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Yarmolenko, Maksim Anatol'evich

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Total publications: 28
Scientific articles: 28

Number of views:
This page:238
Abstract pages:2976
Full texts:2029
References:603
Associate professor
Doctor of technical sciences (2019)
Speciality: 01.04.07 (Physics of condensed states)

https://www.mathnet.ru/eng/person79029
List of publications on Google Scholar
List of publications on ZentralBlatt

Publications in Math-Net.Ru Citations
2024
1. M. A. Yarmolenko, A. V. Rogachev, Jiang Xiao Hong, S. A. Frolov, “Kinetic regularities of deposition and molecular structure of polyoxymethylene coatings formed from the active gas phase”, PFMT, 2024, no. 2(59),  57–63  mathnet
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  mathnet
2023
3. 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  mathnet
4. 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  mathnet
2022
5. 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  mathnet 1
6. A. S. Rudenkov, M. A. Yarmolenko, “Morphology and structure of nanocomposite polymer coatings containing lead formate”, PFMT, 2022, no. 4(53),  46–52  mathnet
7. 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  mathnet 1
8. M. A. Yarmolenko, A. A. Rogachev, Yiming Liu, A. V. Rogachev, Lihong Gao, Zhuang Ma, “Features of polymer materials degradation under influence of short-wave laser radiation”, PFMT, 2022, no. 1(50),  49–54  mathnet
9. M. A. Yarmolenko, “Kinetic features of deposition and chemical composition of coatings, formed from volatile products of laser dispersion of polytetrafluoroethylene”, PFMT, 2022, no. 1(50),  44–48  mathnet
10. A. A. Rogachev, A. M. Mikhalko, M. A. Yarmolenko, Jin Xuhui, Hongliang Zhang, Hongtao Cao, A. V. Rogachev, “Features of electron-beam synthesis and electrophysical properties of hybrid coatings based on polyaniline and zinc oxide”, PFMT, 2022, no. 1(50),  37–43  mathnet
2021
11. 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  mathnet
12. A. A. Rogachev, Yiming Liu, M. A. Yarmolenko, Lihong Gao, Zhuang Ma, “Radiation resistance of metal-alloyed organosilicon coatings deposited from the gas phase”, PFMT, 2021, no. 2(47),  45–50  mathnet
13. V. V. Malyutina-Bronskaya, A. V. Semchenko, A. V. Rogachev, M. A. Yarmolenko, V. V. Sidskiy, K. D. Danilchenko, S. A. Soroka, E. V. Rusu, “Photoactive properties of ZnO$_{\text{x}}$ : MgO nanocomposite coatings deposited in vacuum and by sol-gel method”, PFMT, 2021, no. 2(47),  39–44  mathnet 1
14. M. A. Yarmolenko, O. A. Sarkisov, Liu Yiming, A. V. Rogachev, “The effect of plasma treatment of coatings based on organosilicon polymers deposited by electron beam dispersion on their structure and morphology”, PFMT, 2021, no. 1(46),  38–43  mathnet
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  mathnet 1
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  mathnet
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  mathnet
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  mathnet
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  mathnet
2019
20. 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  mathnet
21. 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  mathnet 1
22. A. S. Rudenkov, M. A. Yarmolenko, “Carbon nanotubes: classification, features of synthesis, research methods and applications”, PFMT, 2019, no. 2(39),  7–14  mathnet
2016
23. M. A. Yarmolenko, A. A. Rogachev, A. V. Rogachev, “The impact of technological processes on the properties of polymer-based coatings deposited from active gas phase (Review). 2. Influence of conditions and parameters of the processes proceeding on the deposited surface”, PFMT, 2016, no. 4(29),  35–40  mathnet
24. M. A. Yarmolenko, A. A. Rogachev, A. V. Rogachev, “Influence of technological processes of forming on the properties of coatings based on polymers deposited from active gas phase (review). 1. Effect of conditions and modes of gas phase generation”, PFMT, 2016, no. 2(27),  29–38  mathnet 2
2013
25. Zhubo Liu, A. A. Rogachev, M. A. Yarmolenko, X. H. Jiang, A. V. Rogachev, D. L. Gorbachev, “Influence of assisting laser radiation at electron-beam dispersion on the molecular structure of polyethylene-silver nanocomposite coatings”, PFMT, 2013, no. 1(14),  37–42  mathnet 1
2011
26. M. A. Yarmolenko, A. A. Rogachev, A. V. Rogachev, D. L. Gorbochev, “Kinetic characteristics of dispersion of organosilicon compounds in vacuum and molecular structure of the coatings, deposited from volatile products of dispersion”, PFMT, 2011, no. 3(8),  32–38  mathnet
2010
27. M. A. Yarmolenko, A. A. Rogachev, A. V. Rogachev, D. L. Gorbochev, “Molecular structure and morphology of the polyethylene coatings alloyed when forming from gas phase by low-molecular compound”, PFMT, 2010, no. 2(3),  10–20  mathnet 1
2009
28. A. A. Rogachev, M. A. Yarmolenko, A. V. Rogachev, “Molecular architecture of nanocomposite polytetrafluoroethylene and metal based coatings formed from active gas phase”, PFMT, 2009, no. 1(1),  21–26  mathnet

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