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Carbon-coated porous silicon composites as high performance Li-ion battery anode materials: can the production process be cheaper and greener?

机译:碳涂层多孔硅复合材料作为高性能锂离子电池负极材料:生产工艺是否可以更便宜,更环保?

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As the most promising next-generation lithium-ion battery anode materials, porous silicon-based materials are attracting great attention nowadays, mainly because of silicon's exceptionally high lithium storage capacity. However, how to realize the large-scale manufacture of these materials at low cost still remains a big challenge. In this work, we report the direct preparation of porous Si materials from metallurgical-grade Si in an autoclave, which is the most environmentally friendly route to produce alkoxysilane monomers in the organic silicon industry. In this reaction, Cu-based catalysts catalyze the reaction of Si particles with alcohols to create a porous structure within Si, followed by carbon deposition via the chemical vapor deposition method. The micro-morphology and -structure of the porous Si materials can be well tuned by adjusting the synthesis conditions. When used as the anode materials for lithium ion batteries, the charge capacity of the obtained porous Si/C materials was 1240 mA h g(-1) at a current density of 50 mA g(-1) after 50 cycles, much higher than that of the commercial graphite. This work provides an economic and scalable approach to the preparation of porous Si/C anode materials from commercial Si powders for lithium ion batteries.
机译:作为最有希望的下一代锂离子电池负极材料,多孔硅基材料如今引起了极大的关注,这主要是由于硅具有极高的锂存储容量。然而,如何以低成本实现这些材料的大规模生产仍然是一个巨大的挑战。在这项工作中,我们报告了在高压釜中由冶金级硅直接制备多孔硅材料的方法,这是有机硅工业中生产烷氧基硅烷单体的最环保途径。在该反应中,Cu基催化剂催化Si颗粒与醇的反应以在Si内产生多孔结构,然后通过化学气相沉积法进行碳沉积。通过调整合成条件,可以很好地调节多孔硅材料的微观形貌和结构。当用作锂离子电池的负极材料时,在50次循环后,电流密度为50 mA g(-1)时,所得多孔Si / C材料的充电容量为1240 mA hg(-1),远高于商业石墨。这项工作为从用于锂离子电池的商用硅粉制备多孔Si / C阳极材料提供了一种经济且可扩展的方法。

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