol. 44, No. 7, pp. 762-767. doi:10.1134/S1068162018070075, IF=0.838
  14. A.V. Artem'ev, I.Yu. Bagryanskaya
    [Cu4I73-]n: A novel 1-D iodocuprate aggregate
    Journal of Molecular Structure, 2018, V. 1173, Pp. 743-749 doi:10.1016/j.molstruc.2018.07.006, IF=2.011
  15. E.A. Kulikova, N.V. Khotskin, N.B. Illarionova, I.E. Sorokin, E.Y. Bazhenova, E.M. Kondaurova, K.P. Volcho, T.M. Khomenko, N.F. Salakhutdinov, E. Ponimaskin, V.S. Naumenko, A.V. Kulikov
    Inhibitor of striatal-enriched protein tyrosine phosphatase, 8-(trifluoromethyl)-1,2,3,4,5-benzopentathiepin-6-amine hydrochloride (TC-2153), produces antidepressant-like effect and decreases functional activity and protein level of 5-HT2A receptor in the brain
    Neuroscience, 2018, V. 394, Pp 220-231 doi:10.1016/j.neuroscience.2018.10.031, IF=3.381
  16. E.A. Kulikova, N.V. Khotskin, N.B. Illarionova, I.E. Sorokin, E.Y. Bazhenova, E.M. Kondaurova, K.P. Volcho, T.M. Khomenko, N.F. Salakhutdinov, E. Ponimaskin, V.S. Naumenko, A.V. Kulikov
    Inhibitor of striatal-enriched protein tyrosine phosphatase, 8-(trifluoromethyl)-1,2,3,4,5-benzopentathiepin-6-amine hydrochloride (TC-2153), produces antidepressant-like effect and decreases functional activity and protein level of 5-HT2A receptor in the brain
    Neuroscience, 2018, V. 394, Pp 220-231 doi:10.1016/j.neuroscience.2018.10.031, IF=3.381
  17. E.A. Kulikova, N.V. Khotskin, N.B. Illarionova, I.E. Sorokin, E.Y. Bazhenova, E.M. Kondaurova, K.P. Volcho, T.M. Khomenko, N.F. Salakhutdinov, E. Ponimaskin, V.S. Naumenko, A.V. Kulikov
    Inhibitor of striatal-enriched protein tyrosine phosphatase, 8-(trifluoromethyl)-1,2,3,4,5-benzopentathiepin-6-amine hydrochloride (TC-2153), produces antidepressant-like effect and decreases functional activity and protein level of 5-HT2A receptor in the brain
    Neuroscience, 2018, V. 394, Pp 220-231 doi:10.1016/j.neuroscience.2018.10.031, IF=3.381
  18. E.A. Kulikova, N.V. Khotskin, N.B. Illarionova, I.E. Sorokin, E.Y. Bazhenova, E.M. Kondaurova, K.P. Volcho, T.M. Khomenko, N.F. Salakhutdinov, E. Ponimaskin, V.S. Naumenko, A.V. Kulikov
    Inhibitor of striatal-enriched protein tyrosine phosphatase, 8-(trifluoromethyl)-1,2,3,4,5-benzopentathiepin-6-amine hydrochloride (TC-2153), produces antidepressant-like effect and decreases functional activity and protein level of 5-HT2A receptor in the brain
    Neuroscience, 2018, V. 394, Pp 220-231 doi:10.1016/j.neuroscience.2018.10.031, IF=3.381
  19. E.A. Kulikova, N.V. Khotskin, N.B. Illarionova, I.E. Sorokin, E.Y. Bazhenova, E.M. Kondaurova, K.P. Volcho, T.M. Khomenko, N.F. Salakhutdinov, E. Ponimaskin, V.S. Naumenko, A.V. Kulikov
    Inhibitor of striatal-enriched protein tyrosine phosphatase, 8-(trifluoromethyl)-1,2,3,4,5-benzopentathiepin-6-amine hydrochloride (TC-2153), produces antidepressant-like effect and decreases functional activity and protein level of 5-HT2A receptor in the brain
    Neuroscience, 2018, V. 394, Pp 220-231 doi:10.1016/j.neuroscience.2018.10.031, IF=3.381
  20. E.A. Kulikova, N.V. Khotskin, N.B. Illarionova, I.E. Sorokin, E.Y. Bazhenova, E.M. Kondaurova, K.P. Volcho, T.M. Khomenko, N.F. Salakhutdinov, E. Ponimaskin, V.S. Naumenko, A.V. Kulikov
    Inhibitor of striatal-enriched protein tyrosine phosphatase, 8-(trifluoromethyl)-1,2,3,4,5-benzopentathiepin-6-amine hydrochloride (TC-2153), produces antidepressant-like effect and decreases functional activity and protein level of 5-HT2A receptor in the brain
    Neuroscience, 2018, V. 394, Pp 220-231 doi:10.1016/j.neuroscience.2018.10.031, IF=3.381
  21. E.A. Kulikova, N.V. Khotskin, N.B. Illarionova, I.E. Sorokin, E.Y. Bazhenova, E.M. Kondaurova, K.P. Volcho, T.M. Khomenko, N.F. Salakhutdinov, E. Ponimaskin, V.S. Naumenko, A.V. Kulikov
    Inhibitor of striatal-enriched protein tyrosine phosphatase, 8-(trifluoromethyl)-1,2,3,4,5-benzopentathiepin-6-amine hydrochloride (TC-2153), produces antidepressant-like effect and decreases functional activity and protein level of 5-HT2A receptor in the brain
    Neuroscience, 2018, V. 394, Pp 220-231 doi:10.1016/j.neuroscience.2018.10.031, IF=3.381
  22. E.A. Kulikova, N.V. Khotskin, N.B. Illarionova, I.E. Sorokin, E.Y. Bazhenova, E.M. Kondaurova, K.P. Volcho, T.M. Khomenko, N.F. Salakhutdinov, E. Ponimaskin, V.S. Naumenko, A.V. Kulikov
    Inhibitor of striatal-enriched protein tyrosine phosphatase, 8-(trifluoromethyl)-1,2,3,4,5-benzopentathiepin-6-amine hydrochloride (TC-2153), produces antidepressant-like effect and decreases functional activity and protein level of 5-HT2A receptor in the brain
    Neuroscience, 2018, V. 394, Pp 220-231 doi:10.1016/j.neuroscience.2018.10.031, IF=3.381
  23. E.A. Kulikova, N.V. Khotskin, N.B. Illarionova, I.E. Sorokin, E.Y. Bazhenova, E.M. Kondaurova, K.P. Volcho, T.M. Khomenko, N.F. Salakhutdinov, E. Ponimaskin, V.S. Naumenko, A.V. Kulikov
    Inhibitor of striatal-enriched protein tyrosine phosphatase, 8-(trifluoromethyl)-1,2,3,4,5-benzopentathiepin-6-amine hydrochloride (TC-2153), produces antidepressant-like effect and decreases functional activity and protein level of 5-HT2A receptor in the brain
    Neuroscience, 2018, V. 394, Pp 220-231 doi:10.1016/j.neuroscience.2018.10.031, IF=3.381
  24. O.A. Rakitin, A.V. Zibarev
    Focus Review Recent Progress in Synthesis and Applications of 5-Membered Chalcogen-Nitrogen π-Heterocycles with Three Heteroatoms
    Asian Journal of Organic Chemistry, 2018, V. 7, N 12, Pp 2397-2416 doi:10.1002/ajoc.201800536, IF=2.496
  25. Ch. Tantardini, S.G. Arkipov, K.A. Cherkashina, A.S. Kil'met'ev, E. V.Boldyreva
    Synthesis and crystal structure of a meloxicam co-crystal with benzoic acid
    Structural Chemistry, 2018, V. 29, N 6, pp 1867-1874 doi:10.1007/s11224-018-1166-5, IF=2.19
  26. Ch. Tantardini, S.G. Arkipov, K.A. Cherkashina, A.S. Kil'met'ev, E. V.Boldyreva
    Synthesis and crystal structure of a meloxicam co-crystal with benzoic acid
    Structural Chemistry, 2018, V. 29, N 6, pp 1867-1874 doi:10.1007/s11224-018-1166-5, IF=2.19
  27. Ch. Tantardini, S.G. Arkipov, K.A. Cherkashina, A.S. Kil'met'ev, E. V.Boldyreva
    Synthesis and crystal structure of a meloxicam co-crystal with benzoic acid
    Structural Chemistry, 2018, V. 29, N 6, pp 1867-1874 doi:10.1007/s11224-018-1166-5, IF=2.19
  28. Ch. Tantardini, S.G. Arkipov, K.A. Cherkashina, A.S. Kil'met'ev, E. V.Boldyreva
