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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. 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, Published: 02 July 2020 doi:10.1038/s41428-020-0381-2, IF=2.825
  2. 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, First published: 13 July 2020 doi:10.1002/aoc.5937, IF=3.14
  3. 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, First published: 13 July 2020 doi:10.1002/aoc.5937, IF=3.14
  4. 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, First published: 13 July 2020 doi:10.1002/aoc.5937, IF=3.14
  5. 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, First published: 13 July 2020 doi:10.1002/aoc.5937, IF=3.14
  6. 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, First published: 13 July 2020 doi:10.1002/aoc.5937, IF=3.14
  7. 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, First published: 13 July 2020 doi:10.1002/aoc.5937, IF=3.14
  8. 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, Accepted Manuscript doi:10.1039/C9MD00516A
  9. 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, Accepted Manuscript doi:10.1039/C9MD00516A
  10. 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, Accepted Manuscript doi:10.1039/C9MD00516A
  11. 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, Accepted Manuscript doi:10.1039/C9MD00516A
  12. 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, Accepted Manuscript doi:10.1039/C9MD00516A
  13. 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, Accepted Manuscript doi:10.1039/C9MD00516A
  14. 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, Accepted Manuscript doi:10.1039/C9MD00516A
  15. 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, Accepted Manuscript doi:10.1039/C9MD00516A
  16. 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, first published on 06 Aug 2020 doi:10.1039/D0MD00108B
  17. 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, first published on 06 Aug 2020 doi:10.1039/D0MD00108B
  18. 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, first published on 06 Aug 2020 doi:10.1039/D0MD00108B
  19. 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, first published on 06 Aug 2020 doi:10.1039/D0MD00108B
  20. 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, first published on 06 Aug 2020 doi:10.1039/D0MD00108B
  21. 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, first published on 06 Aug 2020 doi:10.1039/D0MD00108B
  22. 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
  23. 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
  24. 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
  25. 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
  26. 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
  27. 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
  28. 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
  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. 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
  32. 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
  33. 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
  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. 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
  39. 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
  40. 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
  41. 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
  42. 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
  43. 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
  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. 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, First published: 27 July 2020 doi:10.1002/anie.202010041, IF=12.959
  47. 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, First published: 27 July 2020 doi:10.1002/anie.202010041, IF=12.959
  48. 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, First published: 27 July 2020 doi:10.1002/anie.202010041, IF=12.959
  49. 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, First published: 27 July 2020 doi:10.1002/anie.202010041, IF=12.959
  50. 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, First published: 27 July 2020 doi:10.1002/anie.202010041, IF=12.959
  51. 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, First published: 27 July 2020 doi:10.1002/anie.202010041, IF=12.959
  52. 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, First published: 27 July 2020 doi:10.1002/anie.202010041, IF=12.959
  53. 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, Available online 19 September 2020, 114806 doi:10.1016/j.poly.2020.114806, IF=2.342
  54. 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, Available online 19 September 2020, 114806 doi:10.1016/j.poly.2020.114806, IF=2.342
  55. 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, Available online 19 September 2020, 114806 doi:10.1016/j.poly.2020.114806, IF=2.342
  56. 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, Available online 19 September 2020, 114806 doi:10.1016/j.poly.2020.114806, IF=2.342
  57. 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, Available online 19 September 2020, 114806 doi:10.1016/j.poly.2020.114806, IF=2.342
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    A NEW Cu(I) IODIDE COMPLEX SHOWING DEEP-RED LUMINESCENCE
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    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
  617. 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
  618. 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
  619. 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
  620. 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
  621. 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
  622. 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
  623. 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
  624. 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
  625. 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
  626. 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
  627. 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
  628. 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
  629. 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
  630. 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
  631. 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)
  632. 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)
  633. 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)
  634. 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
  635. 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
  636. 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
  637. 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
  638. 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
  639. 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
  640. 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
  641. 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
  642. 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
  643. 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
  644. 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
  645. 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
  646. 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
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    DNA complexes with human apurinic/apyrimidinic endonuclease 1: structural insights revealed by pulsed dipolar EPR with orthogonal spin labeling
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    DNA complexes with human apurinic/apyrimidinic endonuclease 1: structural insights revealed by pulsed dipolar EPR with orthogonal spin labeling
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    Stimuli responsive aggregation-induced emission of bis(4-((9H-fluoren-9-ylidene)methyl)phenyl)thiophene single crystals
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    Stimuli responsive aggregation-induced emission of bis(4-((9H-fluoren-9-ylidene)methyl)phenyl)thiophene single crystals
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    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
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    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
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    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
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    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
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    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
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    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
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    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
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    Theoretical Basis for Switching a Kramers Single Molecular Magnet by Circularly-Polarized Radiation
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  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
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    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
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    Interaction of spin-correlated radical pair with a third radical: Combined effect of spin-exchange interaction and spin-selective reaction
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    Interaction of spin-correlated radical pair with a third radical: Combined effect of spin-exchange interaction and spin-selective reaction
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    Interaction of spin-correlated radical pair with a third radical: Combined effect of spin-exchange interaction and spin-selective reaction
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    Interaction of spin-correlated radical pair with a third radical: Combined effect of spin-exchange interaction and spin-selective reaction
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    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
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    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
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    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
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    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
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    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
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    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
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    Clay nanotubes catalyzed solvent-free synthesis of octahydro-2H-chromenols with pharmaceutical potential from (-)-isopulegol and ketones
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    Clay nanotubes catalyzed solvent-free synthesis of octahydro-2H-chromenols with pharmaceutical potential from (-)-isopulegol and ketones
