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Publications in Math-Net.Ru |
Citations |
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2021 |
1. |
E. A. Kozlova, M. N. Lyulyukin, D. V. Kozlov, V. N. Parmon, “Semiconductor photocatalysts and mechanisms of carbon dioxide reduction and nitrogen fixation under UV and visible light”, Usp. Khim., 90:12 (2021), 1520–1543 ; Russian Chem. Reviews, 90:12 (2021), 1520–1543 |
8
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2019 |
2. |
L. V. Ksanfomality, L. M. Zelenyi, V. N. Parmon, V. N. Snytnikov, “Hypothetical signs of life on Venus: revising results of 1975–1982 TV experiments”, UFN, 189:4 (2019), 403–432 ; Phys. Usp., 62:4 (2019), 378–404 |
4
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2017 |
3. |
E. A. Kozlova, V. N. Parmon, “Heterogeneous semiconductor photocatalysts for hydrogen production from aqueous solutions of electron donors”, Usp. Khim., 86:9 (2017), 870–906 ; Russian Chem. Reviews, 86:9 (2017), 870–906 |
100
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4. |
K. A. Dubkov, G. I. Panov, V. N. Parmon, “Nitrous oxide as a selective oxidant for ketonization of $\mathrm{C}=\mathrm{C}$ double bonds in organic compounds”, Usp. Khim., 86:6 (2017), 510–529 ; Russian Chem. Reviews, 86:6 (2017), 510–529 |
25
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2016 |
5. |
V. N. Sidelnikov, O. A. Nikolaeva, I. A. Platonov, V. N. Parmon, “Gas chromatography of the future: columns whose time has come”, Usp. Khim., 85:10 (2016), 1033–1055 ; Russian Chem. Reviews, 85:10 (2016), 1033–1055 |
10
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6. |
L. L. Makarshin, Z. P. Pai, V. N. Parmon, “Microchannel systems for fine organic synthesis”, Usp. Khim., 85:2 (2016), 139–155 ; Russian Chem. Reviews, 85:2 (2016), 139–155 |
22
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2015 |
7. |
V. N. Parmon, A. D. Simonov, V. A. Sadykov, S. F. Tikhov, “Catalytic combustion: Achievements and problems”, Fizika Goreniya i Vzryva, 51:2 (2015), 5–13 ; Combustion, Explosion and Shock Waves, 51:2 (2015), 143–150 |
33
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8. |
A. G. Okunev, E. V. Parkhomchuk, A. I. Lysikov, P. D. Parunin, V. S. Semeikina, V. N. Parmon, “Catalytic hydroprocessing of heavy oil feedstocks”, Usp. Khim., 84:9 (2015), 981–999 ; Russian Chem. Reviews, 84:9 (2015), 981–999 |
51
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2010 |
9. |
N. A. Baronskaya, T. P. Minyukova, A. A. Khassin, T. M. Yurieva, V. N. Parmon, “Enhancement of water–gas shift reaction efficiency: catalysts and the catalyst bed arrangement”, Usp. Khim., 79:11 (2010), 1112–1133 ; Russian Chem. Reviews, 79:11 (2010), 1027–1046 |
16
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2009 |
10. |
S. M. Khusainov, L. Yu. Ilyina, Anton O. Kuzmin, Andrey O. Kuzmin, V. N. Parmon, “Specialized factographic XML-oriented information system for literary data storage and search”, Kazan. Gos. Univ. Uchen. Zap. Ser. Fiz.-Mat. Nauki, 151:3 (2009), 240–253 |
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2007 |
11. |
V. N. Snytnikov, Vl. N. Snytnikov, D. A. Dubov, V. I. Zaikovskii, A. S. Ivanova, V. O. Stoyanovskii, V. N. Parmon, “Production of nanomaterials by vaporizing ceramic targets irradiated by a moderate-power continuous-wave CO$_2$ laser”, Prikl. Mekh. Tekh. Fiz., 48:2 (2007), 172–184 ; J. Appl. Mech. Tech. Phys., 48:2 (2007), 292–302 |
13
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2004 |
12. |
I. A. Bedarev, V. N. Parmon, A. V. Fedorov, N. N. Fedorova, V. M. Fomin, “Numerical study of methane pyrolysis in shock waves”, Fizika Goreniya i Vzryva, 40:5 (2004), 91–101 ; Combustion, Explosion and Shock Waves, 40:5 (2004), 580–590 |
