Search Results - "Smovzh, D. V."

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  1. 1

    The effect of textured surface on graphene wettability and droplet evaporation by Misyura, S. Y., Andryushchenko, V. A., Morozov, V. S., Smovzh, D. V.

    Published in Journal of materials science (2022)
    “…The influence of a grain orientation and textured surfaces on the droplet evaporation and the graphene coating wettability is investigated. The study of the…”
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  2. 2

    Highly active PdCeOx composite catalysts for low-temperature CO oxidation, prepared by plasma-arc synthesis by Gulyaev, R.V., Slavinskaya, E.M., Novopashin, S.A., Smovzh, D.V., Zaikovskii, A.V., Osadchii, D.Yu, Bulavchenko, O.A., Korenev, S.V., Boronin, A.I.

    Published in Applied catalysis. B, Environmental (05-04-2014)
    “…•The plasma-arc method was applied to synthesize composite palladium–cerium catalysts.•The catalysts demonstrated the high efficiency in CO oxidation at low…”
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  3. 3

    SIMULATION OF WETTABILITY OF NANOTEXTURED SURFACES BY MOLECULAR DYNAMICS by Andryushchenko, V. A., Artishevskii, K. V., Smovzh, D. V.

    “…Wettability of textured surfaces of copper and carbon substrates is under study. It is revealed that the geometric parameters of the textures being created…”
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  4. 4

    Thermoacoustics and Temperature Distribution on the Surface of a Polymer-Graphene Composite by Boyko, E. V., Kostogrud, I. A., Pilnik, A. A., Smovzh, D. V.

    Published in International journal of thermophysics (01-02-2022)
    “…Within the framework of this work, the process of heat distribution in a multilayer composite consisting of a copper substrate, PET/EVA polymer and graphene…”
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  5. 5

    Experimental data and modeling of wettability on graphene-coated copper by Misyura, S.Y., Andryushchenko, V.A., Smovzh, D.V., Morozov, V.S.

    “…•The higher roughness of graphene correlates with higher graphene defectiveness.•Minimum defectiveness of graphene layer corresponds to a thick…”
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  6. 6

    EXPERIMENTAL AND THEORETICAL STUDY OF THE JET FORMED BY MEANS OF SPUTTERING OF ELECTRODES IN AN ARC DISCHARGE by Andryushchenko, V. A., Boiko, E. V., Sakhapov, S. Z., Skirda, M. S., Smovzh, D. V.

    “…The parameters of the plasma generated by an arc discharge in gaseous helium at pressures of 3, 25, and 50 torr are studied experimentally and theoretically…”
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  7. 7

    Evaporation of Water Droplets and Corrosion on Various Graphene Coatings by Misyura, S. Y., Morozov, V. S., Andryushchenko, V. A., Smovzh, D. V., Orlova, E. G., Feoktistov, D. V., Bondarchuk, S. P., Kotelnikov, G. E., Makotchenko, V. G.

    Published in Journal of engineering thermophysics (01-06-2024)
    “…The wettability, evaporation droplets, and corrosion were experimentally studied for textured copper samples with graphene and smooth copper samples with…”
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  8. 8

    Water motion near graphene and its electric conductivity by Sorokin, D. V., Shatilov, D. A., Andryushchenko, V. A., Makarov, M. S., Naumkin, V. S., Smovzh, D. V.

    Published in Thermophysics and aeromechanics (01-11-2022)
    “…The paper is the study of electric resistance of a graphene layer washed by a liquid with different flow rate parameters. Experiments demonstrate that if the…”
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  9. 9

    Optical properties of CVD single crystal diamonds before and after different post-growth treatments by Vins, V.G., Yelisseyev, A.P., Smovzh, D.V., Novopashin, S.A.

    Published in Diamond and related materials (01-06-2018)
    “…Single crystal diamonds grown by chemical vapor deposition (CVD) before and after different post-growth treatments were studied using optical spectroscopy. The…”
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  10. 10

    Graphene wettability control: Texturing of the substrate and removal of airborne contaminants in the atmosphere of various gases by Misyura, S.Y., Andryushchenko, V.A., Smovzh, D.V., Morozov, V.S.

    Published in Journal of molecular liquids (01-03-2022)
    “…•The effect of relaxation, oxidation and airborne contaminants on graphene wettability was studied.•The graphene wettability simulation was realized by the…”
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  11. 11

    Wetting properties of graphene and multilayer graphene deposited on copper: The influence of copper topography by Misyura, S.Y., Morozov, V.S., Smovzh, D.V., Makotchenko, V.G., Feoktistov, D.V., Orlova, E.G., Islamova, A.G., Khomyakov, M.N., Solnyshkina, O.A.

