Публикации (по IF ) сотрудника подразделения БД НИОХ СО РАН
- L.S. Konstantinova, I.V. Baranovsky, E.A. Pritchina, M.S. Mikhailov, I.Yu. Bagryanskaya, N.A. Semenov, I.G. Irtegova, G.E. Salnikov, K.A. Lyssenko, N.P. Gritsan, A.V. Zibarev, O.A. Rakitin
Fused 1,2,3-Thiaselenazoles Synthesized from 1,2,3-Dithiazoles through Selective Chalcogen Exchange
Chemistry - A European Journal, 2017, V. 23, N 67, Pp 17037-17047 doi:10.1002/chem.201703182, IF=5.316
- N.A. Semenov, D.E. Gorbunov, M.V. Shakhova, G.E. Salnikov, I.Yu. Bagryanskaya, V.V. Korolev, J. Beckmann, N.P. Gritsan, A.V. Zibarev
Donor-Acceptor Complexes between 1,2,5-Chalcogenadiazoles (Te, Se, S) and the Pseudo Halides CN- and XCN- (X = O, S, Se, Te)
Chemistry - A European Journal, 2018, V.24, N 49, Pp 12983-12991 doi:10.1002/chem.201802257, IF=5.16
- Y. Shuku, Y. Hirai, N.A. Semenov, E. Kadilenko, N.P. Gritsan, A.V. Zibarev, O.A. Rakitin, K. Awaga
3D molecular network and magnetic ordering, formed by multi-dentate magnetic couplers, bis(benzene)chromium(I) and [1,2,5]thiadiazolo[3,4-c][1,2,5]thiadiazolidyl
Dalton Trans., 2018, V. 47, N 29, Pp 9897-9902 doi:10.1039/C8DT02214C, IF=4.98
- N.A. Pushkarevsky, N.A. Semenov, A.A. Dmitriev, N.V. Kuratieva, A.S. Bogomyakov, I.G. Irtegova, N.V. Vasilieva, B.E. Bode, N.P. Gritsan, L.S. Konstantinova, J.D. Woollins, O.A. Rakitin, S.N. Konchenko, V.I. Ovcharenko, A.V. Zibarev
Synthesis and Properties of the Heterospin (S1 = S2 = 1/2) Radical-Ion Salt Bis(mesitylene)molybdenum(I) [1,2,5]Thiadiazolo[3,4-c][1,2,5]thiadiazolidyl
Inorg. Chem., 2015, 54 (14), pp 7007-7013 doi:10.1021/acs.inorgchem.5b01033, IF=4.762
- N.A. Semenov, N.A. Pushkarevsky, A.V. Lonchakov, A.S. Bogomyakov, E.A. Pritchina, E.A. Suturina, N.P. Gritsan, S.N. Konchenko, R. Mews, V.I. Ovcharenko, A.V. Zibarev
Heterospin π-heterocyclic radical-anion salt: synthesis, structure and magnetic properties of decamethylchromocenium [1,2,5]thiadiazolo[3,4-c][1,2,5]thiadiazolidyl
Inorg. Chem., 2010, V. 49, N 16, 7558-7564. doi:10.1021/ic101064c, IF=4.657
- N.A. Semenov, N.A. Pushkarevsky, E.A. Suturina, E.A. Chulanova, N.V. Kuratieva, A.S. Bogomyakov, I.G. Irtegova, N.V. Vasilieva, L.S. Konstantinova, N.P. Gritsan, O.A. Rakitin, V.I. Ovcharenko, S.N. Konchenko, A.V. Zibarev
Bis(toluene)chromium(I) [1,2,5]Thiadiazolo[3,4-c][1,2,5]thiadiazolidyl and [1,2,5]Thiadiazolo[3,4-b]pyrazinidyl: New Heterospin (S1 = S2=1/2) Radical-Ion Salts
Inorganic Chemistry, 2013, V. 52, N 11, P. 6654-6663. doi:10.1021/ic400659q, IF=4.592
- E. Lork, V.G. Vasiliev, S.N. Konchenko, J. Beckmann, N.P. Gritsan, A.V. Zibarev, N.A. Semenov, A.V. Lonchakov, N.A. Pushkarevsky, E.A. Suturina, V.V. Korolev
