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Публикации

  1. 22Fatullaev E.I., Shavykin O.V., Darinskii A.A., Neelov I.M. The Brownian dynamics and numerical self-consistent field simulations of the dendrigraft nanocontainers // Magnetic Resonance and its Applications. SPINUS-2021: Proceedings 18th International School-Conference - 2021, pp. 196-198
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  2. 21Mikhtaniuk S.E., Fatullaev E.I., Shavykin O.V., Darinskii A.A., Holm C., Neelov I.M. The self-assembly of the amphiphilic molecules consisting of polylysine dendrons with the single and double hydrophobic tails // Magnetic Resonance and its Applications. SPINUS-2021: Proceedings 18th International School-Conference - 2021, pp. 234-236
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  3. 20Shavykin O.V., Neelov I.M., Borisov O.V., Darinskii A.A., Leermakers F. SCF Theory of Uniformly Charged Dendrimers: Impact of Asymmetry of Branching, Generation Number, and Salt Concentration // Macromolecules - 2020, Vol. 53, No. 17, pp. 7298-7311 [IF: 5.835]
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  4. 19Mikhailov I.V., Darinskii A.A., Zhulina E.B., Borisov O.V., Leermakers F.A. Self-Consistent Field Analysis of Molecular Bottle-Brushes with Primary and Secondary Side Chains: Induced Persistence Length and Lateral Thickness // Polymer Science - Series C - 2018, Vol. 60, No. Suppl.1, pp. 160-171 [IF: 2.556, SJR: 0.295]
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  5. 18Mikhailov I.V., Leermakers F.A., Borisov O.V., Zhulina E.B., Darinskii A.A., Birshtein T.M. Impact of Macromolecular Architecture on Bending Rigidity of Dendronized Surfaces // Macromolecules - 2018, Vol. 51, No. 9, pp. 3315-3329 [IF: 5.835]
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  6. 17Neelov I.M., Shavykin O.V., Ilyash M.Y., Bezrodnyi V.V., Mikhtaniuk S.E., Marchenko A.A., Fatullaev E.I., Darinskii A.A., Leermakers F.A. Application of High Performance Computing for Comparison of Two Highly Branched Lysine Molecules of Different Topology // Supercomputing Frontiers and Innovations - 2018, Vol. 5, No. 3, pp. 60-64 [SJR: 0.212]
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  7. 16Shavykin O.V., Leermakers F.A., Neelov I.M., Darinskii A.A. Self-assembly of lysine-based dendritic surfactants modeled by the self-consistent field approach // Langmuir - 2018, Vol. 34, No. 4, pp. 1613–1626 [IF: 3.833, SJR: 0.786]
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  8. 15Shavykin O.V., Mikhailov I.V., Darinskii A.A., Neelov I.M., Leermakers F.A. Effect of an asymmetry of branching on structural characteristics of dendrimers revealed by Brownian dynamics simulations // Polymer - 2018, Vol. 146, pp. 256-266 [IF: 3.684, SJR: 0.829]
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  9. 14Mikhaylov I.V., Borisov O.V., Darinskii A.A., Leermakers F.A., Birshtein T.M. Bending moduli of dendritic polymer brushes in a good solvent // Polymer Science - Series A - 2017, Vol. 59, No. 5, pp. 772-783 [IF: 0.822, SJR: 0.224]
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  10. 13Neelov I.M., Ilyash M.Y., Fal’Kovich S.G., Darinskii A.A. Computer simulation of lysine dendrimers by molecular dynamics method // Synthesis, Characterization and Modelling of Nano-Sized Structures - 2016, pp. 147-156
  11. 12Shavykin O.V., Neelov I.M., Darinskii A.A. Is the manifestation of the local dynamics in the spin-lattice NMR relaxation in dendrimers sensitive to excluded volume interactions? // Physical Chemistry Chemical Physics - 2016, Vol. 18, No. 35, pp. 24307-24317 [IF: 4.123, SJR: 0.721]
