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Публикации в базе данных Math-Net.Ru |
Цитирования |
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2026 |
| 1. |
M. Mangrulkar, S. Yu. Luchkin, A. G. Boldyreva, P. A. Troshin, K. J. Stevenson, “Improving the intrinsic photostability of MeNH<sub>3</sub>PbI<sub>3</sub> layers by passivation with pentaerythritol tetrakis(2-mercaptoacetate)”, Mendeleev Commun., 36:4 (2026), 413–415 |
| 2. |
G. R. Baymuratova, I. K. Yakushchenko, G. Z. Tulibaeva, S. G. Vasil'ev, P. A. Troshin, A. F. Shestakov, O. V. Yarmolenko, “Lithium and potassium batteries using promising organic electrode material based on hexaazatrinaphthylene”, Mendeleev Commun., 36:1 (2026), 82–84 |
| 3. |
Yu. I. Baluda, A. V. Mumyatov, T. A. Savinykh, E. P. Antoshkina, S. G. Vasil'ev, A. F. Shestakov, P. A. Troshin, O. A. Kraevaya, “Novel naphthalene benzimidazole-based materials for potassium metal batteries: revealing the importance of molecular weight for material performance”, Mendeleev Commun., 36:1 (2026), 79–81 |
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2025 |
| 4. |
P. M. Kuznetsov, T. N. Khokhlova, G. A. Kichigina, P. P. Kushch, D. P. Kirukhin, P. A. Troshin, “Methodology for the radiation hardness assessment of organic semiconductors”, Mendeleev Commun., 35:6 (2025), 688–691 |
| 5. |
P. M. Kuznetsov, S. L. Nikitenko, M. V. Zhidkov, D. P. Kirukhin, E. V. Golosov, P. A. Troshin, “Lateral photoresistor as a versatile device platform for stability assessment of organic semiconductors”, Mendeleev Commun., 35:6 (2025), 684–687 |
1
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| 6. |
M. I. Ustinova, G. V. Shilov, D. V. Korchagin, P. A. Troshin, S. M. Aldoshin, L. A. Frolova, “Towards stable wide-bandgap perovskite absorbers: controlling light-induced halide phase segregation in CsPbI<sub>2</sub>Br through partial lead substitution”, Mendeleev Commun., 35:5 (2025), 573–576 |
2
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| 7. |
M. I. Ustinova, G. V. Shilov, D. V. Korchagin, N. N. Dremova, P. A. Troshin, S. M. Aldoshin, L. A. Frolova, “Partial lead substitution as a tool to manage the light-induced recrystallization and photostability of mixed-cation lead halide perovskites”, Mendeleev Commun., 35:5 (2025), 569–572 |
1
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| 8. |
E. A. Komissarova, S. A. Kuklin, P. M. Kuznetsov, A. N. Galiullin, N. A. Slesarenko, P. A. Troshin, “Carbazole-based conjugated polymers with enhanced UV hardness: promising electron donor materials for stable organic solar cells”, Mendeleev Commun., 35:4 (2025), 413–416 |
1
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| 9. |
O. A. Kraevaya, S. L. Nikitenko, N. A. Slesarenko, E. P. Antoshkina, E. A. Khakina, A. S. Peregudov, P. A. Troshin, S. M. Aldoshin, “Fullerene-based carboxylic acids for improving performance and stability of perovskite solar cells”, Mendeleev Commun., 35:4 (2025), 390–392 |
| 10. |
S. L. Nikitenko, O. A. Kraevaya, A. A. Sokolova, N. A. Slesarenko, E. P. Antoshkina, E. A. Khakina, A. S. Peregudov, P. A. Troshin, S. M. Aldoshin, “Naphthalenediimides with carboxyl anchoring groups as promising components of the electron transport layer in n-i-p perovskite solar cells”, Mendeleev Commun., 35:4 (2025), 386–389 |
| 11. |
E. A. Komissarova, S. A. Kuklin, N. A. Slesarenko, A. F. Latypova, A. F. Akbulatov, V. V. Ozerova, M. N. Kevreva, N. A. Emelianov, L. A. Frolova, P. A. Troshin, “Impact of fluorination on optoelectronic properties of thiophene-benzothiadiazole-based hole-transport polymers for perovskite solar cells”, Mendeleev Commun., 35:3 (2025), 327–330 |
