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切割废硅粉球磨制备锂离子电池负极材料
引用本文:陆继军,刘俊昊,钱国余,王志,马佳. 切割废硅粉球磨制备锂离子电池负极材料[J]. 矿冶, 2021, 30(3)
作者姓名:陆继军  刘俊昊  钱国余  王志  马佳
作者单位:中国科学院过程过程研究所,中国科学院过程过程研究所,中国科学院过程过程研究所,中国科学院过程过程研究所,中国科学院过程过程研究所
基金项目:国家重点研发计划项目(2018YFC1901801)
摘    要:硅碳复合材料被认为是最具潜力的下一代高能量密度锂离子电池负极材料。然而,当前锂离子电池负极用高品质硅碳材料的制备过程复杂、硅源成本高造成其价格高昂,严重阻碍了硅碳复合材料在锂离子电池领域的规模化应用。采用低成本的切割废硅粉为硅源、人造石墨为碳源,采用简单的高能球磨法一步制备废硅粉-石墨复合材料(WSi-G)。系统研究了废硅粉的属性特征和硅碳复合材料的微观结构,所制备硅碳复合微粉的电化学性能。结果表明,微米尺寸的废硅粉直接用于锂离子电池时的负极循环性能快速衰减,采用球磨法制备的硅碳复合材料用于锂离子电池负极时展现出优异的循环稳定性,在0.5 A g-1电流密度下循环160圈后其可逆比容量仍然可以稳定在428 mA·h/g以上。

关 键 词:切割废硅粉;石墨;球磨;锂离子电池;硅碳负极
收稿时间:2021-03-22
修稿时间:2021-04-06

Preparation of anode material for lithium-ion battery from waste silicon powder by ball milling
LU Ji-jun,LIU Jun-hao,QIAN Guo-yu,WANG Zhi and MA Jia. Preparation of anode material for lithium-ion battery from waste silicon powder by ball milling[J]. Mining & Metallurgy, 2021, 30(3)
Authors:LU Ji-jun  LIU Jun-hao  QIAN Guo-yu  WANG Zhi  MA Jia
Affiliation:Key Laboratory of Green Process and Engineering,National Engineering Laboratory for Hydrometallurgical Cleaner Production Technology,Institute of Process Engineering,Chinese Academy of Sciences,Key Laboratory of Green Process and Engineering,National Engineering Laboratory for Hydrometallurgical Cleaner Production Technology,Institute of Process Engineering,Chinese Academy of Sciences,Key Laboratory of Green Process and Engineering,National Engineering Laboratory for Hydrometallurgical Cleaner Production Technology,Institute of Process Engineering,Chinese Academy of Sciences,Key Laboratory of Green Process and Engineering,National Engineering Laboratory for Hydrometallurgical Cleaner Production Technology,Institute of Process Engineering,Chinese Academy of Sciences,Key Laboratory of Green Process and Engineering,National Engineering Laboratory for Hydrometallurgical Cleaner Production Technology,Institute of Process Engineering,Chinese Academy of Sciences
Abstract:Silicon-carbon (Si-C) materials are considered to be the most promising next-generation high-energy-density lithium-ion battery (LIB) anodes. However, at present, the complex preparation process of high-quality Si-C anode materials for lithium-ion battery anodes and the high cost of Si raw materials result in high prices of Si-C materials, which seriously hinder the large-scale application of Si-C materials in the field of LIBs. This paper uses low-cost cutting waste Si powder as the Si source and graphite as the carbon source, and uses a simple high-energy ball milling method to prepare waste Si powder-graphite composite material (WSi-G). The properties and characteristics of waste Si (WSi) powder, the microstructure of Si-C composites and their electrochemical properties was systematically studied. The results show that the cycle performance of micron-sized WSi is rapidly decayed when it is directly used as a LIB anode. Preparation of silicon carbon materials by ball milling exhibits excellent cycle stability when used in the anode of LIB, and the reversible specific capacity is stable above 428 mA·h/g at a current density of 0.5 A g-1 for 160 cycles.
Keywords:kerf-loss Si waste   graphite   lithium ion battery   silicon-carbon anode
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