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Synthesis and electrochemical performance of a novel nano sized Sn2SbNi composite

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【作者】 郭洪林雪飞陈益山

【Author】 GUO Hong1,2,LIN Xue-fei2,CHEN Yi-san2 1.School of Chemical Science and Technology,Yunnan University,Kunming 650091,China; 2.School of Chemistry and Chemical Engineering,Qujing Normal University,Qujing 655000,China

【机构】 School of Chemical Science and Technology,Yunnan UniversitySchool of Chemistry and Chemical Engineering,Qujing Normal University

【摘要】 Chemical reduction method was employed to prepare nano-sized Sn2SbNi alloy composites used as anode material for rechargeable lithium ion batteries.This strategy was adopted to combine the virtues of both active/inactive and active/active alloys to fabricate a Sn2SbNi alloy powder with two active components and one inactive component.The two active components can realize the high capacity feature of electrode and can make the volume change of electrode take place in a stepwise manner due to the different lithiation potentials of two active components,leading to a stable cycling performance.Sn2SbNi alloy provides a reversible specific capacity over 640 mA·h/g with an excellent cyclic ability.The Sn-Sb-Ni alloy composite material shows to be a good candidate anode material for the lithium ion batteries.

【Abstract】 Chemical reduction method was employed to prepare nano-sized Sn2SbNi alloy composites used as anode material for rechargeable lithium ion batteries.This strategy was adopted to combine the virtues of both active/inactive and active/active alloys to fabricate a Sn2SbNi alloy powder with two active components and one inactive component.The two active components can realize the high capacity feature of electrode and can make the volume change of electrode take place in a stepwise manner due to the different lithiation potentials of two active components,leading to a stable cycling performance.Sn2SbNi alloy provides a reversible specific capacity over 640 mA·h/g with an excellent cyclic ability.The Sn-Sb-Ni alloy composite material shows to be a good candidate anode material for the lithium ion batteries.

【基金】 Project(2008cd148)supported by the Social Development Plan of Yunnan Province,China;Project(2010)supported by Key Science and Technology Fund of Education Department,China
  • 【文献出处】 Transactions of Nonferrous Metals Society of China ,中国有色金属学报(英文版) , 编辑部邮箱 ,2010年S1期
  • 【分类号】TB383.1
  • 【下载频次】48
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