Coordination of Halide and Chalcogenolate Anions to Heavier 1,2,5-Chalcogenadiazoles: Experiment and Theory
Organometallics, 2014, 33 (16), pp 4302-4314. doi:10.1021/om5006403, IF=4.252
- E.A. Chulanova, E.A. Radiush, I.K. Shundrina, I.Yu. Bagryanskaya, N.A. Semenov, J. Beckmann, N.P. Gritsan, A.V. Zibarev
Lewis Ambiphilicity of 1,2,5-Chalcogenadiazoles for Crystal Engineering: Complexes with Crown Ethers
Crystal Growth & Design, 2020, V. 20, N 9, Pp 5868-5879 doi:10.1021/acs.cgd.0c00536, IF=4.089
- E.A. Radiush, E.A. Pritchina, E.A. Chulanova, A.A. Dmitriev, I. Yu Bagryanskaya, A.M-Z. Slawin, J. D. Woollins, N.P. Gritsan, A.V. Zibarev, N.A. Semenov
Chalcogen-bonded donor–acceptor complexes of 5,6-dicyano[1,2,5]selenadiazolo[3,4-b]pyrazine with halide ions Check for updates
New J. Chem., 2022,46(30), 14490-14501 doi:10.1039/D2NJ02345H, IF=3.924
- N.A. Semenov, E.A. Radiush, E.A. Chulanova, A.M. Z. Slawin, J.D. Woollins, E.M. Kadilenko, I.Yu. Bagryanskaya, I.G. Irtegova, A.S. Bogomyakov, L.A. Shundrin, N.P. Gritsan, A.V. Zibarev
Design, synthesis and isolation of a new 1,2,5-selenadiazolidyl and structural and magnetic characterization of its alkali-metal salts
New J. Chem., 2019, V. 43, N 41, Pp 16331-16337 doi:10.1039/C9NJ04069B, IF=3.69
- N.A. Semenov, N.A. Pushkarevsky, J. Beckmann, P. Finke, E. Lork, R. Mews, I.Yu. Bagryanskaya, Yu.V. Gatilov, S.N. Konchenko, V.G. Vasiliev, A.V. Zibarev
Tellurium-nitrogen π-heterocyclic chemistry: synthesis, structure and reactivity toward halides and pyridine of 3,4-dicyano-1,2,5-telluradiazole
Eur. J. Inorg. Chem., 2012, N 23, 3693-3703. doi:10.1002/ejic.201200376, IF=3.49
- E. Parman, M. Lokov, R. Jarviste, S. Tshepelevitsh, N.A. Semenov, E.A. Chulanova, G.E. Salnikov, D.O. Prima, Yu.G. Slizhov, I. Leito, A.V. Zibarev
Acid-Base and Anion Binding Properties of Tetrafluorinated 1,3-Benzodiazole, 1,2,3-Benzotriazole and 2,1,3-Benzoselenadiazole
ChemPhysChem, 2021, V. 22, N 22, Pp 2329-2335 doi:10.1002/cphc.202100475, IF=3.102
- E.A. Suturina, N.A. Semenov, A.V. Lonchakov, I.Yu. Bagryanskaya, Yu.V. Gatilov, I.G. Irtegova, N.V. Vasilieva, E. Lork, R. Mews, N.P. Gritsan, A.V. Zibarev
Interaction of 1,2,5-Chalcogenadiazole Derivatives with Thiophenolate: Hypercoordination with Formation of Interchalcogen Bond versus Reduction to Radical Anion
J. Phys. Chem. A., 2011, V. 115, 4851–4860. doi:10.1021/jp2019523, IF=2.732
- I.Yu. Bagryanskaa, Yu.V. Gatilov, N.P. Gritsan, V.N. Ikorskii, I.G. Irtegova, A.V. Lonchakov, E. Lork, R. Mews, V.I. Ovcharenko, N.A. Semenov, N.V. Vasilieva, A.V. Zibarev