    Synthesis and crystal structure of a meloxicam co-crystal with benzoic acid
    Structural Chemistry, 2018, V. 29, N 6, pp 1867-1874 doi:10.1007/s11224-018-1166-5, IF=2.19
  29. K.S. Kovaleva, F.I. Zubkov, N.I. Bormotov, R.A. Novikov, P.V. Dorovatovskii, V.N. Khrustalev, Yu.V. Gatilov, V.V. Zarubaev, O.I. Yarovaya, L.N. Shishkina, N.F. Salakhutdinov
    Synthesis of D-(+)-camphor-based N-acylhydrazones and their antiviral activity
    Med. Chem. Commun., 2018, V. 9, N 12, Pp 2072-2082 doi:10.1039/C8MD00442K, IF=2.342
  30. K.S. Kovaleva, F.I. Zubkov, N.I. Bormotov, R.A. Novikov, P.V. Dorovatovskii, V.N. Khrustalev, Yu.V. Gatilov, V.V. Zarubaev, O.I. Yarovaya, L.N. Shishkina, N.F. Salakhutdinov
    Synthesis of D-(+)-camphor-based N-acylhydrazones and their antiviral activity
    Med. Chem. Commun., 2018, V. 9, N 12, Pp 2072-2082 doi:10.1039/C8MD00442K, IF=2.342
  31. K.S. Kovaleva, F.I. Zubkov, N.I. Bormotov, R.A. Novikov, P.V. Dorovatovskii, V.N. Khrustalev, Yu.V. Gatilov, V.V. Zarubaev, O.I. Yarovaya, L.N. Shishkina, N.F. Salakhutdinov
    Synthesis of D-(+)-camphor-based N-acylhydrazones and their antiviral activity
    Med. Chem. Commun., 2018, V. 9, N 12, Pp 2072-2082 doi:10.1039/C8MD00442K, IF=2.342
  32. K.S. Kovaleva, F.I. Zubkov, N.I. Bormotov, R.A. Novikov, P.V. Dorovatovskii, V.N. Khrustalev, Yu.V. Gatilov, V.V. Zarubaev, O.I. Yarovaya, L.N. Shishkina, N.F. Salakhutdinov
    Synthesis of D-(+)-camphor-based N-acylhydrazones and their antiviral activity
    Med. Chem. Commun., 2018, V. 9, N 12, Pp 2072-2082 doi:10.1039/C8MD00442K, IF=2.342
  33. K.S. Kovaleva, F.I. Zubkov, N.I. Bormotov, R.A. Novikov, P.V. Dorovatovskii, V.N. Khrustalev, Yu.V. Gatilov, V.V. Zarubaev, O.I. Yarovaya, L.N. Shishkina, N.F. Salakhutdinov
    Synthesis of D-(+)-camphor-based N-acylhydrazones and their antiviral activity
    Med. Chem. Commun., 2018, V. 9, N 12, Pp 2072-2082 doi:10.1039/C8MD00442K, IF=2.342
  34. K.S. Kovaleva, F.I. Zubkov, N.I. Bormotov, R.A. Novikov, P.V. Dorovatovskii, V.N. Khrustalev, Yu.V. Gatilov, V.V. Zarubaev, O.I. Yarovaya, L.N. Shishkina, N.F. Salakhutdinov
    Synthesis of D-(+)-camphor-based N-acylhydrazones and their antiviral activity
    Med. Chem. Commun., 2018, V. 9, N 12, Pp 2072-2082 doi:10.1039/C8MD00442K, IF=2.342
  35. K.S. Kovaleva, F.I. Zubkov, N.I. Bormotov, R.A. Novikov, P.V. Dorovatovskii, V.N. Khrustalev, Yu.V. Gatilov, V.V. Zarubaev, O.I. Yarovaya, L.N. Shishkina, N.F. Salakhutdinov
    Synthesis of D-(+)-camphor-based N-acylhydrazones and their antiviral activity
    Med. Chem. Commun., 2018, V. 9, N 12, Pp 2072-2082 doi:10.1039/C8MD00442K, IF=2.342
  36. М.А. Ленский, Э.Э. Шульц, Д.В. Корабельников, А.В. Ожогин, А.Н. Новицкий
    Эфиры и полиметиленэфиры пирокатехина и борной кислоты - синтез, структура
    Южно-Сибирский научный вестник, 2018, N 4(24), Cc 255-260 (Esthers and polymethylenesthers of pyrocatechine and boric acid - synthesis, structure/ M.A. Lenskiy, E.E. Shul'ts, D.V. Korabel'nikov, A.V. Ozhogin, A.N. Novitskiy// S-SibSB, 2018, N 4 (24), Cc 255-260)
  37. М.А. Ленский, Э.Э. Шульц, Д.В. Корабельников, А.В. Ожогин, А.Н. Новицкий
    Эфиры и полиметиленэфиры пирокатехина и борной кислоты - синтез, структура
    Южно-Сибирский научный вестник, 2018, N 4(24), Cc 255-260 (Esthers and polymethylenesthers of pyrocatechine and boric acid - synthesis, structure/ M.A. Lenskiy, E.E. Shul'ts, D.V. Korabel'nikov, A.V. Ozhogin, A.N. Novitskiy// S-SibSB, 2018, N 4 (24), Cc 255-260)
  38. М.А. Ленский, Э.Э. Шульц, Д.В. Корабельников, А.В. Ожогин, А.Н. Новицкий
    Эфиры и полиметиленэфиры пирокатехина и борной кислоты - синтез, структура
    Южно-Сибирский научный вестник, 2018, N 4(24), Cc 255-260 (Esthers and polymethylenesthers of pyrocatechine and boric acid - synthesis, structure/ M.A. Lenskiy, E.E. Shul'ts, D.V. Korabel'nikov, A.V. Ozhogin, A.N. Novitskiy// S-SibSB, 2018, N 4 (24), Cc 255-260)
  39. М.А. Ленский, Э.Э. Шульц, Д.В. Корабельников, А.В. Ожогин, А.Н. Новицкий
    Эфиры и полиметиленэфиры пирокатехина и борной кислоты - синтез, структура
    Южно-Сибирский научный вестник, 2018, N 4(24), Cc 255-260 (Esthers and polymethylenesthers of pyrocatechine and boric acid - synthesis, structure/ M.A. Lenskiy, E.E. Shul'ts, D.V. Korabel'nikov, A.V. Ozhogin, A.N. Novitskiy// S-SibSB, 2018, N 4 (24), Cc 255-260)
  40. D.A. Komarov, Yu. Ichikawa, K. Yamamoto, N.J. Stewart, S. Matsumoto, H. Yasui, I.A. Kirilyuk, V.V. Khramtsov, O. Inanami, H. Hirata
    In vivo extracellular pH mapping of tumors using electron paramagnetic resonance
    Anal. Chem., 90 (23), pp 13938-13945 doi:10.1021/acs.analchem.8b03328, IF=6.042
  41. D.A. Komarov, Yu. Ichikawa, K. Yamamoto, N.J. Stewart, S. Matsumoto, H. Yasui, I.A. Kirilyuk, V.V. Khramtsov, O. Inanami, H. Hirata
    In vivo extracellular pH mapping of tumors using electron paramagnetic resonance
    Anal. Chem., 90 (23), pp 13938-13945 doi:10.1021/acs.analchem.8b03328, IF=6.042
  42. D.A. Komarov, Yu. Ichikawa, K. Yamamoto, N.J. Stewart, S. Matsumoto, H. Yasui, I.A. Kirilyuk, V.V. Khramtsov, O. Inanami, H. Hirata
    In vivo extracellular pH mapping of tumors using electron paramagnetic resonance
    Anal. Chem., 90 (23), pp 13938-13945 doi:10.1021/acs.analchem.8b03328, IF=6.042
  43. D.A. Komarov, Yu. Ichikawa, K. Yamamoto, N.J. Stewart, S. Matsumoto, H. Yasui, I.A. Kirilyuk, V.V. Khramtsov, O. Inanami, H. Hirata
    In vivo extracellular pH mapping of tumors using electron paramagnetic resonance
    Anal. Chem., 90 (23), pp 13938-13945 doi:10.1021/acs.analchem.8b03328, IF=6.042
  44. D.A. Komarov, Yu. Ichikawa, K. Yamamoto, N.J. Stewart, S. Matsumoto, H. Yasui, I.A. Kirilyuk, V.V. Khramtsov, O. Inanami, H. Hirata
    In vivo extracellular pH mapping of tumors using electron paramagnetic resonance
    Anal. Chem., 90 (23), pp 13938-13945 doi:10.1021/acs.analchem.8b03328, IF=6.042
  45. D.A. Komarov, Yu. Ichikawa, K. Yamamoto, N.J. Stewart, S. Matsumoto, H. Yasui, I.A. Kirilyuk, V.V. Khramtsov, O. Inanami, H. Hirata
    In vivo extracellular pH mapping of tumors using electron paramagnetic resonance
    Anal. Chem., 90 (23), pp 13938-13945 doi:10.1021/acs.analchem.8b03328, IF=6.042
  46. D.A. Komarov, Yu. Ichikawa, K. Yamamoto, N.J. Stewart, S. Matsumoto, H. Yasui, I.A. Kirilyuk, V.V. Khramtsov, O. Inanami, H. Hirata
    In vivo extracellular pH mapping of tumors using electron paramagnetic resonance
