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Synthesis of LiFePO4/C composite electrode with enhanced electrochemical performance
引用本文:胡国荣,高旭光,彭忠东,陈召勇,谭显艳,禹筱元. Synthesis of LiFePO4/C composite electrode with enhanced electrochemical performance[J]. 中国有色金属学会会刊, 2005, 15(4): 795-799
作者姓名:胡国荣  高旭光  彭忠东  陈召勇  谭显艳  禹筱元
作者单位:School of Metallurgy Science and Engineering,Central South University,School of Metallurgy Science and Engineering,Central South University,School of Metallurgy Science and Engineering,Central South University,School of Metallurgy Science and Engineering,Central South University,School of Metallurgy Science and Engineering,Central South University,School of Metallurgy Science and Engineering,Central South University Changsha 410083,China,Changsha 410083,China,Changsha 410083,China,Changsha 410083,China,Changsha 410083,China,Changsha 410083,China
摘    要:1 INTRODUCTION The ever-growing demand for portable batter- ies with high energy density is exerting pressure for the development of advancedlithium-ion batter- ies . Commercial Li-ion batteries rely on the appli- cation of one of the well-known lithiuminsertion hosts ,i .e . LiCoO2, Li Mn2O4and Li Ni O2. How- ever the high cost of cobalt resource ,low specific capacity of Li Mn2O4and Li Ni O2is known to be difficult to synthesize and its multi-phase reaction during electrochemical …

关 键 词:干电池 合成工艺 温度 草酸盐 锂
文章编号:1003-6326(2005)04-0795-05
收稿时间:2004-11-26
修稿时间:2005-03-03

Synthesis of LiFePO4/C composite electrode with enhanced electrochemical performance
HU Guo-rong,Gao Xu-guang,PENG Zhong-dong,Chen Zhao-Yong,TAN Xian-yan,YU Xiao-yuan. Synthesis of LiFePO4/C composite electrode with enhanced electrochemical performance[J]. Transactions of Nonferrous Metals Society of China, 2005, 15(4): 795-799
Authors:HU Guo-rong  Gao Xu-guang  PENG Zhong-dong  Chen Zhao-Yong  TAN Xian-yan  YU Xiao-yuan
Abstract:LiFePO4/C composite was synthesized by high temperature solid-state reaction using iron( Ⅱ ) oxalate,ammonium di-hydrogen phosphate and lithium carbonate with a kind of carbohydrate dissolved in the dispersant(ethanol) as carbon sources added to the synthetic precursor. The samples were characterized by X-ray diffraction (XRD), scanning electron microscopy observations(SEM), charge/discharge test, cyclic voltammetry(CV) and carbon analysis. The results show that the synthesis of LiFePO4/C has ordered olivine structure. The carbon has two advantages: optimizing particle size of LiFePO4 and increasing the electronic conductivity and high Li diffusivity.The cathode material can demonstrate a charge/discharge flat voltage of 3.4 V(vs Li /Li). Especially the active material with 15 % and 20% carbohydrate added according to the final product of lithium iron phosphate shows very respectively at 0. 1 C rate and the carbon contents in the final production are only 5.17% and 5.29%, respectively.
Keywords:Li-ion battery  cathode materials  LiFePO4  carbon-coated
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