1
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| 12. |
И. А. Чуйко, П. А. Трошин, С. А. Пономаренко, Ю. Н. Лупоносов, “Полимеры на основе трифениламина: синтез, свойства, применение”, Усп. хим., 94:1 (2025), RCR5152 ; I. A. Chuyko, P. A. Troshin, S. A. Ponomarenko, Yu. N. Luponosov, “Polymers based on triphenylamine: synthesis, properties, and applications”, Russian Chem. Reviews, 94:1 (2025), RCR5152 |
16
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2024 |
| 13. |
А. И. Кухаренко, М. И. Устинова, С. О. Чолах, П. А. Трошин, И. С. Жидков, “Влияние частичного замещения $Pb$ атомами $Ge$ на стабильность гибридных перовскитов $CsFAPbI_3$ к мощным потокам электронов”, Междунар. науч.-исслед. журн., 2024, № 5(143)S, 15 |
| 14. |
N. A. Emelianov, V. V. Ozerova, A. A. Bizyaeva, M. S. Leshchev, P. A. Troshin, “Impact of electron transport layer uniformity on field-induced degradation of inverted perovskite solar cells”, Mendeleev Commun., 34:6 (2024), 844–846 |
2
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| 15. |
E. A. Komissarova, S. A. Kuklin, A. F. Latypova, S. L. Nikitenko, V. V. Ozerova, M. N. Kevreva, N. A. Emelianov, L. A. Frolova, P. A. Troshin, “Novel dithieno[3,2-<em>f</em>:2',3'-<em>h</em>]quinoxaline-based polymers as hole transport materials for perovskite solar cells”, Mendeleev Commun., 34:5 (2024), 656–659 |
3
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| 16. |
N. N. Dremova, G. V. Shilov, P. A. Troshin, L. A. Frolova, “Stabilization of the perovskite phase of CsPbI<sub>3</sub> with isonipecotic acid”, Mendeleev Commun., 34:4 (2024), 481–483 |
3
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| 17. |
O. A. Kraevaya, A. V. Chernyak, A. F. Shestakov, P. A. Troshin, “Displacement of methoxy groups by thiol residues on the fullerene cage”, Mendeleev Commun., 34:3 (2024), 411–413 |
2
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| 18. |
P. M. Kuznetsov, E. A. Komissarova, S. A. Kuklin, P. A. Troshin, “Molecular structure–intrinsic photostability relationships for thiophene-benzothiadiazole alternating type conjugated polymers”, Mendeleev Commun., 34:3 (2024), 338–341 |
8
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| 19. |
S. A. Kuklin, S. V. Safronov, A. S. Peregudov, E. A. Khakina, M. M. Babaskina, M. G. Ezernitskaya, O. Yu. Fedorovskii, E. S. Kobeleva, L. V. Kulik, L. A. Frolova, P. A. Troshin, A. R. Khokhlov, “New ethynediyl-linked perylene diimide/2,1,3-benzothiadiazole conjugates as electron transporting materials for perovskite solar cells”, Mendeleev Commun., 34:3 (2024), 316–320 |
3
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| 20. |
O. A. Kraevaya, E. A. Khakina, N. A. Emelianov, A. F. Shestakov, T. E. Sashenkova, D. V. Mishchenko, P. A. Troshin, “Integration of anticancer drug ruboxyl into the membrane of fullerene-based vesicle enhances its therapeutic performance”, Mendeleev Commun., 34:2 (2024), 178–180 |
2
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2023 |
| 21. |
G. R. Baymuratova, E. A. Komissarova, G. Z. Tulibaeva, O. V. Yarmolenko, O. A. Kraevaya, P. A. Troshin, “Ni<sup>II</sup> and Cu<sup>II</sup> coordination polymers as anode materials and their compatibility with different electrolytes in Li-ion batteries”, Mendeleev Commun., 33:6 (2023), 861–863 |
3
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| 22. |
