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Publications in Math-Net.Ru |
Citations |
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2024 |
1. |
A. S. Rudenkov, D. G. Piliptsov, “Influence of heat treatment on the structure and mechanical properties of carbon coatings doped with zirconium and silicon”, PFMT, 2024, no. 2(59), 48–56 |
2. |
M. A. Yarmolenko, Jiang Xiao Homg, A. A. Rogachev, A. V. Rogachev, A. S. Rudenkov, O. A. Yarmolenko, S. A. Frolov, “Molecular structure and anti-fungicidal properties of coatings based on clotrimazole and polymers formed from the active gas phase”, PFMT, 2024, no. 1(58), 50–56 |
3. |
D. G. Piliptsou, A. S. Rudenkov, A. V. Rogachev, Zhou Bin, E. A. Kulesh, N. N. Fedosenko, “Structure and mechanical properties of a-C coatings deposited from pulse carbon plasma on a ni heated sublayer”, PFMT, 2024, no. 1(58), 36–43 |
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2023 |
4. |
M. A. Yarmolenko, Jiang Xiao Homg, A. A. Rogachev, A. V. Rogachev, A. S. Rudenkov, S. A. Frolov, A. M. Mikchalko, “Synthesis and sorption properties of coatings based on hydroxyethyl cellulose intercalated from the gas phase with antibacterial compounds”, PFMT, 2023, no. 4(57), 53–59 |
5. |
A. S. Rudenkov, D. G. Piliptsou, A. N. Kupo, S. A. Frolov, “Structure and mechanical properties of carbon coatings doped with zirconium and silicon”, PFMT, 2023, no. 4(57), 42–47 |
6. |
A. S. Rudenkov, M. A. Yarmolenko, S. A. Frolov, “Effect of heat treatment on the morphology and structure of nanocomposite coatings based on starch and copper acetate”, PFMT, 2023, no. 1(54), 54–59 |
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2022 |
7. |
M. A. Yarmolenko, A. V. Rogachev, A. S. Rudenkov, V. A. Emelyanov, S. A. Frolov, A. M. Mikhalko, “Influence of laser assistance on the processes of volatile products dispersion generation of composite targets based on polyethylene and their reactivity”, PFMT, 2022, no. 4(53), 64–72 |
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8. |
A. S. Rudenkov, M. A. Yarmolenko, “Morphology and structure of nanocomposite polymer coatings containing lead formate”, PFMT, 2022, no. 4(53), 46–52 |
9. |
M. A. Yarmolenko, A. V. Rogachev, A. S. Rudenkov, A. M. Mikhalko, “Features of the kinetics of polymers electron-beam dispersion under laser assisted conditions”, PFMT, 2022, no. 3(52), 61–66 |
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10. |
A. S. Rudenkov, A. V. Rogachev, S. M. Zavadski, A. N. Kupo, “Structure and mechanical properties of silicon-carbon coatings alloyed with chromium”, PFMT, 2022, no. 2(51), 52–57 |
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2021 |
11. |
A. S. Rudenkov, “Morphology and phase composition of nanostructured carbon coatings, formed on the sublayer based on polytetrafluoroethylene and lead formate”, PFMT, 2021, no. 4(49), 38–44 |
12. |
A. S. Rudenkov, A. V. Rogachev, D. G. Piliptsou, “Morphology and phase composition of silicon-doped titanium carbon coatings”, PFMT, 2021, no. 3(48), 37–41 |
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13. |
A. S. Rudenkov, D. G. Piliptsou, M. A. Yarmolenko, A. S. Pobiyaha, “Influence of formation modes on morphology and phase composition of carbon coatings reinforced with multilayer carbon nanotubes”, PFMT, 2021, no. 2(47), 51–56 |
14. |
E. A. Kulesh, A. V. Rogachev, D. G. Piliptsou, Xiaohong Jiang, A. S. Rudenkov, “Structure and properties of a-C films containing metals and products of their interaction with nitrogen, carbon”, PFMT, 2021, no. 1(46), 24–30 |
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2020 |
15. |
M. A. Yarmolenko, A. S. Rudenkov, A. V. Rogachev, E. Rusu, A. V. Semchenko, V. V. Sidsky, “Electron beam synthesis, structure and properties of single-component and magnesium doped zinc oxide coatings”, PFMT, 2020, no. 4(45), 81–87 |
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16. |
A. S. Rudenkov, M. A. Yarmolenko, A. N. Kupo, “Influence of ion-plasma nitrogen on the structure of composite coatings based on cellulose and carbon nanotubes”, PFMT, 2020, no. 4(45), 62–67 |
17. |
A. V. Rogachev, V. A. Emelyanov, Liu Yiming, M. A. Yarmolenko, A. S. Rudenkov, “Features of the formation of coatings of metal oxides from the active gas phase under conditions of electron-initiated endothermic processes”, PFMT, 2020, no. 3(44), 50–54 |
18. |