4
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2000 |
13. |
L. L. Makarshin, D. V. Andreev, V. N. Parmon, “The chemical and adsorption effects of foreign molecules on the properties of high-temperature superconductors”, Usp. Khim., 69:4 (2000), 307–336 ; Russian Chem. Reviews, 69:4 (2000), 279–305 |
8
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1992 |
14. |
O. V. Gerasimov, V. N. Parmon, “Photocatalysis by transition metal complexes”, Usp. Khim., 61:2 (1992), 293–319 ; Russian Chem. Reviews, 61:2 (1992), 154–167 |
13
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1989 |
15. |
V. D. Sokolovskii, T. M. Yurieva, Yu. Sh. Matros, K. G. Ione, V. A. Likholobov, V. N. Parmon, K. I. Zamaraev, “Catalytic chemistry and technology of C<sub>1</sub> compounds”, Usp. Khim., 58:1 (1989), 5–37 ; Russian Chem. Reviews, 58:1 (1989), 2–21 |
6
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1983 |
16. |
K. I. Zamaraev, V. N. Parmon, “Molecular Photocatalytic Systems for Solar Energy Conversion: Catalysts for the Evolution of Hydrogen and Oxygen from Water”, Usp. Khim., 52:9 (1983), 1433–1467 ; Russian Chem. Reviews, 52:9 (1983), 817–836 |
24
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1980 |
17. |
K. I. Zamaraev, V. N. Parmon, “Possible Approaches to the Development of Photo-catalytic Solar Energy Converters”, Usp. Khim., 49:8 (1980), 1457–1497 ; Russian Chem. Reviews, 49:8 (1980), 695–717 |
21
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1977 |
18. |
V. A. Volkov, V. N. Parmon, B. K. Tkachenko, “Process of opening of an inelastic diaphragm in a shock tube”, Prikl. Mekh. Tekh. Fiz., 18:4 (1977), 92–95 ; J. Appl. Mech. Tech. Phys., 18:4 (1977), 506–509 |
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2021 |
19. |
A. M. Sergeev, Yu. Yu. Balega, I. A. Shcherbakov, E. B. Aleksandrov, V. M. Andreev, A. L. Aseev, A. M. Bykov, I. V. Grekhov, V. V. Gusarov, A. V. Dvurechenskii, A. V. Ivanchik, E. L. Ivchenko, N. N. Kazansky, A. A. Kaplyanskii, V. V. Kveder, N. N. Kolachevsky, S. G. Konnikov, P. S. Kop'ev, Z. F. Krasil'nik, A. G. Litvak, S. V. Medvedev, Yu. V. Natochin, V. N. Parmon, E. E. Son, R. A. Suris, V. B. Timofeev, V. V. Ustinov, V. M. Ustinov, S. V. Ivanov, A. N. Aleshin, M. V. Arkhipov, P. N. Brunkov, A. I. Veinger, A. K. Vershovskii, E. A. Volkova, S. A. Gurevich, V. K. Gusev, V. A. Dergachev, A. G. Deryagin, O. V. Dudnik, V. V. Zhdanov, N. L. Istomina, A. M. Kalashnikova, E. S. Kornilova, E. V. Kustova, A.A. Lebedev, E.V. Lipatova, A. V. Nashchekin, R. V. Parfen'ev, M. P. Petrov, G. V. Skornyakov, E. M. Smirnov, G. S. Sokolovskii, A. V. Solomonov, M. G. Sushkova, E. I. Terukov, E. A. Chaban, O. L. Chagunava, A. P. Shergin, E. V. Shestopalova, M. L. Shmatov, A. A. Shmidt, V. L. Shubin, “Андрей Георгиевич Забродский, к 75-летию со дня рождения”, Zhurnal Tekhnicheskoi Fiziki, 91:6 (2021), 893–894 |
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2011 |
20. |
A. L. Aseev, V. V. Vlasov, A. P. Derevyanko, V. V. Kuleshov, V. P. Mel'nikov, V. I. Molodin, V. N. Parmon, R. Z. Sagdeev, A. N. Skrinsky, V. M. Fomin, V. F. Shabanov, Yu. I. Shokin, “In memory of Kirill Sergeevich Aleksandrov”, UFN, 181:3 (2011), 337–338 ; Phys. Usp., 54:3 (2011), 321–322 |
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2007 |
21. |
V. N. Parmon, “Chemical research at the Siberian Branch of the Russian Academy of Sciences”, Usp. Khim., 76:6 (2007), 531–534 ; Russian Chem. Reviews, 76:6 (2007), 489–491 |
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