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    Clay nanotubes catalyzed solvent-free synthesis of octahydro-2H-chromenols with pharmaceutical potential from (-)-isopulegol and ketones
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    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
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    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
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    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
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    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
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    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
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    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
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    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
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    Synthesis of 1-(Adamantan-1-yl)-1H-1,2,3-Triazoles and their Salts by Adamantylation in AdOH–HClO4 and AdOH–H2SO44 Systems
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    Synthesis of 1-(Adamantan-1-yl)-1H-1,2,3-Triazoles and their Salts by Adamantylation in AdOH–HClO4 and AdOH–H2SO44 Systems
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    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
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    The first example of the stereoselective synthesis and crystal structure of a spirobi­cyclo­quinazolinone based on (–)-fenchone and anthranilamide
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    Физическая активация процессов экстракции и органического синтеза
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    Физическая активация процессов экстракции и органического синтеза
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    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
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    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
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    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
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    Синтез полиэфиров двухатомных фенолов и борной кислоты и их взаимодействие с формальдегидом
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    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
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    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
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    Alkyl-dependent self-assembly of the first red-emitting zwitterionic {Cu4I6} clusters from [alkyl-P(2-Py)3]+ salts and CuI: when size matters
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    Effects of acute and chronic treatment of STEP inhibitor, TC-2153, on the nervous system and behaviour of zebrafish (Danio rerio)
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    Synthesis and Optical Properties of Alkaloid Quindoline, Its Structural Analogues and Substituted δ-Carbolines
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    Increasing bioavailability of very poorly water-soluble compounds. A case study of an anti-tumor drug, soloxolon methyl
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    Increasing bioavailability of very poorly water-soluble compounds. A case study of an anti-tumor drug, soloxolon methyl
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    Increasing bioavailability of very poorly water-soluble compounds. A case study of an anti-tumor drug, soloxolon methyl
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    Increasing bioavailability of very poorly water-soluble compounds. A case study of an anti-tumor drug, soloxolon methyl
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    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
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    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
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    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
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    A near-infra-red emitting manganese(II) complex with a pyrimidine-based ligand
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    A near-infra-red emitting manganese(II) complex with a pyrimidine-based ligand
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    A near-infra-red emitting manganese(II) complex with a pyrimidine-based ligand
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    A near-infra-red emitting manganese(II) complex with a pyrimidine-based ligand
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    A near-infra-red emitting manganese(II) complex with a pyrimidine-based ligand
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    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)
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    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
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    Inhibitory Effect of New Semisynthetic Usnic Acid Derivatives on Human Tyrosyl-DNA Phosphodiesterase 1
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    Inhibitory Effect of New Semisynthetic Usnic Acid Derivatives on Human Tyrosyl-DNA Phosphodiesterase 1
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    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
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    Inhibitory Effect of New Semisynthetic Usnic Acid Derivatives on Human Tyrosyl-DNA Phosphodiesterase 1
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    Inhibitory Effect of New Semisynthetic Usnic Acid Derivatives on Human Tyrosyl-DNA Phosphodiesterase 1
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    Inhibitory Effect of New Semisynthetic Usnic Acid Derivatives on Human Tyrosyl-DNA Phosphodiesterase 1
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    Inhibitory Effect of New Semisynthetic Usnic Acid Derivatives on Human Tyrosyl-DNA Phosphodiesterase 1
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    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
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    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
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    Synthetic modifications of carboline alkaloid harmine: synthesis of 8-substituted derivatives
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    Synthetic modifications of carboline alkaloid harmine: synthesis of 8-substituted derivatives
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    Synthetic modifications of carboline alkaloid harmine: synthesis of 8-substituted derivatives
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    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
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    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
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    Комплексы Zn(II) с анионами тетрафтортерефталевой, октафторбифенил- 4,4'-дикарбоновой кислот и 1,10-фенантролином
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    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
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    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
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    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
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  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
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    Oxidative damage to epigenetically methylated sites affects DNA stability, dynamics and enzymatic demethylation
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    Oxidative damage to epigenetically methylated sites affects DNA stability, dynamics and enzymatic demethylation
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    Oxidative damage to epigenetically methylated sites affects DNA stability, dynamics and enzymatic demethylation
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    Oxidative damage to epigenetically methylated sites affects DNA stability, dynamics and enzymatic demethylation
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    Oxidative damage to epigenetically methylated sites affects DNA stability, dynamics and enzymatic demethylation
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  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
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    Oxidative damage to epigenetically methylated sites affects DNA stability, dynamics and enzymatic demethylation
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  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
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  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
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  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
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  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
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    Oxidative damage to epigenetically methylated sites affects DNA stability, dynamics and enzymatic demethylation
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    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
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    Oxidative damage to epigenetically methylated sites affects DNA stability, dynamics and enzymatic demethylation
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    Oxidative damage to epigenetically methylated sites affects DNA stability, dynamics and enzymatic demethylation
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    Oxidative damage to epigenetically methylated sites affects DNA stability, dynamics and enzymatic demethylation
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    Oxidative damage to epigenetically methylated sites affects DNA stability, dynamics and enzymatic demethylation
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    Oxidative damage to epigenetically methylated sites affects DNA stability, dynamics and enzymatic demethylation
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    Oxidative damage to epigenetically methylated sites affects DNA stability, dynamics and enzymatic demethylation
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    Oxidative damage to epigenetically methylated sites affects DNA stability, dynamics and enzymatic demethylation
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    Oxidative damage to epigenetically methylated sites affects DNA stability, dynamics and enzymatic demethylation
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    Oxidative damage to epigenetically methylated sites affects DNA stability, dynamics and enzymatic demethylation
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