Search Results - "Martyanov, A.K."

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  1. 1

    Growth of homoepitaxial single crystal diamond by microwave plasma CVD in H2-CH4-O2 gas mixtures at high microwave power densities by Bolshakov, A.P., Yurov, V.Yu, Fedorova, I.A., Martyanov, A.K., Fedotov, P.V., Popovich, A.F., Ralchenko, V.G., Dai, B.

    Published in Diamond and related materials (01-12-2024)
    “…Single crystal diamond growth by microwave plasma assisted CVD in oxygen-containing gas mixtures is attractive in view of possibility to realize a prolonged…”
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    Journal Article
  2. 2

    Cerium-doped gadolinium-scandium-aluminum garnet powders: synthesis and use in X-ray luminescent diamond composites by Kuznetsov, S.V., Sedov, V.S., Martyanov, A.K., Batygov, S. Ch, Vakalov, D.S., Boldyrev, K.N., Tiazhelov, I.A., Popovich, A.F., Pasternak, D.G., Bland, H., Mandal, S., Williams, O., Nikova, M.S., Tarala, V.A.

    Published in Ceramics international (01-05-2022)
    “…Powders of single-phase solid solutions based on cerium-doped gadolinium-scandium-aluminum garnet were synthesized by coprecipitation from aqueous solutions…”
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    Journal Article
  3. 3

    X-ray luminescence of diamond composite films containing yttrium-aluminum garnet nanoparticles with varied composition of Sc–Ce doping by Kuznetsov, S.V., Sedov, V.S., Martyanov, A.K., Batygov, S.Ch, Vakalov, D.S., Savin, S.S., Tarala, V.A.

    Published in Ceramics international (15-05-2021)
    “…X-ray luminescent diamond composite films with embedded yttrium-aluminum nanoparticles were designed. Additionally, the stability limits of single-phase solid…”
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  4. 4

    Diamond-EuF3 nanocomposites with bright orange photoluminescence by Sedov, V.S., Kuznetsov, S.V., Ralchenko, V.G., Mayakova, M.N., Krivobok, V.S., Savin, S.S., Zhuravlev, K.P., Martyanov, A.K., Romanishkin, I.D., Khomich, A.A., Fedorov, P.P., Konov, V.I.

    Published in Diamond and related materials (01-02-2017)
    “…We report the manufacturing of a novel diamond – rare-earth (RE) composite material with EuF3 nanoparticles (NP) embedded in the synthesized microcrystalline…”
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  5. 5

    Deposition of diamond films on Si by microwave plasma CVD in varied CH4-H2 mixtures: Reverse nanocrystalline-to-microcrystalline structure transition at very high methane concentrations by Sedov, V.S., Martyanov, A.K., Khomich, A.A., Savin, S.S., Zavedeev, E.V., Ralchenko, V.G.

    Published in Diamond and related materials (01-11-2020)
    “…Microcrystalline diamond (MCD) and nanocrystalline diamond (NCD) films were synthesized on Si substrates by a microwave plasma chemical vapor deposition in…”
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  6. 6

    Co-deposition of diamond and β-SiC by microwave plasma CVD in H2-CH4-SiH4 gas mixtures by Sedov, V.S., Martyanov, A.K., Khomich, A.A., Savin, S.S., Voronov, V.V., Khmelnitskiy, R.A., Bolshakov, A.P., Ralchenko, V.G.

    Published in Diamond and related materials (01-10-2019)
    “…The co-deposition of diamond and silicon carbide (SiC) was realized in a microwave plasma using H2-CH4-SiH4 mixtures at enhanced microwave power density of up…”
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  7. 7
  8. 8

    Optical diagnostics of microwave plasma in process of micro/nanocrystalline diamond deposition on hard alloy tools by Yurov, V.Y., Ashkinazi, E.E., Zavedeev, E.V., Martyanov, A.K., Antonova, I.A., Ralchenko, V.G.

    Published in Materials today : proceedings (01-01-2021)
    “…Diamond coatings on hard alloy tools produced by chemical vapor deposition (CVD) from methane-hydrogen mixtures greatly enhance the functional properties such…”
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  9. 9
  10. 10

    Temperature stabilization of WC-Co cutting inserts with feedback to IR pyrometer upon growth of multilayer diamond coatings by microwave plasma chemical vapor deposition by Ashkinazi, E.E., Ryzhkov, S.G., Martyanov, A.K., Bolshakov, A.P., Sergeichev, K.F., Shevchenko, M.Y., Khomich, A.A., Sovyk, D.N., Ralchenko, V.G.

    Published in Materials today : proceedings (01-01-2021)
    “…We produced microcrystalline diamond coatings with nanocrystalline top diamond layer on WC-Co cutting inserts in a microwave plasma (2.45 GHz) chemical vapor…”
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    Journal Article
  11. 11

    Color centers in silicon-doped diamond films by Sedov, V.S, Krivobok, V.S, Khomich, A.V, Ralchenko, V.G, Khomich, A.A, Martyanov, A.K, Nikolaev, S.N, Poklonskaya, O.N, Konov, V.I

    Published in Journal of applied spectroscopy (01-05-2016)
    “…Silicon-doped microcrystalline diamond films of 1 µm thickness were grown by chemical vapor deposition in microwave plasma from mixtures of…”
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    Journal Article