    Anal. Chem., 90 (23), pp 13938-13945 doi:10.1021/acs.analchem.8b03328, IF=6.042
  47. D.A. Komarov, Yu. Ichikawa, K. Yamamoto, N.J. Stewart, S. Matsumoto, H. Yasui, I.A. Kirilyuk, V.V. Khramtsov, O. Inanami, H. Hirata
    In vivo extracellular pH mapping of tumors using electron paramagnetic resonance
    Anal. Chem., 90 (23), pp 13938-13945 doi:10.1021/acs.analchem.8b03328, IF=6.042
  48. D.A. Komarov, Yu. Ichikawa, K. Yamamoto, N.J. Stewart, S. Matsumoto, H. Yasui, I.A. Kirilyuk, V.V. Khramtsov, O. Inanami, H. Hirata
    In vivo extracellular pH mapping of tumors using electron paramagnetic resonance
    Anal. Chem., 90 (23), pp 13938-13945 doi:10.1021/acs.analchem.8b03328, IF=6.042
  49. Z. Zhu, A.M. Genaev, G.E. Salnikov, K.Yu. Koltunov
    Superelectrophilic activation of 1-nitronaphthalene in the presence of aluminum chloride. Reactions with benzene and cyclohexane
    Org. Biomol. Chem., 2018, V.16, N 47, Pp 9129-9132 doi:10.1039/C8OB02653J, IF=3.423
  50. Z. Zhu, A.M. Genaev, G.E. Salnikov, K.Yu. Koltunov
    Superelectrophilic activation of 1-nitronaphthalene in the presence of aluminum chloride. Reactions with benzene and cyclohexane
    Org. Biomol. Chem., 2018, V.16, N 47, Pp 9129-9132 doi:10.1039/C8OB02653J, IF=3.423
  51. A.A. Gorodetskii, T.D. Eubank, B. Driesschaert, M. Poncelet, E. Ellis, V.V. Khramtsov, A.A. Bobko
    Oxygen-induced leakage of spin polarization in Overhauser-enhanced magnetic resonance imaging: application for oximetry in tumors
    Journal of Magnetic Resonance, 2018, V. 297, Pp 42-50 doi:10.1016/j.jmr.2018.10.005, IF=2.586
  52. A.A. Gorodetskii, T.D. Eubank, B. Driesschaert, M. Poncelet, E. Ellis, V.V. Khramtsov, A.A. Bobko
    Oxygen-induced leakage of spin polarization in Overhauser-enhanced magnetic resonance imaging: application for oximetry in tumors
    Journal of Magnetic Resonance, 2018, V. 297, Pp 42-50 doi:10.1016/j.jmr.2018.10.005, IF=2.586
  53. A.A. Gorodetskii, T.D. Eubank, B. Driesschaert, M. Poncelet, E. Ellis, V.V. Khramtsov, A.A. Bobko
    Oxygen-induced leakage of spin polarization in Overhauser-enhanced magnetic resonance imaging: application for oximetry in tumors
    Journal of Magnetic Resonance, 2018, V. 297, Pp 42-50 doi:10.1016/j.jmr.2018.10.005, IF=2.586
  54. A.A. Gorodetskii, T.D. Eubank, B. Driesschaert, M. Poncelet, E. Ellis, V.V. Khramtsov, A.A. Bobko
    Oxygen-induced leakage of spin polarization in Overhauser-enhanced magnetic resonance imaging: application for oximetry in tumors
    Journal of Magnetic Resonance, 2018, V. 297, Pp 42-50 doi:10.1016/j.jmr.2018.10.005, IF=2.586
  55. A.A. Gorodetskii, T.D. Eubank, B. Driesschaert, M. Poncelet, E. Ellis, V.V. Khramtsov, A.A. Bobko
    Oxygen-induced leakage of spin polarization in Overhauser-enhanced magnetic resonance imaging: application for oximetry in tumors
    Journal of Magnetic Resonance, 2018, V. 297, Pp 42-50 doi:10.1016/j.jmr.2018.10.005, IF=2.586
  56. A.A. Gorodetskii, T.D. Eubank, B. Driesschaert, M. Poncelet, E. Ellis, V.V. Khramtsov, A.A. Bobko
    Oxygen-induced leakage of spin polarization in Overhauser-enhanced magnetic resonance imaging: application for oximetry in tumors
    Journal of Magnetic Resonance, 2018, V. 297, Pp 42-50 doi:10.1016/j.jmr.2018.10.005, IF=2.586
  57. A. Ogienko, S. Myz, A. Ogienko, A. Nefedov, A.S. Stoporev, M.S. Mel'gunov, A.S. Yunoshev, T. Shakhtshneider, V.V. Boldyrev, E. Boldyreva
    Cryosynthesis of co-crystals of poorly water-soluble pharmaceutical compounds and their solid dispersions with polymers. “Meloxicam - succinic acid” system as a case study
    Cryst. Growth Des. 2018, 18, 12, 7401-7409 doi:10.1021/acs.cgd.8b01070, IF=3.971
  58. A. Ogienko, S. Myz, A. Ogienko, A. Nefedov, A.S. Stoporev, M.S. Mel'gunov, A.S. Yunoshev, T. Shakhtshneider, V.V. Boldyrev, E. Boldyreva
    Cryosynthesis of co-crystals of poorly water-soluble pharmaceutical compounds and their solid dispersions with polymers. “Meloxicam - succinic acid” system as a case study
    Cryst. Growth Des. 2018, 18, 12, 7401-7409 doi:10.1021/acs.cgd.8b01070, IF=3.971
  59. A. Ogienko, S. Myz, A. Ogienko, A. Nefedov, A.S. Stoporev, M.S. Mel'gunov, A.S. Yunoshev, T. Shakhtshneider, V.V. Boldyrev, E. Boldyreva
    Cryosynthesis of co-crystals of poorly water-soluble pharmaceutical compounds and their solid dispersions with polymers. “Meloxicam - succinic acid” system as a case study
    Cryst. Growth Des. 2018, 18, 12, 7401-7409 doi:10.1021/acs.cgd.8b01070, IF=3.971
  60. A. Ogienko, S. Myz, A. Ogienko, A. Nefedov, A.S. Stoporev, M.S. Mel'gunov, A.S. Yunoshev, T. Shakhtshneider, V.V. Boldyrev, E. Boldyreva
    Cryosynthesis of co-crystals of poorly water-soluble pharmaceutical compounds and their solid dispersions with polymers. “Meloxicam - succinic acid” system as a case study
    Cryst. Growth Des. 2018, 18, 12, 7401-7409 doi:10.1021/acs.cgd.8b01070, IF=3.971
  61. A. Ogienko, S. Myz, A. Ogienko, A. Nefedov, A.S. Stoporev, M.S. Mel'gunov, A.S. Yunoshev, T. Shakhtshneider, V.V. Boldyrev, E. Boldyreva
    Cryosynthesis of co-crystals of poorly water-soluble pharmaceutical compounds and their solid dispersions with polymers. “Meloxicam - succinic acid” system as a case study
    Cryst. Growth Des. 2018, 18, 12, 7401-7409 doi:10.1021/acs.cgd.8b01070, IF=3.971
  62. A. Ogienko, S. Myz, A. Ogienko, A. Nefedov, A.S. Stoporev, M.S. Mel'gunov, A.S. Yunoshev, T. Shakhtshneider, V.V. Boldyrev, E. Boldyreva
    Cryosynthesis of co-crystals of poorly water-soluble pharmaceutical compounds and their solid dispersions with polymers. “Meloxicam - succinic acid” system as a case study
    Cryst. Growth Des. 2018, 18, 12, 7401-7409 doi:10.1021/acs.cgd.8b01070, IF=3.971
  63. A. Ogienko, S. Myz, A. Ogienko, A. Nefedov, A.S. Stoporev, M.S. Mel'gunov, A.S. Yunoshev, T. Shakhtshneider, V.V. Boldyrev, E. Boldyreva
    Cryosynthesis of co-crystals of poorly water-soluble pharmaceutical compounds and their solid dispersions with polymers. “Meloxicam - succinic acid” system as a case study
    Cryst. Growth Des. 2018, 18, 12, 7401-7409 doi:10.1021/acs.cgd.8b01070, IF=3.971
  64. A. Ogienko, S. Myz, A. Ogienko, A. Nefedov, A.S. Stoporev, M.S. Mel'gunov, A.S. Yunoshev, T. Shakhtshneider, V.V. Boldyrev, E. Boldyreva