S. A. Kuklin, S. V. Safronov, E. A. Khakina, A. G. Buyanovskaya, L. A. Frolova, P. A. Troshin, “New perylene diimide electron acceptors for organic electronics: Synthesis, optoelectronic properties and performance in perovskite solar cells”, Mendeleev Commun., 33:3 (2023), 314–317 |
5
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| 23. |
S. A. Kuklin, S. V. Safronov, O. Yu. Fedorovskii, E. A. Khakina, L. V. Kulik, D. E. Utkin, L. A. Frolova, P. A. Troshin, A. R. Khokhlov, “New small-molecular benzimidazole derivatives for photovoltaics: Synthesis, optical and electrochemical properties and application in perovskite solar cells”, Mendeleev Commun., 33:3 (2023), 306–310 |
6
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2022 |
| 24. |
A. V. Yudina, G. R. Baymuratova, A. V. Mumyatov, G. Z. Tulibaeva, E. N. Kabachkov, P. A. Troshin, A. F. Shestakov, O. V. Yarmolenko, “Addition of SiO<sub>2</sub> to the operation of a polyimide cathode in a sodium battery”, Mendeleev Commun., 32:5 (2022), 655–657 |
1
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| 25. |
R. R. Kapaev, E. V. Shklyaeva, G. G. Abashev, K. J. Stevenson, P. A. Troshin, “Nickel tetrathiooxalate as a cathode material for potassium batteries”, Mendeleev Commun., 32:2 (2022), 226–227 |
3
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2021 |
| 26. |
D. V. Khudyakov, D. V. Ganin, A. D. Lyashedko, L. A. Frolova, P. A. Troshin, A. S. Lobach, “Thin films of MAPbI<sub>3</sub> and MA<sub>0.15</sub>FA<sub>0.75</sub>Cs<sub>0.1</sub>PbI<sub>3</sub> perovskites under femtosecond laser irradiation: nonlinear optical absorption and kinetics of photodegradation”, Mendeleev Commun., 31:4 (2021), 456–458 |
6
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| 27. |
M. Mangrulkar, S. Yu. Luchkin, A. G. Boldyreva, P. A. Troshin, K. J. Stevenson, “Influence of pyridine-based ligands on photostability of MAPbI<sub>3</sub> thin films”, Mendeleev Commun., 31:3 (2021), 319–322 |
6
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| 28. |
P. M. Kuznetsov, I. E. Kuznetsov, I. V. Klimovich, P. A. Troshin, A. V. Akkuratov, “Synthesis and characterization of benzobisthiazole based polymers as donor materials for organic solar cells”, Mendeleev Commun., 31:1 (2021), 30–32 |
8
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| 29. |
Д. В. Худяков, Д. В. Ганин, А. Д. Ляшедько, Л. А. Фролова, П. А. Трошин, А. С. Лобач, “Нелинейное оптическое поглощение тонких пленок галогенидных перовскитов при фемтосекундном возбуждении на длинах волн 1064 и 532 нм”, Квантовая электроника, 51:3 (2021), 211–216 [D. V. Khudyakov, D. V. Ganin, A. D. Lyashedko, L. A. Frolova, P. A. Troshin, A. S. Lobach, “Nonlinear optical absorption in thin halide perovskite films under femtosecond excitation at wavelengths of 1064 and 532 nm”, Quantum Electron., 51:3 (2021), 211–216 ] |
3
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2020 |
| 30. |
I. E. Kuznetsov, P. M. Kuznetsov, A. V. Maskaev, A. V. Akkuratov, P. A. Troshin, “Novel small oligothiophene molecules with phenylene and naphthalene cores as promising absorber materials for organic solar cells”, Mendeleev Commun., 30:5 (2020), 683–685 |
3
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2019 |
| 31. |
