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Research Progress to Improve the Conductivity of LiFePO4 Cathode Materials for Lithium Ion Batteries
He BinBin1, Li YaoJi1, Ai ChangChun1, 2, Li XiaoShuang1, Fang ShiXiang1, Tian XiKe3
Abstract: As a new type of cathode materials for lithium ion banery, the olivine LiFePO4 has many advantages, such as abundant resources, low cost, environmental friend, higher energy density and theoretical capacity, smady discharge voltage, good thermal stability and excellent cycling performance, to be a strong competitor for the next generation cathode materials for lithium ion banery£®However, the problem of lower conductivity has been very prominent in the process of synthesis and partical of lithium iron phosphate. This article described the structure of LiFePO4 cathode material, the mechanism of charge-discharge and Li+ transport diffusion in LiFePO4. A variety of methods to improve the conductivity of LiFePO4 have described in this paper, mainly carbon-doped and coated, metal powder, doped metal ion and so on.
Key words: Lithium iron phosphate; Cathode material; Conductivit,
Rare Metal Materials and Engineering
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hebin2010(sunshan4379´ú·¢): ½ð±Ò+5 2014-10-07 09:23:20
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Research Progress of Improving the Conductivity of LiFePO4 Cathode Materials for Lithium Ion Batteries


×÷Õß:He, BB (He Binbin)[ 1 ] ; Li, YJ (Li Yaoji)[ 1 ] ; Ai, CC (Ai Changchun)[ 1,2 ] ; Li, XS (Li Xiaoshuang)[ 1 ] ; Fang, SX (Fang Shixiang)[ 1 ] ; Tian, XK (Tian Xike)[ 3 ]




RARE METAL MATERIALS AND ENGINEERING



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³ö°æÄê: NOV 2013

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As a new type of cathode materials for lithium ion battery, the olivine LiFePO4 has many advantages, such as abundant resources, low cost, environmental friend, higher energy density and theoretical capacity, steady discharge voltage, good thermal stability and excellent cycling performance, to be a strong competitor for the next generation cathode materials for lithium ion banttery. However, the problem of lower conductivity has been very prominent in the process of synthesis and pratical of lithium iron phosphate, This article described the structure of LiFePO4 cathode material, the mechanism of charge-discharge and Li+ transport diffusion in LiFePO4. A variety of methods to improve the conductivity of LiFePO4 have been described in this paper, mainly carbon-doped and coated, doped metal powder, doped metal ion and so on.


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×÷Õ߹ؼü´Ê:lithium iron phosphate; cathode material; conductivity


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ͨѶ×÷ÕßµØÖ·: He, BB (ͨѶ×÷Õß)



      

Natl Engn Res Ctr Phosphate Resource Dev & Utiliz, Kunming 650113, Peoples R China.



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[ 1 ] Natl Engn Res Ctr Phosphate Resource Dev & Utiliz, Kunming 650113, Peoples R China





[ 2 ] Wuhan Inst Technol, Wuhan 430073, Peoples R China







[ 3 ] China Univ Geosci, Wuhan 430074, Peoples R China





µç×ÓÓʼþµØÖ·:2004hebin050@sina.com


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NORTHWEST INST NONFERROUS METAL RESEARCH, C/O RARE METAL MATERIAL ENGINEERING PRESS, PO BOX 51, XIAN, SHAANXI 710016, PEOPLES R CHINA


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Ñо¿·½Ïò:Materials Science; Metallurgy & Metallurgical Engineering

Web of Science Àà±ð:Materials Science, Multidisciplinary; Metallurgy & Metallurgical Engineering


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ÎÄÏ×ÀàÐÍ:Article

ÓïÖÖ:Chinese

Èë²ØºÅ: WOS:000328667300096

ISSN: 1002-185X


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