    Cryosynthesis of co-crystals of poorly water-soluble pharmaceutical compounds and their solid dispersions with polymers. “Meloxicam - succinic acid” system as a case study
    Cryst. Growth Des. 2018, 18, 12, 7401-7409 doi:10.1021/acs.cgd.8b01070, IF=3.971
  65. A. Ogienko, S. Myz, A. Ogienko, A. Nefedov, A.S. Stoporev, M.S. Mel'gunov, A.S. Yunoshev, T. Shakhtshneider, V.V. Boldyrev, E. Boldyreva
    Cryosynthesis of co-crystals of poorly water-soluble pharmaceutical compounds and their solid dispersions with polymers. “Meloxicam - succinic acid” system as a case study
    Cryst. Growth Des. 2018, 18, 12, 7401-7409 doi:10.1021/acs.cgd.8b01070, IF=3.971
  66. Yu.P. Ustimenko, A.M. Agafontsev, V.Yu. Komarov, A.V. Tkachev
    Synthesis of chiral nopinane annelated 3-methyl-1-aryl-1H-pyrazolo[3,4-b]pyridines by condensation of pinocarvone oxime with 1-aryl-1H-pyrazol-5-amines
    Mendeleev Communications, 2018, V. 28, N 6, Pp 584-586 doi:10.1016/j.mencom.2018.11.006, IF=2.098
  67. A.D. Rogachev, O.I. Yarovaya, A.V. Fatianova, V.A. Lavrinenko, E.V. Amosov, V.V. Zarubaev, A.G. Pokrovsky, N.F. Salakhutdinov
    Untargeted search and identification of metabolites of antiviral agent camphecene in rat urine by liquid chromatography and mass spectrometry and studying their distribution in organs following peroral administration of the compound
    Journal of Pharmaceutical and Biomedical Analysis, 2018, V. 161, Pp 383-392 doi:10.1016/j.jpba.2018.09.003, IF=2.831
  68. A.D. Rogachev, O.I. Yarovaya, A.V. Fatianova, V.A. Lavrinenko, E.V. Amosov, V.V. Zarubaev, A.G. Pokrovsky, N.F. Salakhutdinov
    Untargeted search and identification of metabolites of antiviral agent camphecene in rat urine by liquid chromatography and mass spectrometry and studying their distribution in organs following peroral administration of the compound
    Journal of Pharmaceutical and Biomedical Analysis, 2018, V. 161, Pp 383-392 doi:10.1016/j.jpba.2018.09.003, IF=2.831
  69. A.D. Rogachev, O.I. Yarovaya, A.V. Fatianova, V.A. Lavrinenko, E.V. Amosov, V.V. Zarubaev, A.G. Pokrovsky, N.F. Salakhutdinov
    Untargeted search and identification of metabolites of antiviral agent camphecene in rat urine by liquid chromatography and mass spectrometry and studying their distribution in organs following peroral administration of the compound
    Journal of Pharmaceutical and Biomedical Analysis, 2018, V. 161, Pp 383-392 doi:10.1016/j.jpba.2018.09.003, IF=2.831
  70. A.D. Rogachev, O.I. Yarovaya, A.V. Fatianova, V.A. Lavrinenko, E.V. Amosov, V.V. Zarubaev, A.G. Pokrovsky, N.F. Salakhutdinov
    Untargeted search and identification of metabolites of antiviral agent camphecene in rat urine by liquid chromatography and mass spectrometry and studying their distribution in organs following peroral administration of the compound
    Journal of Pharmaceutical and Biomedical Analysis, 2018, V. 161, Pp 383-392 doi:10.1016/j.jpba.2018.09.003, IF=2.831
  71. R.Yu. Peshkov, Ch. Wang, E.V. Panteleeva, E.V. Tretyakov
    Synthesis of 4'-alkyl-[1,1'-biphenyl]-2,3'-dicarbonitriles via dimerisation of phthalonitrile radical anion in liquid ammonia (18-10764UP)
    Arkivoc,2018, part vii, Pp 349-356 doi:10.24820/ark.5550190.p010.764, IF=1.47
  72. R. Ottenbacher, E. Talsi, T. Rybalova, K.P. Bryliakov
    Enantioselective Benzylic Hydroxylation of Arylalkanes with H2O2 in Fluorinated Alcohols in the Presence of Chiral Mn Aminopyridine Complexes
    ChemCatChem, 2018, V.10, N 22, Pp 5323-5330 doi:10.1002/cctc.201801476, IF=4.673
  73. R. Ottenbacher, E. Talsi, T. Rybalova, K.P. Bryliakov
    Enantioselective Benzylic Hydroxylation of Arylalkanes with H2O2 in Fluorinated Alcohols in the Presence of Chiral Mn Aminopyridine Complexes
    ChemCatChem, 2018, V.10, N 22, Pp 5323-5330 doi:10.1002/cctc.201801476, IF=4.673
  74. R. Ottenbacher, E. Talsi, T. Rybalova, K.P. Bryliakov
    Enantioselective Benzylic Hydroxylation of Arylalkanes with H2O2 in Fluorinated Alcohols in the Presence of Chiral Mn Aminopyridine Complexes
    ChemCatChem, 2018, V.10, N 22, Pp 5323-5330 doi:10.1002/cctc.201801476, IF=4.673
  75. Yu. Takemoto, E. Zaytseva, K. Suzuki, N. Yoshioka, Y. Takanishi, M. Funahashi, Y. Uchida, T. Akita, Ja. Park, Sh. Sato, S. Clevers, G. Coquerel, D.G. Mazhukin, S. Shimono, M. Sugiyama, H. Takahashi, J. Yamauchi, R. Tamura
    Unique Superparamagnetic-like Behavior Observed in Non-π-delocalized Nitroxide Diradical Compounds Showing Discotic Liquid Crystalline Phase
    Chemistry - A European Journal, 2018, V. 24, N 65, Pp 17293-17302 doi:10.1002/chem.201803534, IF=5.16
  76. Yu. Takemoto, E. Zaytseva, K. Suzuki, N. Yoshioka, Y. Takanishi, M. Funahashi, Y. Uchida, T. Akita, Ja. Park, Sh. Sato, S. Clevers, G. Coquerel, D.G. Mazhukin, S. Shimono, M. Sugiyama, H. Takahashi, J. Yamauchi, R. Tamura
    Unique Superparamagnetic-like Behavior Observed in Non-π-delocalized Nitroxide Diradical Compounds Showing Discotic Liquid Crystalline Phase
    Chemistry - A European Journal, 2018, V. 24, N 65, Pp 17293-17302 doi:10.1002/chem.201803534, IF=5.16
  77. Yu. Takemoto, E. Zaytseva, K. Suzuki, N. Yoshioka, Y. Takanishi, M. Funahashi, Y. Uchida, T. Akita, Ja. Park, Sh. Sato, S. Clevers, G. Coquerel, D.G. Mazhukin, S. Shimono, M. Sugiyama, H. Takahashi, J. Yamauchi, R. Tamura
    Unique Superparamagnetic-like Behavior Observed in Non-π-delocalized Nitroxide Diradical Compounds Showing Discotic Liquid Crystalline Phase
    Chemistry - A European Journal, 2018, V. 24, N 65, Pp 17293-17302 doi:10.1002/chem.201803534, IF=5.16
  78. Yu. Takemoto, E. Zaytseva, K. Suzuki, N. Yoshioka, Y. Takanishi, M. Funahashi, Y. Uchida, T. Akita, Ja. Park, Sh. Sato, S. Clevers, G. Coquerel, D.G. Mazhukin, S. Shimono, M. Sugiyama, H. Takahashi, J. Yamauchi, R. Tamura
    Unique Superparamagnetic-like Behavior Observed in Non-π-delocalized Nitroxide Diradical Compounds Showing Discotic Liquid Crystalline Phase
    Chemistry - A European Journal, 2018, V. 24, N 65, Pp 17293-17302 doi:10.1002/chem.201803534, IF=5.16
  79. Yu. Takemoto, E. Zaytseva, K. Suzuki, N. Yoshioka, Y. Takanishi, M. Funahashi, Y. Uchida, T. Akita, Ja. Park, Sh. Sato, S. Clevers, G. Coquerel, D.G. Mazhukin, S. Shimono, M. Sugiyama, H. Takahashi, J. Yamauchi, R. Tamura
    Unique Superparamagnetic-like Behavior Observed in Non-π-delocalized Nitroxide Diradical Compounds Showing Discotic Liquid Crystalline Phase
