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Общее количество найденных документов : 37
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| Basic molten salt process—A new route for synthesis of nanocrystalline Li4Ti5O12–TiO2 anode material for Li-ion batteries using eutectic mixture of LiNO3–LiOH–Li2O2 /M. M. Rahman [и др.] // Journal of Power Sources, 2010. т.Vol. 195,N № 13.-С.4297-4303.
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| Cost-effective Synthesis of -LiAlO2 Powders for Molten Carbonate Fuel Cell Matrices /H.-J. Choi [и др.] // Fuel Cells, 2009. т.№ 5.-С.605-612
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| Electrochemical synthesis of Ni–Sn alloys in molten LiCl–KCl /H. El Ghallali [и др.] // Electrochimica Acta , 2009. т.Vol. 54,N № 11.-С.3152-3160
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| Tang H.Y. Electrochemical Synthesis of Superconducting EuBa2Cu3O7-x from Low-Temperature Molten Salt/H. Y. Tang, Lee C. S. Hshu H.Y. // J. Electrochem. Soc, 1997. т.144, 1, 16-20
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| Electrochemical synthesis of Ti5Si3 in CaCl2 melt/Handong Jiao, Qiuyu Wang, Jianbang Ge, Haobo Sun, Shuqiang Jiao // Journal of Alloys and Compounds, 2014. т.Vol. 582.-С.. 146-150.
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| Electrochemical Synthesis of TiB2 Layers Out of FLiNaK Electrolyte in the Presence of TaCl5 Additive/N. Rybakova [и др.] // Journal of The Electrochemical Society , 2010. т.Vol. 157,N № 12.-С.D593-D599.
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| Electrochemical synthesis, morphological and structural characteristics of carbon nanomaterials produced in molten salts/I. A. Novoselova, S. V. Kuleshov, S. V. Volkov, V. N. Bykov // Electrochimica Acta, 2016. т.Vol. 211.-С.343-355
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| Friedman T.L. Electrochemistry in Molten Hydroxides: Synthesis of NaCuO2/T. L. Friedman, A. M. Stacy // J. Solid State Chem, 1994. т.109, 1, 203-204
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| Facile synthesis of Nb–Al alloy powders via sodiothermic reduction in molten salts /Chao Du, Na Wang, Jungang Hou, Shuqiang Jiao, Hongmin Zhu // Journal of Alloys and Compounds, 2013. т.Vol. 555.-С.405-411.
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10.
| Kononov A.I. High-temperature electrochemical synthesis and properties of intermetallic compounds in the Ni-Sc system. Part 2. Thermodynamic and mechanical properties/A. I. Kononov, E. G. Polyakov // J. Alloys and Compounds, 1996. т.239, 2, 107-110
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