Н. С. Горячев, А. Ю. Белик, А. Ю. Рыбкин, П. А. Михайлов, О. А. Краевая, П. А. Трошин, А. И. Котельников, “Исследование спектральных свойств нековалентных комплексов водорастворимого полизамещенного производного фуллерена С$_{60}$ и хлорина е6 в полярных растворителях”, Оптика и спектроскопия, 126:6 (2019), 708–712 ; N. S. Goryachev, A. Yu. Belik, A. Yu. Rybkin, P. A. Mikhaylov, O. A. Kraevaya, P. A. Troshin, A. I. Kotelnikov, “Investigation of the spectral properties of non-complex complexes of a water-soluble polysubstituted derivative of С$_{60}$ fullerene and chlorin e6 in polar solvents”, Optics and Spectroscopy, 126:6 (2019), 629–633 |
2
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2018 |
| 32. |
I. S. Zhidkov, A. F. Akbulatov, A. I. Kukharenko, S. O. Cholakh, K. J. Stevenson, P. A. Troshin, E. Z. Kurmaev, “Influence of halide mixing on thermal and photochemical stability of hybrid perovskites: XPS studies”, Mendeleev Commun., 28:4 (2018), 381–383 |
10
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2017 |
| 33. |
A. A. Ignatova, A. V. Kozlov, A. F. Shestakov, A. V. Chernyak, O. V. Yarmolenko, P. A. Troshin, “Insight in the degradation of polyquinone-based cathode material in lithium-organic battery under cycling”, Mendeleev Commun., 27:5 (2017), 524–526 |
5
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| 34. |
I. V. Klimovich, F. A. Prudnov, L. N. Inasaridze, I. E. Kuznetsov, A. S. Peregudov, P. A. Troshin, “5,6-Bis(octyloxy)-2,1,3-benzoxadiazole-based (X–DADAD)<sub>n</sub> polymers incorporating electron-donor building blocks used as photoactive materials in organic solar cells”, Mendeleev Commun., 27:2 (2017), 207–209 |
2
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| 35. |
Е. А. Хакина, П. А. Трошин, “Галогениды фуллеренов как предшественники в синтезе функциональных производных $\mathrm{C}_{60}$ и $\mathrm{C}_{70}$”, Усп. хим., 86:9 (2017), 805–830 ; E. A. Khakina, P. A. Troshin, “Halogenated fullerenes as precursors for the synthesis of functional derivatives of $\mathrm{C}_{60}$ and $\mathrm{C}_{70}$”, Russian Chem. Reviews, 86:9 (2017), 805–830 |
26
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2016 |
| 36. |
A. V. Akkuratov, D. K. Susarova, O. A. Mukhacheva, P. A. Troshin, “Design of highly soluble PCDTBTBT-type conjugated polymers for organic solar cells”, Mendeleev Commun., 26:3 (2016), 248–250 |
11
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| 37. |
I. A. Avilova, A. V. Chernyak, A. V. Zhilenkov, P. A. Troshin, V. I. Volkov, “Self-organization of a water-soluble fullerene derivative studied by pulsed field gradient NMR spectroscopy”, Mendeleev Commun., 26:2 (2016), 146–148 |
7
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| 38. |
A. A. Rezvanova, L. A. Frolova, P. A. Troshin, “Design of optical memory elements based on n-type organic field-effect transistors comprising a light-sensitive spirooxazine layer”, Mendeleev Commun., 26:1 (2016), 26–28 |
11
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2015 |
| 39. |
Yu. N. Biglova, D. K. Susarova, A. F. Akbulatov, A. V. Mumyatov, P. A. Troshin, “Polymerizable methanofullerene bearing a pendant acrylic group as a buffer layer material for inverted organic solar cells”, Mendeleev Commun., 25:6 (2015), 473–475 |
5
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| 40. |
Yu. N. Biglova, D. K. Susarova, A. F. Akbulatov, A. G. Mustafin, P. A. Troshin, M. S. Miftakhov, “Acrylate and methacrylate derivatives of fullerenes as electron-selective buffer layer materials for inverted organic solar cells”, Mendeleev Commun., 25:5 (2015), 348–349 |
6
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| 41. |
I. E. Kuznetsov, D. K. Susarova, L. N. Inasaridze, M. V. Klyuev, P. A. Troshin, “Synthesis of statistical carbazole–fluorene–thiophene–benzothiadiazole copolymers and their investigation in organic solar cells”, Mendeleev Commun., 25:4 (2015), 277–279 |