    Chemistry - A European Journal, 2018, V. 24, N 65, Pp 17293-17302 doi:10.1002/chem.201803534, IF=5.16
  80. Yu. Takemoto, E. Zaytseva, K. Suzuki, N. Yoshioka, Y. Takanishi, M. Funahashi, Y. Uchida, T. Akita, Ja. Park, Sh. Sato, S. Clevers, G. Coquerel, D.G. Mazhukin, S. Shimono, M. Sugiyama, H. Takahashi, J. Yamauchi, R. Tamura
    Unique Superparamagnetic-like Behavior Observed in Non-π-delocalized Nitroxide Diradical Compounds Showing Discotic Liquid Crystalline Phase
    Chemistry - A European Journal, 2018, V. 24, N 65, Pp 17293-17302 doi:10.1002/chem.201803534, IF=5.16
  81. Yu. Takemoto, E. Zaytseva, K. Suzuki, N. Yoshioka, Y. Takanishi, M. Funahashi, Y. Uchida, T. Akita, Ja. Park, Sh. Sato, S. Clevers, G. Coquerel, D.G. Mazhukin, S. Shimono, M. Sugiyama, H. Takahashi, J. Yamauchi, R. Tamura
    Unique Superparamagnetic-like Behavior Observed in Non-π-delocalized Nitroxide Diradical Compounds Showing Discotic Liquid Crystalline Phase
    Chemistry - A European Journal, 2018, V. 24, N 65, Pp 17293-17302 doi:10.1002/chem.201803534, IF=5.16
  82. Yu. Takemoto, E. Zaytseva, K. Suzuki, N. Yoshioka, Y. Takanishi, M. Funahashi, Y. Uchida, T. Akita, Ja. Park, Sh. Sato, S. Clevers, G. Coquerel, D.G. Mazhukin, S. Shimono, M. Sugiyama, H. Takahashi, J. Yamauchi, R. Tamura
    Unique Superparamagnetic-like Behavior Observed in Non-π-delocalized Nitroxide Diradical Compounds Showing Discotic Liquid Crystalline Phase
    Chemistry - A European Journal, 2018, V. 24, N 65, Pp 17293-17302 doi:10.1002/chem.201803534, IF=5.16
  83. Yu. Takemoto, E. Zaytseva, K. Suzuki, N. Yoshioka, Y. Takanishi, M. Funahashi, Y. Uchida, T. Akita, Ja. Park, Sh. Sato, S. Clevers, G. Coquerel, D.G. Mazhukin, S. Shimono, M. Sugiyama, H. Takahashi, J. Yamauchi, R. Tamura
    Unique Superparamagnetic-like Behavior Observed in Non-π-delocalized Nitroxide Diradical Compounds Showing Discotic Liquid Crystalline Phase
    Chemistry - A European Journal, 2018, V. 24, N 65, Pp 17293-17302 doi:10.1002/chem.201803534, IF=5.16
  84. Yu. Takemoto, E. Zaytseva, K. Suzuki, N. Yoshioka, Y. Takanishi, M. Funahashi, Y. Uchida, T. Akita, Ja. Park, Sh. Sato, S. Clevers, G. Coquerel, D.G. Mazhukin, S. Shimono, M. Sugiyama, H. Takahashi, J. Yamauchi, R. Tamura
    Unique Superparamagnetic-like Behavior Observed in Non-π-delocalized Nitroxide Diradical Compounds Showing Discotic Liquid Crystalline Phase
    Chemistry - A European Journal, 2018, V. 24, N 65, Pp 17293-17302 doi:10.1002/chem.201803534, IF=5.16
  85. Yu. Takemoto, E. Zaytseva, K. Suzuki, N. Yoshioka, Y. Takanishi, M. Funahashi, Y. Uchida, T. Akita, Ja. Park, Sh. Sato, S. Clevers, G. Coquerel, D.G. Mazhukin, S. Shimono, M. Sugiyama, H. Takahashi, J. Yamauchi, R. Tamura
    Unique Superparamagnetic-like Behavior Observed in Non-π-delocalized Nitroxide Diradical Compounds Showing Discotic Liquid Crystalline Phase
    Chemistry - A European Journal, 2018, V. 24, N 65, Pp 17293-17302 doi:10.1002/chem.201803534, IF=5.16
  86. Yu. Takemoto, E. Zaytseva, K. Suzuki, N. Yoshioka, Y. Takanishi, M. Funahashi, Y. Uchida, T. Akita, Ja. Park, Sh. Sato, S. Clevers, G. Coquerel, D.G. Mazhukin, S. Shimono, M. Sugiyama, H. Takahashi, J. Yamauchi, R. Tamura
    Unique Superparamagnetic-like Behavior Observed in Non-π-delocalized Nitroxide Diradical Compounds Showing Discotic Liquid Crystalline Phase
    Chemistry - A European Journal, 2018, V. 24, N 65, Pp 17293-17302 doi:10.1002/chem.201803534, IF=5.16
  87. Yu. Takemoto, E. Zaytseva, K. Suzuki, N. Yoshioka, Y. Takanishi, M. Funahashi, Y. Uchida, T. Akita, Ja. Park, Sh. Sato, S. Clevers, G. Coquerel, D.G. Mazhukin, S. Shimono, M. Sugiyama, H. Takahashi, J. Yamauchi, R. Tamura
    Unique Superparamagnetic-like Behavior Observed in Non-π-delocalized Nitroxide Diradical Compounds Showing Discotic Liquid Crystalline Phase
    Chemistry - A European Journal, 2018, V. 24, N 65, Pp 17293-17302 doi:10.1002/chem.201803534, IF=5.16
  88. Yu. Takemoto, E. Zaytseva, K. Suzuki, N. Yoshioka, Y. Takanishi, M. Funahashi, Y. Uchida, T. Akita, Ja. Park, Sh. Sato, S. Clevers, G. Coquerel, D.G. Mazhukin, S. Shimono, M. Sugiyama, H. Takahashi, J. Yamauchi, R. Tamura
    Unique Superparamagnetic-like Behavior Observed in Non-π-delocalized Nitroxide Diradical Compounds Showing Discotic Liquid Crystalline Phase
    Chemistry - A European Journal, 2018, V. 24, N 65, Pp 17293-17302 doi:10.1002/chem.201803534, IF=5.16
  89. Yu. Takemoto, E. Zaytseva, K. Suzuki, N. Yoshioka, Y. Takanishi, M. Funahashi, Y. Uchida, T. Akita, Ja. Park, Sh. Sato, S. Clevers, G. Coquerel, D.G. Mazhukin, S. Shimono, M. Sugiyama, H. Takahashi, J. Yamauchi, R. Tamura
    Unique Superparamagnetic-like Behavior Observed in Non-π-delocalized Nitroxide Diradical Compounds Showing Discotic Liquid Crystalline Phase
    Chemistry - A European Journal, 2018, V. 24, N 65, Pp 17293-17302 doi:10.1002/chem.201803534, IF=5.16
  90. Yu. Takemoto, E. Zaytseva, K. Suzuki, N. Yoshioka, Y. Takanishi, M. Funahashi, Y. Uchida, T. Akita, Ja. Park, Sh. Sato, S. Clevers, G. Coquerel, D.G. Mazhukin, S. Shimono, M. Sugiyama, H. Takahashi, J. Yamauchi, R. Tamura
    Unique Superparamagnetic-like Behavior Observed in Non-π-delocalized Nitroxide Diradical Compounds Showing Discotic Liquid Crystalline Phase
    Chemistry - A European Journal, 2018, V. 24, N 65, Pp 17293-17302 doi:10.1002/chem.201803534, IF=5.16
  91. D.R. Gruber, J.J. Toner, H.L. Miears, A.V. Shernyukov, A.S. Kiryutin, A.A. Lomzov, A.V. Endutkin, I.R. Grin, D.V. Petrova, M.S. Kupryushkin, A.V. Yurkovskaya, E.C. Johnson, M. Okon, Е.G. Bagryanskaya, D.O. Zharkov, S.L. Smirnov
    Oxidative damage to epigenetically methylated sites affects DNA stability, dynamics and enzymatic demethylation
    Nucleic Acids Research, 2018, V.46,N 20, Pp 10827-10839 doi:10.1093/nar/gky893, IF=11.56
  92. D.R. Gruber, J.J. Toner, H.L. Miears, A.V. Shernyukov, A.S. Kiryutin, A.A. Lomzov, A.V. Endutkin, I.R. Grin, D.V. Petrova, M.S. Kupryushkin, A.V. Yurkovskaya, E.C. Johnson, M. Okon, Е.G. Bagryanskaya, D.O. Zharkov, S.L. Smirnov
    Oxidative damage to epigenetically methylated sites affects DNA stability, dynamics and enzymatic demethylation
    Nucleic Acids Research, 2018, V.46,N 20, Pp 10827-10839 doi:10.1093/nar/gky893, IF=11.56
  93. D.R. Gruber, J.J. Toner, H.L. Miears, A.V. Shernyukov, A.S. Kiryutin, A.A. Lomzov, A.V. Endutkin, I.R. Grin, D.V. Petrova, M.S. Kupryushkin, A.V. Yurkovskaya, E.C. Johnson, M. Okon, Е.G. Bagryanskaya, D.O. Zharkov, S.L. Smirnov
