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碳钠米管-Sn2Sb纳米复合材料的电化学吸放锂性能

Electrochemical intercalation of lithium in carbon nanotubes-Sn2Sb nanocomposites used as anode of lithium lion batteries

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【作者】 陈卫祥李宁韩贵LEE Jim Yang刘昭林

【Author】 CHEN Wei-xiang~(1,2), LI Ning~1, HAN Gui~1, LEE Jim Yang~(2,3,4), LIU Zhao-lin~4 (1.Department of Chemistry, Zhejiang University, Hangzhou 310027, China; 2.Singapore-MIT Alliance, National University of Singapore, 117576, Singapore; 3.Department of Chemical and Environmental Engineering, National University of Singapore, 119260, Singapore; 4.Institute of Materials Research and Engineering, 117602, Singapore)

【机构】 浙江大学化学系新加坡国立大学新加坡新加坡—麻省理工学院联合体新加坡材料研究与工程所 浙江杭州310027117576新加坡浙江杭州310027新加坡新加坡国立大学化学与环境工程系新加坡材料研究与工程所117602

【摘要】 用化学还原的方法制备了碳钠米管-Sn2Sb合金的纳米复合材料.SEM和TEM观察结果表明,Sn-Sb合金纳米粒子均匀地分布在碳钠米管的网络中,部分合金包覆在碳钠米管的表面.充放电试验结果显示,碳钠米管-Sn2Sb合金纳米复合材料具有良好的电化学吸放锂性能,其可逆容量显著大于碳钠米管,而循环稳定性优于Sn-Sb合金.这种循环性能的改善主要是由于碳钠米管改善了电过程中电极结构的稳定性.

【Abstract】 Nanocomposites of carbon nanotubes-Sn2Sb alloy were prepared by chemical reduction using KBH4 as reducing agent. TEM imaging showed that most of the Sn-Sb alloy nanoparticles were uniformly dispersed in the CNT web, whereas some Sn-Sb alloy was coated on the outside surface of CNTs. Electrochemical experiments demonstrated that the nanoicomposites exhibited improved cyclability compared to unsupported Sn-Sb alloy and higher reversible specific capacities than CNTs. The improved cyclability may be attributed to the existence of CNTs, which improve the structural stability of electrode materials during charge/discharge cycling.

【基金】 国家自然科学基金资助项目(20003009);浙江省自然科学基金资助项目(200053);MEBCSProgrammeofSingapore-MITAlliance资助项目.
  • 【文献出处】 浙江大学学报(工学版) ,Journal of Zhejiang University(Engineering Science) , 编辑部邮箱 ,2004年03期
  • 【分类号】TB383
  • 【被引频次】3
  • 【下载频次】135
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