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纳米Si粉在高容量锂离子电池负极中的应用研究

Research on the Application of Nano Si Powers in High Capacity Lithium Ion Battery Cathode

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【作者】 王立惠刘文平秦海青雷晓旭林峰张振军赵军伟

【Author】 WANG Lihui;LIU Wenping;QIN Haiqing;LEI Xiaoxv;LIN Feng;ZHANG Zhenjun;ZHAO Junwei;China Nonferrous Metal (Guilin) Geology And Mining Co.,Ltd;National Engineering Research Center for Special Mineral Material;Guangxi Key Laboratory of Superhard Material;College of Materials Science and Engineering,Guilin University of Electronic Technology;

【机构】 中国有色桂林矿产地质研究院有限公司国家特种矿物材料工程技术研究中心广西超硬材料重点实验室桂林电子科技大学材料科学与工程学院

【摘要】 通过感应等离子体蒸发凝聚法制备纳米Si粉,以葡萄糖为有机碳源,经高温碳化将纳米Si粉钉扎在石墨载体表面制备出Si/C复合负极材料,采用X射线衍射(XRD)、场发射扫描电子显微镜(0FESEM)和电化学性能测试等对比分析了纳米Si粉、石墨载体和Si/C复合负极材料的结构和性能。结果表明,纳米Si粉作为锂离子电池负极材料首次放电容量和可逆充电容量分别为3 519.4 m Ah/g和2 063.7m Ah/g,但是首次效率只有58.6%,且循环寿命差,Si/C复合负极材料能够有效缓冲纳米Si粉的体积变化,发挥较高的可逆储锂容量,提高循环寿命,但是需进一步改善首次效率。

【Abstract】 The nano Si powers were prepared by radio frequency inductively coupled plasma evaporation method. Si/C composite cathode materials were prepared through nano Si powers loading on the surface of the graphite, which used glucose as organic carbon source by high temperature carbonization. The performance of Si powder,graphite carrier and Si/C composite cathode materials were contrastively analyzed. From electrochemical performance tests,it can be found that the firstly discharge capacity and reversible charge capacity of nano Si powers were 3 519. 4 m Ah/g and 2 063. 7 m Ah/g respectively,which were used as lithiμm ion battery anode materials,but the first efficiency was only58. 6% and cycle life was short. Si/C composite cathode materials could effectively buffer volume change of nano Si powers,which had higher reversible lithiμm storage capacity and better cycle life,but the first efficiency needed to be improved.

【基金】 桂林市科技攻关项目(2016010706);桂林市“1020”创新驱动计划重大攻关项目(20160204)
  • 【文献出处】 有色金属工程 ,Nonferrous Metals Engineering , 编辑部邮箱 ,2018年02期
  • 【分类号】TM912.9
  • 【被引频次】3
  • 【下载频次】123
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