    Published in Thin solid films (01-08-2022)
    “…•The long thermal annealing results in the crystal grain orientation (1 1 1).•The annealing and grain orientation (111) improve the quality of graphene…”
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  12. 12

    Thermal conductivity of nanofluids based on hollow γ-Al2O3 nanoparticles, and the influence of interfacial thermal resistance by Serebryakova, M.A., Zaikovskii, A.V., Sakhapov, S.Z., Smovzh, D.V., Sukhinin, G.I., Novopashin, S.A.

    “…•Nanofluids based on hollow nanoparticles were studied.•Measurements showed that thermal conductivity is below the Maxwell’s prediction.•The interfacial…”
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  13. 13

    Morphology of aluminium oxide nanostructures after calcination of arc discharge Al–C soot by Smovzh, Dmitry V., Sakhapov, Salavat Z., Zaikovskii, Alexey V., Novopashin, Sergey A.

    Published in Ceramics international (01-08-2015)
    “…The morphology of nanostructures that were formed during the calcination of aluminium–carbon composite and synthesized by the method of electric arc spraying…”
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  14. 14

    SYNTHESIS OF GRAPHENE BY CHEMICAL VAPOR DEPOSITION AND ITS TRANSFER TO POLYMER by Smovzh, D. V., Kostogrud, I. A., Boyko, E. V., Matochkin, P. E., Bezrukov, I. A., Krivenko, A. S.

    “…The formation of single-layer and multilayer graphene by chemical vapor deposition has been studied experimentally. The structures of coatings formed at…”
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  15. 15

    Highly active PdCeO sub(x) composite catalysts for low-temperature CO oxidation, prepared by plasma-arc synthesis by Gulyaev, R V, Slavinskaya, E M, Novopashin, S A, Smovzh, D V, Zaikovskii, A V, Osadchii, D Yu, Bulavchenko, O A, Korenev, S V, Boronin, A I

    Published in Applied catalysis. B, Environmental (05-04-2014)
    “…The plasma-arc method was adapted for the synthesis of composite palladium-ceria catalysts, which were utilized for the low-temperature oxidation of carbon…”
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  16. 16

    Synthesis of nanocrystalline carbon upon methane pyrolysis in arc discharge by Zaikovskii, A. V., Mal’tsev, V. A., Novopashin, S. A., Sakhapov, S. Z., Smovzh, D. V.

    Published in Nanotechnologies in Russia (01-11-2012)
    “…We have studied a carbon material synthesized upon methane pyrolysis in the AC arc discharge using graphite electrodes. Methane was heated by passing through…”
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  17. 17

    Size distribution function for iron clusters formed during the synthesis of carbon nanotubes by Fe(CO)5 decomposition by Nerushev, O. A., Novopashin, S. A., Smovzh, D. V.

    Published in Technical physics letters (01-03-2009)
    “…We have experimentally studied the size distribution function of iron clusters formed during the decomposition of iron pentacarbonyl (Fe(CO) 5 ) in a mixture…”
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  18. 18

    Synthesis of carbon nanofibers on an austenitic stainless steel by Nerushev, O. A., Novopashin, S. A., Smovzh, D. V.

    Published in Nanotechnologies in Russia (01-08-2008)
    “…The surface of the austenitic stainless steel 12Kh18N10T is found to be an effective catalyst for thermal synthesis of carbon nanofibers from acetylene. The…”
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  19. 19

    Investigation of products of thermal methane conversion in hydrocarbon mixtures by mass spectrometry by Smovzh, D. V., Nerushev, O. A., Koverznev, M. P., Belikov, A. E., Novopashin, S. A., Sakhapov, S. Z., Zamchii, A. O., Zaikovskii, A. V.

    Published in Journal of engineering thermophysics (01-06-2012)
    “…The influence of ethylene/acetylene admixture on catalytic methane pyrolysis is investigated. Mass spectrometric analysis of the products of reactions in…”
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  20. 20

    Methane conversion into hydrogen and carbon nanostructures by Belikov, A. E., Mal’tsev, V. A., Nerushev, O. A., Novopashin, S. A., Sakhapov, S. Z., Smovzh, D. V.

    Published in Journal of engineering thermophysics (01-03-2010)
    “…Methane pyrolysis in an ac electric arc is implemented: CH4 - C+2H2. The synthesized nanostructure carbon material is analyzed using a transmission electron…”
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