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  12. 11Шавыкин О.В., Попова Е.В., Даринский А.А., Неелов И.М., Леермакерс Ф. Компьютерное моделирование методом броуновской динамики локальной подвижности в дендримерах с асимметричным ветвлением // Научно-технический вестник информационных технологий, механики и оптики [Scientific and Technical Journal of Information Technologies, Mechanics and Optics] - 2016. - Т. 16. - № 5(105). - С. 893-902 [SJR: 0.151]
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  13. 10Markelov D.A., Falkovich S.G., Neelov I.M., Ilyash M.Y., Matveev V.V., Lahderanta E., Matveev V.V., Falkovich S., Lahderanta E.M., Ingman P., Darinskii A.A. Molecular dynamics simulation of spin-lattice NMR relaxation in poly-L-lysine dendrimers: Manifestation of the semiflexibility effect // Physical Chemistry Chemical Physics - 2015, Vol. 17, No. 5, pp. 3214-3226 [IF: 4.123, SJR: 0.721]
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  14. 9Mikhailov I.V., Darinskii A.A., Zhulina E.B., Borisov O.V., Leermakers F.A. Persistence length of dendronized polymers: the self-consistent field theory // Soft Matter - 2015, Vol. 11, No. 48, pp. 9367-9378 [IF: 3.889, SJR: 0.783]
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  15. 8Mikhaylov I.V., Darinskii A.A. Effect of the side-arm architecture on the conformational properties of bottle brushes // Polymer Science - Series A - 2015, Vol. 57, No. 2, pp. 239-250 [IF: 0.822, SJR: 0.224]
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  16. 7Михайлов И.В., Шавыкин О.В., Даринский А.А., Неелов И.М. Корреляция между размерами и топологическими индексами для ряда сверхразветвленных полимеров // Вестник Тверского государственного университета. Серия: Химия - 2015. - № 2. - С. 68-87
  17. 6Filippov A.P., Belyaeva E.V., Krasova A.S., Simonova M.A., Meleshko T.K., Ilgach D.M., Bogorad N.N., Yakimansky A.V., Larin S.V., Darinskii A.A. Conformations of molecular brushes based on polyimide and poly(methyl methacrylate) in selective solvents: Experiment and computer simulation // Polymer Science - Series A - 2014, Vol. 56, No. 4, pp. 393-404 [IF: 0.822, SJR: 0.224]
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  18. 5Larin S.V., Darinskii A.A. Interaction of interpolyelectrolyte complexes formed by a linear polyelectrolyte and dendrimers or spheres // Polymer Science - Series A - 2014, Vol. 56, No. 2, pp. 228-239 [IF: 0.822, SJR: 0.224]
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  19. 4Mikhailov I.V., Darinskii A.A. Does symmetry of branching affect the properties of dendrimers? // Polymer Science - Series A - 2014, Vol. 56, No. 4, pp. Polymer Science - Series A [IF: 0.822, SJR: 0.224]
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  20. 3Neelov I., Ilyash M., Falkovich S., Darinskii A. Computer simulation of lysine dendrimers by molecular dynamics method // Smart Nanocomposites - 2014, Vol. 5, No. 2, pp. 127-132
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  21. 2Neelov I.M., Markelov D.A., Falkovich S.G., Ilyash M.Y., Okrugin B.M., Darinskii A.A. Mathematical Simulation of Lysine Dendrimers: Temperature Dependences // Polymer Science - Series C - 2013, Vol. 55, No. 1, pp. 154-161 [IF: 2.556, SJR: 0.295]
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  22. 1Неелов И.М., Маркелов Д.А., Фалькович С.Г., Ильяш М.Ю., Округин Б.М., Даринский А.А. Математическое моделирование лизиновых дендримеров. Температурные зависимости // Высокомолекулярные соединения. Серия А - 2013. - Т. 55. - № 7. - С. 963-970 [IF: 0.429]
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