15
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| 42. |
O. L. Kobzar, V. V. Trush, V. Yu. Tanchuk, I. I. Voronov, A. S. Peregudov, P. A. Troshin, A. I. Vovk, “Polycarboxylic fullerene derivatives as protein tyrosine phosphatase inhibitors”, Mendeleev Commun., 25:3 (2015), 199–201 |
14
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2014 |
| 43. |
A. V. Mumyatov, L. I. Leshanskaya, D. V. Anokhin, N. N. Dremova, P. A. Troshin, “Organic Field-effect Transistors based on Disubstituted Perylene Diimides: Effect of Alkyl Chains on the Device Performance”, Mendeleev Commun., 24:5 (2014), 306–307 |
25
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| 44. |
E. A. Khakina, A. A. Yurkova, A. V. Novikov, N. P. Piven', A. V. Chernyak, A. S. Peregudov, P. A. Troshin, “Radical reaction of C<sub>70</sub>Cl<sub>10</sub> with P(OEt)<sub>3</sub>: isolation and characterization of C<sub>70</sub>[P(O)(OEt)<sub>2</sub>]<sub>n</sub>H<sub>n</sub> (n = 1, 2)”, Mendeleev Commun., 24:4 (2014), 211–213 |
6
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| 45. |
D. K. Susarova, A. S. Peregudov, S. M. Peregudova, P. A. Troshin, “New low-molecular-weight electroluminescent materials for green organic light emitting diodes”, Mendeleev Commun., 24:2 (2014), 88–90 |
6
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| 46. |
D. K. Susarova, D. V. Novikov, P. A. Troshin, “Organic light emitting diodes with a solution processible organic bulk heterojunction electroluminescent layer”, Mendeleev Commun., 24:2 (2014), 85–87 |
6
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2013 |
| 47. |
A. B. Kornev, A. S. Peregudov, V. M. Martynenko, G. V. Guseva, T. E. Sashenkova, A. Yu. Rybkin, I. I. Faingold, D. V. Mishchenko, R. A. Kotelnikova, N. P. Konovalova, J. Balzarini, P. A. Troshin, “Synthesis and biological activity of a novel water-soluble methano[60]fullerene tetracarboxylic derivative”, Mendeleev Commun., 23:6 (2013), 323–325 |
17
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| 48. |
V. A. Kostyanovsky, D. K. Susarova, G. Adam, R. N. Lyubovskaya, P. A. Troshin, “Cyclopentadithiophene–Fluorene Copolymer for Organic Solar Cells and Light Emitting Diodes”, Mendeleev Commun., 23:1 (2013), 26–28 |
17
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2012 |
| 49. |
N. E. Fedorova, R. R. Klimova, Yu. A. Tulenev, E. V. Chichev, A. B. Kornev, P. A. Troshin, A. A. Kushch, “Carboxylic Fullerene C<sub>60</sub> Derivatives: Efficient Microbicides Against Herpes Simplex Virus And Cytomegalovirus Infections In Vitro”, Mendeleev Commun., 22:5 (2012), 254–256 |
44
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2011 |
| 50. |
E. N. Myshkovskaya, S. A. Ponomarenko, P. A. Troshin, D. K. Susarova, N. M. Surin, A. M. Muzafarov, “Synthesis of 2,6-diiodo-4,4-ethylenedioxy-4H-cyclopenta-[2,1-b:3,4-b′]dithiophene and conjugated copolymers on its basis”, Mendeleev Commun., 21:1 (2011), 38–40 |
5
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2010 |
| 51. |
P. A. Troshin, I. P. Romanova, D. K. Susarova, G. G. Yusupova, A. T. Gubaidullin, A. F. Saifina, V. V. Zverev, R. N. Lyubovskaya, V. F. Razumov, O. G. Sinyashin, “The first phosphorus-containing fullerene derivative applied as an electron acceptor material in organic solar cells”, Mendeleev Commun., 20:3 (2010), 137–139 |
11
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2009 |
| 52. |
