Acta Chimica Sinica ›› 2004, Vol. 62 ›› Issue (5): 475-479. Previous Articles     Next Articles

Li1+δNi1-xCoxO2-yFy的合成与电化学性能研究

刘兴泉1,2, 林晓静2, 何泽珍1,2, 唐毅2, 李淑华2, 唐建川3   

  1. 1. 成都理工大学材料与生物工程学院, 成都, 610059;
    2. 中国科学院成都有机化学研究所储能材料研究开发中心, 成都, 610041;
    3. 重庆永固实业有限公司, 重庆, 400014
  • 投稿日期:2003-05-29 修回日期:2003-11-12 发布日期:2014-02-18
  • 通讯作者: 刘兴泉,E-mail:Lxquan2000@hotmail.com;Tel:(028)85228842;Fax:(028)85223978 E-mail:Lxquan2000@hotmail.com
  • 基金资助:
    中国科学院"西部之光"人才计划与中国科学院青年创新基金及重庆永固实业有限公司资助项目.

Synthesis and Electrochemical Performances of Li1+δNi1-xCoxO2-yFy

LIU Xing-Quan1,2, LIN Xiao-Jing2, HE Ze-Zhen1,2, TANG Yi2, LI Shu-Hua2, TANG Jian-Chuan3   

  1. 1. College of Materials and Bioengineering, Chengdu University of Technology, Chengdu 610059;
    2. Development and Research Center for Energy-storage Materials, Chengdu Institute of Organic Chemistry, Chinese Academy of Sciences, Chengdu 610041;
    3. Chongqing Yonggu Industrial Co. , Ltd., Chongqing 400014
  • Received:2003-05-29 Revised:2003-11-12 Published:2014-02-18

The cobalt cation and fluorine anion co-doped cathode materials of Li1+δNi1-xCoxO2-yFy (0≤δ≤0.2, 0≤x≤0.5, 0≤y≤0.1) were synthesized by solid state reaction method at 650~750℃ under air atmosphere, and characterized by XRD, SEM, TEM, BET, laser particle-size distribution measurement and electrochemical performance testing. The effects of different nickel sources on the properties of as-synthesized cathode materials were investigated. The results demonstrated that the materials of Li1+δNi1-xCoxO2-yFy have complete layered structure, uniform surface morphology and better particle-size distribution as well as excellent electrochemical performances. At 20~25℃, 0.15~0.25 mA charge and discharge current, 4.25~2.70 V cut-off voltage, 0.2~0.5C charge and discharge rate and 0.2~0.5 mA/cm2 current density, the cathode material of LiNi0.8Co0.2O1.95F0.05 has higher initial charge and discharge capacity and better cyclic properties, which can be mainly attributed to the doping of the higher electronegative fluorine which improves the structural stability and the synergistic reaction of cobalt and fluorine ions co-doped in the cathode materials. Under the above conditions, the initial charge and discharge capacity of LiNi0.8-Co0.2O1.95F0.05 are 165.70 mAh/g and 146.10 mAh/g, respectively. After 50 cycles, it keeps more than 140 mAh/g of discharge capacity and displays potential application.

Key words: lithium-ion rechargeable battery, cathode material, Li1+δNi1-xCoxO2-yFy, synthesis, LiF, co-doping