Liu Yiming, Jicheng Wang, A. V. Rogachev, O. A. Sarkisov, M. A. Yarmolenko, A. S. Rudenkov, “Formation of composite coatings by electron beam dispersion of a mixture of iron, aluminum and PTFE in the conditions of exothermal interaction”, PFMT, 2020, no. 3(44), 30–34 |
19. |
A. S. Rudenkov, M. A. Yarmolenko, “Formation of structured coatings based on carbon and polyacrylamide, influence of thermal treatment on their phase composition and morphology”, PFMT, 2020, no. 2(43), 23–27 |
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2019 |
20. |
B. Zhou, D. G. Piliptsov, X. Jiang, E. A. Kulesh, A. S. Rudenkov, “Boron-carbon coatings: methods of deposition, structure features and mechanical properties”, PFMT, 2019, no. 3(40), 7–12 |
21. |
Liu Yiming, A. V. Rogachev, M. A. Yarmolenko, A. A. Rogachev, Jiang Xiaohong, A. S. Rudenkov, “Bioactive multilayer coatings that initiate bone growth: structure and properties”, PFMT, 2019, no. 2(39), 28–35 |
22. |
Liu Yiming, A. V. Rogachev, M. A. Yarmolenko, A. A. Rogachev, Jiang Xiaohong, A. S. Rudenkov, “Molecular structure of single-layer and bi-layer coatings, which are perspective when used in osteosynthesis processes”, PFMT, 2019, no. 2(39), 21–27 |
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23. |
A. S. Rudenkov, M. A. Yarmolenko, “Carbon nanotubes: classification, features of synthesis, research methods and applications”, PFMT, 2019, no. 2(39), 7–14 |
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2018 |
24. |
D. G. Piliptsov, A. A. Rogachev, S. A. Chizhik, A. S. Rudenkov, E. A. Kulesh, A. A. Fedosenko, “Phase composition and structure of multilayer nanosized metal-carbon coatings”, PFMT, 2018, no. 2(35), 34–37 |
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2017 |
25. |
D. G. Piliptsov, A. V. Rogachev, A. S. Rudenkov, Xiaohong Jiang, N. N. Fedosenko, “Mechanical properties of carbon coatings, doped by carbide-forming metals”, PFMT, 2017, no. 4(33), 25–29 |
26. |
N. N. Fedosenko, A. V. Rogachev, V. E. Agabekov, D. G. Piliptsou, A. S. Rudenkov, “Influence of molecular nitrogen on optical properties of coatings based on refractory oxides”, PFMT, 2017, no. 3(32), 32–35 |
27. |
A. S. Rudenkov, A. V. Rogachev, D. G. Piliptsov, Xiaohong Jiang, N. N. Fedosenko, “Influence of carbide-forming metals nature on the phase composition and structure of alloyed carbon coatings”, PFMT, 2017, no. 2(31), 24–30 |
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2016 |
28. |
A. S. Rudenkov, A. V. Rogachev, D. G. Piliptsov, N. N. Fedosenko, Xiaohong Jiang, “Influence of ion nitriding on the phase composition, structure and properties of carbon coatings”, PFMT, 2016, no. 1(26), 37–41 |
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2015 |
29. |
A. S. Rudenkov, “Influence of metal concentration on the phase composition, structure and properties of carbon-metal coating”, PFMT, 2015, no. 3(24), 26–32 |
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2014 |
30. |
Zhou Bing, A. V. Rogachev, D. G. Piliptsou, A. S. Rudenkov, N. N. Fedosenko, Jiang Xiaohong, Ye Bing, “Size effect in the bilayer coatings of titanium-carbon. 2. The dependence of structure and properties on the thickness of carbon layer”, PFMT, 2014, no. 1(18), 16–20 |
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2013 |
31. |
Zhou Bing, A. V. Rogachev, Jiang Xiaohong, D. G. Piliptsou, N. N. Fedosenko, A. S. Rudenkov, “Size effect in the bilayer coatings of titanium-carbon. 1. The influence of thickness of titanium interlayer on the structure and properties of carbon layer”, PFMT, 2013, no. 4(17), 38–42 |
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32. |
A. V. Rogachev, N. N. Fedosenko, N. G. Ariko, D. L. Gorbachev, A. S. Rudenkov, “Morphology and optical properties of multilayer refractory oxide coatings”, PFMT, 2013, no. 4(17), 21–27 |
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2012 |
33. |
D. G. Piliptsov, A. V. Rogachev, N. N. Fedosenko, A. S. Rudenkov, “Morphology and mechanical properties of carbon coatings obtained from plazma of combined pulse cathode-arc discharge”, PFMT, 2012, no. 3(12), 33–36 |
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2010 |
34. |
D. G. Piliptsov, A. S. Rudenkov, R. V. Bekarevich, “The morphology of the carbon based composition coatings processed by nitrogen ions”, PFMT, 2010, no. 3(4), 31–34 |
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