Particle size effects on temperature-dependent performance of LiCoO2 in lithium batteries

被引:38
|
作者
Choi, Sun Hee
Son, Ji-Won
Yoon, Young Soo
Kim, Joosun
机构
[1] Korea Adv Inst Sci & Technol, Nanomat Res Ctr, Seoul 130650, South Korea
[2] Konkuk Univ, Dept Adv Fus Technol, Seoul 143701, South Korea
关键词
lithium cobalt oxide; lithium-ion battery; temperature-dependent performance; nanocrystalline powder; particle size effect;
D O I
10.1016/j.jpowsour.2005.10.076
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The effect of the particle size of LiCoO2 on the operating temperature-dependent performance of lithium batteries is investigated. The LiCoO2 particle size is successfully controlled by modifying the powder preparation process and well-controlled nanocrystalline LiCoO2 Powders are obtained. It is found that the discharge capacity of a cell made with the nanocrystalline powder is slightly lower than that of cells made with micron-sized powders. On the other hand, the cycle performance of the cell using nanocrystalline LiCoO2 powder is consistent over the selected operating range of temperature (-15 to 60 degrees C) without deterioration. It is concluded that the smaller size of the particles contributes to the enhancement of the reliability by increasing the specific surface-area for intercalation sites, and by enhancing the resistance to mechanical failure especially at higher temperatures. (c) 2005 Elsevier B.V. All rights reserved.
引用
收藏
页码:1419 / 1424
页数:6
相关论文
共 50 条
  • [1] Influence of the LiCoO2 particle size on the performance of lithium-ion batteries
    Sheu, SP
    Yao, CY
    Chen, JM
    Chiou, YC
    JOURNAL OF POWER SOURCES, 1997, 68 (02) : 533 - 535
  • [2] Influence of the LiCoO2 particle size on the performance of lithium-ion batteries
    Sheu, S.P.
    Yao, C.Y.
    Chen, J.M.
    Chiou, Y.C.
    Journal of Power Sources, 1997, 68 (2 pt 2): : 533 - 535
  • [3] Particle size effect of LiCoO2 powders on discharge performance of lithium ion batteries
    Atsumi, T
    Nakata, Y
    Kobayakawa, K
    Negishi, K
    Yamazaki, N
    Sato, Y
    ELECTROCHEMISTRY, 2001, 69 (08) : 603 - 607
  • [4] Effects of temperature on the formation of graphite/LiCoO2 batteries
    He, Yan-Bing
    Tang, Zhi-Yuan
    Song, Quan-Sheng
    Xie, Hui
    Liu, Yuan-Gang
    Xu, Qiang
    JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 2008, 155 (07) : A481 - A487
  • [5] Hydrothermal synthesis of LiCoO2 for lithium rechargeable batteries
    Burukhin, A
    Brylev, O
    Hany, P
    Churagulov, BR
    SOLID STATE IONICS, 2002, 151 (1-4) : 259 - 263
  • [6] Study on LiCoO2 cathode materials with well performance for lithium ion batteries
    王英
    唐仁衡
    肖方明
    卢其云
    彭能
    材料研究与应用, 2005, (Z1) : 449 - 453
  • [7] LITHIUM-ION RECHARGEABLE BATTERIES WITH LICOO2 AND CARBON ELECTRODES - THE LICOO2 C SYSTEM
    OZAWA, K
    SOLID STATE IONICS, 1994, 69 (3-4) : 212 - 221
  • [8] Effects of Nano Carbon Conductive Additives on the Electrochemical Performance of LiCoO2 Cathode for Lithium Ion Batteries
    Li, Xinlu
    Zhang, Xinlin
    Li, Tongtao
    Zhong, Qineng
    Zhang, Yanyan
    Huang, Jiamu
    JOURNAL OF NEW MATERIALS FOR ELECTROCHEMICAL SYSTEMS, 2015, 18 (03) : 131 - 135
  • [9] Temperature dependent surface morphology and lithium diffusion kinetics of LiCoO2 cathode
    R. Lakshmanan
    D. Gangulibabu
    N. Bhuvaneswari
    Metals and Materials International, 2012, 18 : 249 - 255
  • [10] Temperature dependent surface morphology and lithium diffusion kinetics of LiCoO2 cathode
    Lakshmanan, R.
    Gangulibabu
    Bhuvaneswari, D.
    Kalaiselvi, N.
    METALS AND MATERIALS INTERNATIONAL, 2012, 18 (02) : 249 - 255