    Oxidative damage to epigenetically methylated sites affects DNA stability, dynamics and enzymatic demethylation
    Nucleic Acids Research, 2018, V.46,N 20, Pp 10827-10839 doi:10.1093/nar/gky893, IF=11.56
  94. D.R. Gruber, J.J. Toner, H.L. Miears, A.V. Shernyukov, A.S. Kiryutin, A.A. Lomzov, A.V. Endutkin, I.R. Grin, D.V. Petrova, M.S. Kupryushkin, A.V. Yurkovskaya, E.C. Johnson, M. Okon, Е.G. Bagryanskaya, D.O. Zharkov, S.L. Smirnov
    Oxidative damage to epigenetically methylated sites affects DNA stability, dynamics and enzymatic demethylation
    Nucleic Acids Research, 2018, V.46,N 20, Pp 10827-10839 doi:10.1093/nar/gky893, IF=11.56
  95. D.R. Gruber, J.J. Toner, H.L. Miears, A.V. Shernyukov, A.S. Kiryutin, A.A. Lomzov, A.V. Endutkin, I.R. Grin, D.V. Petrova, M.S. Kupryushkin, A.V. Yurkovskaya, E.C. Johnson, M. Okon, Е.G. Bagryanskaya, D.O. Zharkov, S.L. Smirnov
    Oxidative damage to epigenetically methylated sites affects DNA stability, dynamics and enzymatic demethylation
    Nucleic Acids Research, 2018, V.46,N 20, Pp 10827-10839 doi:10.1093/nar/gky893, IF=11.56
  96. D.R. Gruber, J.J. Toner, H.L. Miears, A.V. Shernyukov, A.S. Kiryutin, A.A. Lomzov, A.V. Endutkin, I.R. Grin, D.V. Petrova, M.S. Kupryushkin, A.V. Yurkovskaya, E.C. Johnson, M. Okon, Е.G. Bagryanskaya, D.O. Zharkov, S.L. Smirnov
    Oxidative damage to epigenetically methylated sites affects DNA stability, dynamics and enzymatic demethylation
    Nucleic Acids Research, 2018, V.46,N 20, Pp 10827-10839 doi:10.1093/nar/gky893, IF=11.56
  97. D.R. Gruber, J.J. Toner, H.L. Miears, A.V. Shernyukov, A.S. Kiryutin, A.A. Lomzov, A.V. Endutkin, I.R. Grin, D.V. Petrova, M.S. Kupryushkin, A.V. Yurkovskaya, E.C. Johnson, M. Okon, Е.G. Bagryanskaya, D.O. Zharkov, S.L. Smirnov
    Oxidative damage to epigenetically methylated sites affects DNA stability, dynamics and enzymatic demethylation
    Nucleic Acids Research, 2018, V.46,N 20, Pp 10827-10839 doi:10.1093/nar/gky893, IF=11.56
  98. D.R. Gruber, J.J. Toner, H.L. Miears, A.V. Shernyukov, A.S. Kiryutin, A.A. Lomzov, A.V. Endutkin, I.R. Grin, D.V. Petrova, M.S. Kupryushkin, A.V. Yurkovskaya, E.C. Johnson, M. Okon, Е.G. Bagryanskaya, D.O. Zharkov, S.L. Smirnov
    Oxidative damage to epigenetically methylated sites affects DNA stability, dynamics and enzymatic demethylation
    Nucleic Acids Research, 2018, V.46,N 20, Pp 10827-10839 doi:10.1093/nar/gky893, IF=11.56
  99. D.R. Gruber, J.J. Toner, H.L. Miears, A.V. Shernyukov, A.S. Kiryutin, A.A. Lomzov, A.V. Endutkin, I.R. Grin, D.V. Petrova, M.S. Kupryushkin, A.V. Yurkovskaya, E.C. Johnson, M. Okon, Е.G. Bagryanskaya, D.O. Zharkov, S.L. Smirnov
    Oxidative damage to epigenetically methylated sites affects DNA stability, dynamics and enzymatic demethylation
    Nucleic Acids Research, 2018, V.46,N 20, Pp 10827-10839 doi:10.1093/nar/gky893, IF=11.56
  100. D.R. Gruber, J.J. Toner, H.L. Miears, A.V. Shernyukov, A.S. Kiryutin, A.A. Lomzov, A.V. Endutkin, I.R. Grin, D.V. Petrova, M.S. Kupryushkin, A.V. Yurkovskaya, E.C. Johnson, M. Okon, Е.G. Bagryanskaya, D.O. Zharkov, S.L. Smirnov
    Oxidative damage to epigenetically methylated sites affects DNA stability, dynamics and enzymatic demethylation
    Nucleic Acids Research, 2018, V.46,N 20, Pp 10827-10839 doi:10.1093/nar/gky893, IF=11.56
  101. D.R. Gruber, J.J. Toner, H.L. Miears, A.V. Shernyukov, A.S. Kiryutin, A.A. Lomzov, A.V. Endutkin, I.R. Grin, D.V. Petrova, M.S. Kupryushkin, A.V. Yurkovskaya, E.C. Johnson, M. Okon, Е.G. Bagryanskaya, D.O. Zharkov, S.L. Smirnov
    Oxidative damage to epigenetically methylated sites affects DNA stability, dynamics and enzymatic demethylation
    Nucleic Acids Research, 2018, V.46,N 20, Pp 10827-10839 doi:10.1093/nar/gky893, IF=11.56
  102. D.R. Gruber, J.J. Toner, H.L. Miears, A.V. Shernyukov, A.S. Kiryutin, A.A. Lomzov, A.V. Endutkin, I.R. Grin, D.V. Petrova, M.S. Kupryushkin, A.V. Yurkovskaya, E.C. Johnson, M. Okon, Е.G. Bagryanskaya, D.O. Zharkov, S.L. Smirnov
    Oxidative damage to epigenetically methylated sites affects DNA stability, dynamics and enzymatic demethylation
    Nucleic Acids Research, 2018, V.46,N 20, Pp 10827-10839 doi:10.1093/nar/gky893, IF=11.56
  103. D.R. Gruber, J.J. Toner, H.L. Miears, A.V. Shernyukov, A.S. Kiryutin, A.A. Lomzov, A.V. Endutkin, I.R. Grin, D.V. Petrova, M.S. Kupryushkin, A.V. Yurkovskaya, E.C. Johnson, M. Okon, Е.G. Bagryanskaya, D.O. Zharkov, S.L. Smirnov
    Oxidative damage to epigenetically methylated sites affects DNA stability, dynamics and enzymatic demethylation
    Nucleic Acids Research, 2018, V.46,N 20, Pp 10827-10839 doi:10.1093/nar/gky893, IF=11.56
  104. D.R. Gruber, J.J. Toner, H.L. Miears, A.V. Shernyukov, A.S. Kiryutin, A.A. Lomzov, A.V. Endutkin, I.R. Grin, D.V. Petrova, M.S. Kupryushkin, A.V. Yurkovskaya, E.C. Johnson, M. Okon, Е.G. Bagryanskaya, D.O. Zharkov, S.L. Smirnov
    Oxidative damage to epigenetically methylated sites affects DNA stability, dynamics and enzymatic demethylation
    Nucleic Acids Research, 2018, V.46,N 20, Pp 10827-10839 doi:10.1093/nar/gky893, IF=11.56
  105. D.R. Gruber, J.J. Toner, H.L. Miears, A.V. Shernyukov, A.S. Kiryutin, A.A. Lomzov, A.V. Endutkin, I.R. Grin, D.V. Petrova, M.S. Kupryushkin, A.V. Yurkovskaya, E.C. Johnson, M. Okon, Е.G. Bagryanskaya, D.O. Zharkov, S.L. Smirnov
    Oxidative damage to epigenetically methylated sites affects DNA stability, dynamics and enzymatic demethylation
    Nucleic Acids Research, 2018, V.46,N 20, Pp 10827-10839 doi:10.1093/nar/gky893, IF=11.56
  106. D.R. Gruber, J.J. Toner, H.L. Miears, A.V. Shernyukov, A.S. Kiryutin, A.A. Lomzov, A.V. Endutkin, I.R. Grin, D.V. Petrova, M.S. Kupryushkin, A.V. Yurkovskaya, E.C. Johnson, M. Okon, Е.G. Bagryanskaya, D.O. Zharkov, S.L. Smirnov
    Oxidative damage to epigenetically methylated sites affects DNA stability, dynamics and enzymatic demethylation
    Nucleic Acids Research, 2018, V.46,N 20, Pp 10827-10839 doi:10.1093/nar/gky893, IF=11.56
  107. D.R. Gruber, J.J. Toner, H.L. Miears, A.V. Shernyukov, A.S. Kiryutin, A.A. Lomzov, A.V. Endutkin, I.R. Grin, D.V. Petrova, M.S. Kupryushkin, A.V. Yurkovskaya, E.C. Johnson, M. Okon, Е.G. Bagryanskaya, D.O. Zharkov, S.L. Smirnov
