Electroreduction of silicon from the NaI–KI–K2SiF6 melt for lithium-ion power sources

Q4 Materials Science Chimica Techno Acta Pub Date : 2022-12-06 DOI:10.15826/chimtech.2022.9.4.24
Rayana K. Abdurakhimova, M. V. Laptev, N. Leonova, A. Leonova, Alexander S. Schmygalev, A. Suzdaltsev
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引用次数: 4

Abstract

Silicon and silicon-based materials are increasingly used in microelectronics, metallurgy and power generation. To date the active study aimed at the development of silicon materials to be used in devices for solar energy conversion, accumulation and storage is underway. In addition, silicon is a promising anode material for lithium-ion fuel cells. In the present paper a possibility of silicon electroreduction from the NaI–KI–K2SiF6 melt in the argon atmosphere is studied. With this aim in view the electrolysis of the NaI–KI–K2SiF6 melt with glassy carbon cathode was performed under galvanostatic and potentiostatic regimes at the temperatures ranging from 650 to 750 °С. The morphology, phase and elemental analyses of the obtained silicon deposits were performed after their separation from the electrolytes by the ICP, SEM-EDX, XRD and Raman spectroscopy methods. Fiber and thread-like silicon samples of 60 to 320 nm in dimeter with admixtures concentrations (mainly oxygen) from 1.2 to 4.6 wt.% were experimentally synthesized. The obtained samples were tested as possible Si/C composite anodes for lithium-ion power sources. The discharge capacity of such power sources after 30 cycles of lithiation-delithiation ranged from 440 to 565 mAh·g–1 and the coloumbic efficiency ranged from 89 to 91%.
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锂离子电源用NaI-KI-K2SiF6熔体电还原硅的研究
硅和硅基材料越来越多地应用于微电子、冶金和发电。迄今为止,旨在开发用于太阳能转换、积累和储存装置的硅材料的积极研究正在进行中。此外,硅是锂离子燃料电池极有前途的负极材料。本文研究了ni - ki - k2sif6熔体在氩气气氛下电还原硅的可能性。为此,在恒电流和恒电位条件下,对ni - ki - k2sif6熔体与玻璃碳阴极在650 ~ 750°С温度范围内进行了电解。采用ICP、SEM-EDX、XRD和拉曼光谱等方法对分离后的硅镀层进行形貌、物相和元素分析。实验合成了直径为60 ~ 320 nm,外加剂(主要为氧)浓度为1.2 ~ 4.6 wt.%的纤维和线状硅样品。将所得样品作为锂离子电源的硅/碳复合阳极进行了测试。经过30次锂离子衰减循环后,该电源的放电容量为440 ~ 565 mAh·g-1,哥伦比亚效率为89% ~ 91%。
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来源期刊
Chimica Techno Acta
Chimica Techno Acta Chemical Engineering-Chemical Engineering (all)
CiteScore
1.00
自引率
0.00%
发文量
67
审稿时长
4 weeks
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