Б. С. Разбирин, Е. Ф. Шека, А. Н. Старухин, Д. К. Нельсон, М. Ю. Дегунов, П. А. Трошин, Р. Н. Любовская, “Эффект Шпольского в оптических спектрах замороженных растворов органического производного фуллерена C$_{60}$ в толуоле”, Физика твердого тела, 51:6 (2009), 1238–1242 ; B. S. Razbirin, E. F. Sheka, A. N. Starukhin, D. K. Nelson, M. Yu. Degunov, P. A. Troshin, R. N. Lyubovskay, “Shpolski effect in optical spectra of frozen solutions of the organic C$_{60}$ fullerene derivative in toluene”, Phys. Solid State, 51:6 (2009), 1315–1319 |
5
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2008 |
| 53. |
B. S. Razbirin, E. F. Sheka, A. N. Starukhin, D. K. Nelson, P. A. Troshin, R. N. Lyubovskay, “Enhanced Raman scattering provided by fullerene nanoclusters”, Письма в ЖЭТФ, 87:3 (2008), 159–165 ; JETP Letters, 87:3 (2008), 133–139 |
13
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| 54. |
П. А. Трошин, Р. Н. Любовская, “Органическая химия фуллеренов: основные реакции, типы соединений фуллеренов и перспективы их практического использования”, Усп. хим., 77:4 (2008), 323–369 ; P. A. Troshin, R. N. Lyubovskay, “Organic chemistry of fullerenes: the major reactions, types of fullerene derivatives and prospects for their practical use”, Russian Chem. Reviews, 77:4 (2008), 305–349 |
98
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2007 |
| 55. |
J. U. Mayorova, S. L. Nikitenko, P. A. Troshin, S. M. Peregudova, A. S. Peregudov, M. G. Kaplunov, R. N. Lyubovskaya, “Synthesis and investigation of fullerene-based acceptor materials”, Mendeleev Commun., 17:3 (2007), 175–177 |
25
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| 56. |
J. U. Mayorova, P. A. Troshin, A. S. Peregudov, S. M. Peregudova, M. G. Kaplunov, R. N. Lyubovskaya, “Highly soluble perylene dye: tetrabenzyl 3,4,9,10-perylenetetracarboxylate”, Mendeleev Commun., 17:3 (2007), 156–158 |
11
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| 57. |
P. A. Troshin, A. B. Kornev, A. S. Peregudov, S. M. Peregudova, R. N. Lyubovskaya, “Benzylamine imines as versatile precursors to azomethine and nitrile ylides in the [2 + 3] cycloaddition reactions with [60]fullerene”, Mendeleev Commun., 17:2 (2007), 116–118 |
19
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| 58. |
O. A. Troshina, P. A. Troshin, A. S. Peregudov, R. N. Lyubovskaya, “Lead(IV) acetate: an efficient reagent for the synthesis of pyrrolidinofullerenes via oxidative coupling of C<sub>60</sub> with amino acids esters”, Mendeleev Commun., 17:2 (2007), 113–115 |
13
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2006 |
| 59. |
P. A. Troshin, O. A. Troshina, S. M. Peregudova, E. I. Yudanova, A. G. Buyanovskaya, D. V. Konarev, A. S. Peregudov, A. N. Lapshin, R. N. Lyubovskaya, “Chemical and electrochemical reduction of the highly chlorinated fullerenes C<sub>60</sub>Cl<sub>24</sub> and C<sub>60</sub>Cl<sub>30</sub>”, Mendeleev Commun., 16:4 (2006), 206–208 |
16
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| 60. |
A. B. Kornev, P. A. Troshin, A. S. Peregudov, Z. E. Klinkina, N. V. Polyakova, R. N. Lyubovskaya, “Fluorination of [60]fullerene by alkali metal hexafluoroplatinates”, Mendeleev Commun., 16:3 (2006), 157–159 |
9
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| 61. |
P. A. Troshin, V. M. Martynenko, R. N. Lyubovskaya, “Non-chromatographic method for the large-scale isolation of C<sub>60</sub> from a fullerene extract”, Mendeleev Commun., 16:2 (2006), 77–78 |
2
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