2016-Sustainable Industrial Processing Summit
SIPS 2016 Volume 9: Molten Salts and Ionic Liquids, Energy Production

Editors:Kongoli F, Gaune-Escard M, Turna T, Mauntz M, Dodds H.L.
Publisher:Flogen Star OUTREACH
Publication Year:2016
Pages:390 pages
ISBN:978-1-987820-24-9
ISSN:2291-1227 (Metals and Materials Processing in a Clean Environment Series)
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    Synthesis Of Tungsten Silicide From Halogenide Oxide Ionic Melts

    Marina Adamokova1; Hasbi Kushkhov1; Ruzana Mamhegova1;
    1KABARDINO-BALKARIAN STATE UNIVERSITY, Nalchik, Russian Federation;
    Type of Paper: Regular
    Id Paper: 223
    Topic: 13

    Abstract:

    In the present work results of electrochemical synthesis of tungsten silicide in halide-oxide melts are given. Optimum conditions of carrying out electrosynthesis of WSi2 are found: structure of melts, electrolysis regime and electrolysis temperature. The principal possibility of synthesis of tungsten silicide by electrolysis halide oxide melts was found.

    Keywords:

    Carbon; Compounds; Nanomaterials; Refractory; Tungsten;

    References:

    [1] Adamokova M.N. Kuchmezova F.Y. Joint electroreduction of tungsten ions and silicon in ionic melts // Proceedings of the Kabardino-Balkarian state University.-2012-№ 5.- c. 5-8.
    [2] Kushkhov H.B., Adamokova M.N. Electrodeposition of metal tungsten, molybdenum and their carbides from halide-oxide low-temperature melts // Russian Journal of Electrochemistry, 2007, Vol. 43, No. 9, pp. 1049-1059.
    [3] Kushkhov H.B., Adamokova M.N., Kvashin V.A. Study of the influence of fluoride, fluorosilicon-, fluoroborate - and metaphosphate - ions on the electroreduction of fluoride complexes of tungsten chloride in the melt KCl-NaCl-CsCl // Melts, 2006, № 5, p. 60-69.

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    Cite this article as:

    Adamokova M, Kushkhov H, Mamhegova R. Synthesis Of Tungsten Silicide From Halogenide Oxide Ionic Melts. In: Kongoli F, Gaune-Escard M, Turna T, Mauntz M, Dodds H.L., editors. Sustainable Industrial Processing Summit SIPS 2016 Volume 9: Molten Salts and Ionic Liquids, Energy Production. Volume 9. Montreal(Canada): FLOGEN Star Outreach. 2016. p. 161-166.