    Oxidative damage to epigenetically methylated sites affects DNA stability, dynamics and enzymatic demethylation
    Nucleic Acids Research, 2018, V.46,N 20, Pp 10827-10839 doi:10.1093/nar/gky893, IF=11.56
  108. D.R. Gruber, J.J. Toner, H.L. Miears, A.V. Shernyukov, A.S. Kiryutin, A.A. Lomzov, A.V. Endutkin, I.R. Grin, D.V. Petrova, M.S. Kupryushkin, A.V. Yurkovskaya, E.C. Johnson, M. Okon, Е.G. Bagryanskaya, D.O. Zharkov, S.L. Smirnov
    Oxidative damage to epigenetically methylated sites affects DNA stability, dynamics and enzymatic demethylation
    Nucleic Acids Research, 2018, V.46,N 20, Pp 10827-10839 doi:10.1093/nar/gky893, IF=11.56
  109. D.R. Gruber, J.J. Toner, H.L. Miears, A.V. Shernyukov, A.S. Kiryutin, A.A. Lomzov, A.V. Endutkin, I.R. Grin, D.V. Petrova, M.S. Kupryushkin, A.V. Yurkovskaya, E.C. Johnson, M. Okon, Е.G. Bagryanskaya, D.O. Zharkov, S.L. Smirnov
    Oxidative damage to epigenetically methylated sites affects DNA stability, dynamics and enzymatic demethylation
    Nucleic Acids Research, 2018, V.46,N 20, Pp 10827-10839 doi:10.1093/nar/gky893, IF=11.56
  110. D.R. Gruber, J.J. Toner, H.L. Miears, A.V. Shernyukov, A.S. Kiryutin, A.A. Lomzov, A.V. Endutkin, I.R. Grin, D.V. Petrova, M.S. Kupryushkin, A.V. Yurkovskaya, E.C. Johnson, M. Okon, Е.G. Bagryanskaya, D.O. Zharkov, S.L. Smirnov
    Oxidative damage to epigenetically methylated sites affects DNA stability, dynamics and enzymatic demethylation
    Nucleic Acids Research, 2018, V.46,N 20, Pp 10827-10839 doi:10.1093/nar/gky893, IF=11.56
  111. D.R. Gruber, J.J. Toner, H.L. Miears, A.V. Shernyukov, A.S. Kiryutin, A.A. Lomzov, A.V. Endutkin, I.R. Grin, D.V. Petrova, M.S. Kupryushkin, A.V. Yurkovskaya, E.C. Johnson, M. Okon, Е.G. Bagryanskaya, D.O. Zharkov, S.L. Smirnov
    Oxidative damage to epigenetically methylated sites affects DNA stability, dynamics and enzymatic demethylation
    Nucleic Acids Research, 2018, V.46,N 20, Pp 10827-10839 doi:10.1093/nar/gky893, IF=11.56
  112. D.R. Gruber, J.J. Toner, H.L. Miears, A.V. Shernyukov, A.S. Kiryutin, A.A. Lomzov, A.V. Endutkin, I.R. Grin, D.V. Petrova, M.S. Kupryushkin, A.V. Yurkovskaya, E.C. Johnson, M. Okon, Е.G. Bagryanskaya, D.O. Zharkov, S.L. Smirnov
    Oxidative damage to epigenetically methylated sites affects DNA stability, dynamics and enzymatic demethylation
    Nucleic Acids Research, 2018, V.46,N 20, Pp 10827-10839 doi:10.1093/nar/gky893, IF=11.56
  113. D.R. Gruber, J.J. Toner, H.L. Miears, A.V. Shernyukov, A.S. Kiryutin, A.A. Lomzov, A.V. Endutkin, I.R. Grin, D.V. Petrova, M.S. Kupryushkin, A.V. Yurkovskaya, E.C. Johnson, M. Okon, Е.G. Bagryanskaya, D.O. Zharkov, S.L. Smirnov
    Oxidative damage to epigenetically methylated sites affects DNA stability, dynamics and enzymatic demethylation
    Nucleic Acids Research, 2018, V.46,N 20, Pp 10827-10839 doi:10.1093/nar/gky893, IF=11.56
  114. D.R. Gruber, J.J. Toner, H.L. Miears, A.V. Shernyukov, A.S. Kiryutin, A.A. Lomzov, A.V. Endutkin, I.R. Grin, D.V. Petrova, M.S. Kupryushkin, A.V. Yurkovskaya, E.C. Johnson, M. Okon, Е.G. Bagryanskaya, D.O. Zharkov, S.L. Smirnov
    Oxidative damage to epigenetically methylated sites affects DNA stability, dynamics and enzymatic demethylation
    Nucleic Acids Research, 2018, V.46,N 20, Pp 10827-10839 doi:10.1093/nar/gky893, IF=11.56
  115. D.R. Gruber, J.J. Toner, H.L. Miears, A.V. Shernyukov, A.S. Kiryutin, A.A. Lomzov, A.V. Endutkin, I.R. Grin, D.V. Petrova, M.S. Kupryushkin, A.V. Yurkovskaya, E.C. Johnson, M. Okon, Е.G. Bagryanskaya, D.O. Zharkov, S.L. Smirnov
    Oxidative damage to epigenetically methylated sites affects DNA stability, dynamics and enzymatic demethylation
    Nucleic Acids Research, 2018, V.46,N 20, Pp 10827-10839 doi:10.1093/nar/gky893, IF=11.56
  116. D.R. Gruber, J.J. Toner, H.L. Miears, A.V. Shernyukov, A.S. Kiryutin, A.A. Lomzov, A.V. Endutkin, I.R. Grin, D.V. Petrova, M.S. Kupryushkin, A.V. Yurkovskaya, E.C. Johnson, M. Okon, Е.G. Bagryanskaya, D.O. Zharkov, S.L. Smirnov
    Oxidative damage to epigenetically methylated sites affects DNA stability, dynamics and enzymatic demethylation
    Nucleic Acids Research, 2018, V.46,N 20, Pp 10827-10839 doi:10.1093/nar/gky893, IF=11.56
  117. D.R. Gruber, J.J. Toner, H.L. Miears, A.V. Shernyukov, A.S. Kiryutin, A.A. Lomzov, A.V. Endutkin, I.R. Grin, D.V. Petrova, M.S. Kupryushkin, A.V. Yurkovskaya, E.C. Johnson, M. Okon, Е.G. Bagryanskaya, D.O. Zharkov, S.L. Smirnov
    Oxidative damage to epigenetically methylated sites affects DNA stability, dynamics and enzymatic demethylation
    Nucleic Acids Research, 2018, V.46,N 20, Pp 10827-10839 doi:10.1093/nar/gky893, IF=11.56
  118. D.R. Gruber, J.J. Toner, H.L. Miears, A.V. Shernyukov, A.S. Kiryutin, A.A. Lomzov, A.V. Endutkin, I.R. Grin, D.V. Petrova, M.S. Kupryushkin, A.V. Yurkovskaya, E.C. Johnson, M. Okon, Е.G. Bagryanskaya, D.O. Zharkov, S.L. Smirnov
    Oxidative damage to epigenetically methylated sites affects DNA stability, dynamics and enzymatic demethylation
    Nucleic Acids Research, 2018, V.46,N 20, Pp 10827-10839 doi:10.1093/nar/gky893, IF=11.56
  119. V.I. Borovkov, V.A. Bagryansky, G.A. Letyagin, I.V. Beregovaya, L.N. Shchegoleva, Y.N. Molin
    Manifestation of g-tensor anisotropy in the quantum beats of spin-correlated radical ion pairs
    Chemical Physics Letters, 2018, V. 712, Pages 208-213 doi:10.1016/j.cplett.2018.10.004, IF=1.685
  120. V.I. Borovkov, V.A. Bagryansky, G.A. Letyagin, I.V. Beregovaya, L.N. Shchegoleva, Y.N. Molin
    Manifestation of g-tensor anisotropy in the quantum beats of spin-correlated radical ion pairs
    Chemical Physics Letters, 2018, V. 712, Pages 208-213 doi:10.1016/j.cplett.2018.10.004, IF=1.685
  121. V.I. Borovkov, V.A. Bagryansky, G.A. Letyagin, I.V. Beregovaya, L.N. Shchegoleva, Y.N. Molin
    Manifestation of g-tensor anisotropy in the quantum beats of spin-correlated radical ion pairs
    Chemical Physics Letters, 2018, V. 712, Pages 208-213 doi:10.1016/j.cplett.2018.10.004, IF=1.685
  122. V.I. Borovkov, V.A. Bagryansky, G.A. Letyagin, I.V. Beregovaya, L.N. Shchegoleva, Y.N. Molin
    Manifestation of g-tensor anisotropy in the quantum beats of spin-correlated radical ion pairs
    Chemical Physics Letters, 2018, V. 712, Pages 208-213 doi:10.1016/j.cplett.2018.10.004, IF=1.685
  123. G.A. Selivanova, A.D. Skolyapova, R.I. Dralyuk, E.V. Karpova, I.K. Shundrina, I.Yu. Bagryanskaya, E.V. Amosov, T.V. Basova, E.V. Tretyakov
