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Template‐Free Electrochemical Formation of Silicon Nanotubes from Silica

机译:二氧化硅的无硅纳米管的无模板电化学形成

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Silicon, with its elaborate microstructure, plays important roles in energy materials. In operando engineering of microstructure during extraction is an ideal protocol to develop advanced Si‐based materials. A template‐free electrochemical preparation of silicon nanotubes (Si‐NT) is herein achieved by co‐electrolysis of SiO2 and AgCl in molten NaCl–CaCl2 at 850?°C. The in situ electrodeposited Ag facilitates the generation of a liquid Ag–Si intermediate, triggering a liquid–solid mechanism to direct the growth of Si‐NT. An automatic separation of Ag from Si then occurs in the following cooling process, resulting in Ag deposits on the Ni current collector and recycling of Ag. Such a facile and smart preparation of Si‐NT from affordable silica guarantees an enhanced current efficiency of 74%, a decreased energy consumption of 12.1?kW h kgSi?1, and enhanced lithium‐storage capability of the electrolytic Si‐NT. An in situ coating of Ag over the Si‐NT can also be fulfilled by simply introducing soluble AgCl in the melts. The present study provides a template‐free preparation and an in situ surface modification of Si‐NT.
机译:硅,具有精细的微观结构,在能源材料中起重要作用。在萃取过程中的微观结构工程中,是开发先进的Si基材料的理想协议。通过在850℃下的熔融NaCl-CaCl 2中的SiO 2和AgCl在850℃下将SiO 2和AgCl在本发明中实现无硅纳米管(Si-NT)的无模板电化学制剂。原位电沉积AG有助于产生液体Ag-Si中间体,触发液体固体机制以指导Si-NT的生长。从Si自动分离,然后发生在以下冷却过程中,导致Ni集电器的Ag沉积物和Ag的再循环。来自实惠二氧化硅的Si-NT的这种容易和智能制备可确保增强的电流效率为74%,能耗降低12.1μlΩ·kg kgsiα1,增强电解Si-nt的锂储存能力。通过简单地引入熔体中的可溶性AgCl,还可以满足于Si-NT上的AG的原位涂层。本研究提供了一种无模板的制剂和Si-NT的原位表面改性。

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