[1,2,5]Selenadiazolo[3,4-c][1,2,5] thiadiazole and [1,2,5]selenadiazolo [3,4-c][1,2,5]thiadiazolidyl - a synthetic, structural, and theoretical study
Eur. J. Inorg. Chem., 2007, N 30, 4751-4761. doi:10.1002/ejic.200700501, IF=2.703
- D.A. Bashirov, T.S. Sukhikh, N.V. Kuratieva, D.Yu. Naumov, S.N. Konchenko, N.A. Semenov, A.V. Zibarev
Iridium complexes with 2,1,3-benzothiadiazole and related ligands
Polyhedron, 2012, V. 42, N 1, 168-174. doi:10.1016/j.poly.2012.05.015, IF=2.56
- A.Yu. Makarov, E.A. Chulanova, N.A. Semenov, N.A. Pushkarevsky, A.V. Lonchakov, A.S. Bogomyakov, I.G. Irtegova, N.V. Vasilieva, E. Lork, N.P. Gritsan, S.N. Konchenko, V.I. Ovcharenko, A.V. Zibarev
A novel sulfur-nitrogen Pi-heterocyclic radical anion, (6H-1,2,3-benzodithiazo16-ylidene)malononitrilidyl, and its homo- and heterospin salts
Polyhedron, 2014, V. 72, Pp 43-49. doi:10.1016/j.poly.2014.01.027, IF=2.46
- Charge-transfer chemistry of chalcogen–nitrogen π-heterocycles
Charge-transfer chemistry of chalcogen–nitrogen π-heterocycles
Mendeleev Communications, 2018, V. 28, N 5, Pp 453-460 doi:10.1016/j.mencom.2018.09.001, IF=2.098
- N.A. Pushkarevsky, A.V. Lonchakov, N.A. Semenov, E. Lork, L.I. Buravov, L.S. Konstantinova, T.G. Silber, N. Robertson, N.P. Gritsan, O.A. Rakitin, J.D. Woollins, E.B. Yagubskii, A.V. Zibarev
First charge-transfer complexes between tetrathiafulvalene and 1,2,5-chalcogenadiazole derivatives: design, synthesis, crystal structures, electronic and electrical properties
Synthetic Met., 2012, V. 162, 2267-2276. doi:10.1016/j.synthmet.2012.10.026, IF=1.828
- Н.А. Семенов, А.В. Лончаков, Н.П. Грицан, А.В. Зибарев
Донорно-акцепторная координация анионов атомами халькогенов 1,2,5-халькогенадиазолов
Известия Академии наук. Серия химическая. 2015. № 3. С. 499-510 (Donor-acceptor coordination of anions by chalcogen atoms of 1,2,5-chalcogenadiazoles/ N. A. Semenov, A. V. Lonchakov, N. P. Gritsan , A. V. Zibarev// Russian Chemical Bulletin, 2015, V. 64, N 3, pp 499-510 doi:10.1007/s11172-015-0893-7), IF=0.481
- Н.А. Семенов, И.Ю. Багрянская, А.В. Алексеев, Ю.В. Гатилов, Э. Лорк, Р. Мевс, Г.-Ф. Рошенталер, А.В. Зибарев
Новые молекулярные комплексы тримера перфтор-орто-фениленртути с гетероциклическими соединениями
Журнал структурной химии, 2010, Т. 51, № 3, C. 569-574. (New molecular complexes of trimeric perfluoro-ortho-phenylene mercury with heterocyclic compounds/ N.A. Semenov, I.Y. Bagryanskaya, Y.V. Gatilov, A.V. Zibarev, A.V. Alekseev, E. Lork, R. Mews, G.-V. Roeschentaler// J STRUCT CHEM+, 2010, V. 51, N 3, pp. 552-557. doi:10.1007/s10947-010-0080-5), IF=0.453