    Solid-phase transitions of polymorphs of 4-(4-N,N-dialkylaminophenyl)azobiphenyl-2,3'4'-tricarbonitriles and their analogues
    Thermochimica Acta, 2018, V. 669, Pp 88-98 doi:10.1016/j.tca.2018.08.022, IF=2.188
  124. G.A. Selivanova, A.D. Skolyapova, R.I. Dralyuk, E.V. Karpova, I.K. Shundrina, I.Yu. Bagryanskaya, E.V. Amosov, T.V. Basova, E.V. Tretyakov
    Solid-phase transitions of polymorphs of 4-(4-N,N-dialkylaminophenyl)azobiphenyl-2,3'4'-tricarbonitriles and their analogues
    Thermochimica Acta, 2018, V. 669, Pp 88-98 doi:10.1016/j.tca.2018.08.022, IF=2.188
  125. A.A. Kuzhelev, O.A. Krumkacheva, I.O. Timofeev, V.M. Tormyshev, M.V. Fedin, E.G. Bagryanskaya
    Electron-Spin Relaxation of Triarylmethyl Radicals in Glassy Trehalose
    Applied Magnetic Resonance, 2018, V. 49, N 11, pp 1171-1180 doi:10.1007/s00723-018-1023-0, IF=0.835
  126. A.A. Kuzhelev, O.A. Krumkacheva, I.O. Timofeev, V.M. Tormyshev, M.V. Fedin, E.G. Bagryanskaya
    Electron-Spin Relaxation of Triarylmethyl Radicals in Glassy Trehalose
    Applied Magnetic Resonance, 2018, V. 49, N 11, pp 1171-1180 doi:10.1007/s00723-018-1023-0, IF=0.835
  127. A.A. Kuzhelev, O.A. Krumkacheva, I.O. Timofeev, V.M. Tormyshev, M.V. Fedin, E.G. Bagryanskaya
    Electron-Spin Relaxation of Triarylmethyl Radicals in Glassy Trehalose
    Applied Magnetic Resonance, 2018, V. 49, N 11, pp 1171-1180 doi:10.1007/s00723-018-1023-0, IF=0.835
  128. V.V. Zarubaev, E.A. Pushkina, S.S. Borisevich, A.V. Galochkina, A.V. Garshinina, A.A. Shtro, A.A. Egorova, A.S. Sokolova, S.L. Khursan, O.I. Yarovaya, N.F. Salakhutdinov
    Selection of influenza virus resistant to the novel camphor-based antiviral camphecene results in loss of pathogenicity
    Virology, V. 524, November 2018, Pp 69-77 doi:10.1016/j.virol.2018.08.011, IF=3.374
  129. V.V. Zarubaev, E.A. Pushkina, S.S. Borisevich, A.V. Galochkina, A.V. Garshinina, A.A. Shtro, A.A. Egorova, A.S. Sokolova, S.L. Khursan, O.I. Yarovaya, N.F. Salakhutdinov
    Selection of influenza virus resistant to the novel camphor-based antiviral camphecene results in loss of pathogenicity
    Virology, V. 524, November 2018, Pp 69-77 doi:10.1016/j.virol.2018.08.011, IF=3.374
  130. V.V. Zarubaev, E.A. Pushkina, S.S. Borisevich, A.V. Galochkina, A.V. Garshinina, A.A. Shtro, A.A. Egorova, A.S. Sokolova, S.L. Khursan, O.I. Yarovaya, N.F. Salakhutdinov
    Selection of influenza virus resistant to the novel camphor-based antiviral camphecene results in loss of pathogenicity
    Virology, V. 524, November 2018, Pp 69-77 doi:10.1016/j.virol.2018.08.011, IF=3.374
  131. V.V. Zarubaev, E.A. Pushkina, S.S. Borisevich, A.V. Galochkina, A.V. Garshinina, A.A. Shtro, A.A. Egorova, A.S. Sokolova, S.L. Khursan, O.I. Yarovaya, N.F. Salakhutdinov
    Selection of influenza virus resistant to the novel camphor-based antiviral camphecene results in loss of pathogenicity
    Virology, V. 524, November 2018, Pp 69-77 doi:10.1016/j.virol.2018.08.011, IF=3.374
  132. V.V. Zarubaev, E.A. Pushkina, S.S. Borisevich, A.V. Galochkina, A.V. Garshinina, A.A. Shtro, A.A. Egorova, A.S. Sokolova, S.L. Khursan, O.I. Yarovaya, N.F. Salakhutdinov
    Selection of influenza virus resistant to the novel camphor-based antiviral camphecene results in loss of pathogenicity
    Virology, V. 524, November 2018, Pp 69-77 doi:10.1016/j.virol.2018.08.011, IF=3.374
  133. V.V. Zarubaev, E.A. Pushkina, S.S. Borisevich, A.V. Galochkina, A.V. Garshinina, A.A. Shtro, A.A. Egorova, A.S. Sokolova, S.L. Khursan, O.I. Yarovaya, N.F. Salakhutdinov
    Selection of influenza virus resistant to the novel camphor-based antiviral camphecene results in loss of pathogenicity
    Virology, V. 524, November 2018, Pp 69-77 doi:10.1016/j.virol.2018.08.011, IF=3.374
  134. V.V. Zarubaev, E.A. Pushkina, S.S. Borisevich, A.V. Galochkina, A.V. Garshinina, A.A. Shtro, A.A. Egorova, A.S. Sokolova, S.L. Khursan, O.I. Yarovaya, N.F. Salakhutdinov
    Selection of influenza virus resistant to the novel camphor-based antiviral camphecene results in loss of pathogenicity
    Virology, V. 524, November 2018, Pp 69-77 doi:10.1016/j.virol.2018.08.011, IF=3.374
  135. V.V. Zarubaev, E.A. Pushkina, S.S. Borisevich, A.V. Galochkina, A.V. Garshinina, A.A. Shtro, A.A. Egorova, A.S. Sokolova, S.L. Khursan, O.I. Yarovaya, N.F. Salakhutdinov
    Selection of influenza virus resistant to the novel camphor-based antiviral camphecene results in loss of pathogenicity
    Virology, V. 524, November 2018, Pp 69-77 doi:10.1016/j.virol.2018.08.011, IF=3.374
  136. A.Yu. Sidorenko, I.V. Il'ina, A.V. Kravtsova, A. Aho, O.V. Ardashov, N.S. Li-Zhulanov, K.P. Volcho, N.F. Salakhutdinov, D.Yu. Murzin, V.E. Agabekov
    Preparation of chiral isobenzofurans from 3-carene in the presence of modified clays
    Molecular Catalysis, 2018, V. 459, Pp 38-45 doi:10.1016/j.mcat.2018.07.025
  137. A.Yu. Sidorenko, I.V. Il'ina, A.V. Kravtsova, A. Aho, O.V. Ardashov, N.S. Li-Zhulanov, K.P. Volcho, N.F. Salakhutdinov, D.Yu. Murzin, V.E. Agabekov
    Preparation of chiral isobenzofurans from 3-carene in the presence of modified clays
    Molecular Catalysis, 2018, V. 459, Pp 38-45 doi:10.1016/j.mcat.2018.07.025
  138. A.Yu. Sidorenko, I.V. Il'ina, A.V. Kravtsova, A. Aho, O.V. Ardashov, N.S. Li-Zhulanov, K.P. Volcho, N.F. Salakhutdinov, D.Yu. Murzin, V.E. Agabekov
    Preparation of chiral isobenzofurans from 3-carene in the presence of modified clays
    Molecular Catalysis, 2018, V. 459, Pp 38-45 doi:10.1016/j.mcat.2018.07.025
  139. A.Yu. Sidorenko, I.V. Il'ina, A.V. Kravtsova, A. Aho, O.V. Ardashov, N.S. Li-Zhulanov, K.P. Volcho, N.F. Salakhutdinov, D.Yu. Murzin, V.E. Agabekov
    Preparation of chiral isobenzofurans from 3-carene in the presence of modified clays
    Molecular Catalysis, 2018, V. 459, Pp 38-45 doi:10.1016/j.mcat.2018.07.025
  140. A.Yu. Sidorenko, I.V. Il'ina, A.V. Kravtsova, A. Aho, O.V. Ardashov, N.S. Li-Zhulanov, K.P. Volcho, N.F. Salakhutdinov, D.Yu. Murzin, V.E. Agabekov
    Preparation of chiral isobenzofurans from 3-carene in the presence of modified clays
    Molecular Catalysis, 2018, V. 459, Pp 38-45 doi:10.1016/j.mcat.2018.07.025
  141. Yu.A. Ten, O.G. Salnikov, S.A. Amitina, D.V. Stass, T.V. Rybalova, M.S. Kazantsev, A.S. Bogomyakov, E.A. Mostovich, D.G. Mazhukin
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