Phase Stability Study of Li1-xMnPO4 (0≤x≤1) Cathode for Li Rechargeable Battery

被引:111
作者
Kim, Sung-Wook [1 ]
Kim, Jongsoon
Gwon, Hyeokjo
Kang, Kisuk
机构
[1] Korea Adv Inst Sci & Technol, Dept Mat Sci & Engn, Taejon 305701, South Korea
关键词
cathodes; electron microscopy; lithium compounds; manganese compounds; secondary cells; solid-state phase transformations; X-ray diffraction; ELECTRODE MATERIALS; LITHIUM BATTERIES; MN; FE; OLIVINES; DIAGRAM; LIMPO4;
D O I
10.1149/1.3138705
中图分类号
O646 [电化学、电解、磁化学];
学科分类号
081704 ;
摘要
The phase stability of Li1-xMnPO4 (0 <= x <= 1) is investigated in this study for different Li compositions and temperatures by high temperature X-ray diffraction and electron microscopy. The map of stable phases is determined at temperature ranges between room temperature and 410 degrees C. While pure LiMnPO4 phase is stable at high temperature, partial phase transformation of MnPO4 into Mn2P2O7 is observed in delithiated phases above 210 degrees C. Electron microscopy study also indicates the instability of the delithiated phase. The morphology of LiMnPO4 is severely damaged upon delithiation. The instability of the delithiated phase and the phase transformation into Mn2P2O7 may imply that safety concerns can be raised regarding the LiMnPO4 cathode, unlike its Fe counterpart.
引用
收藏
页码:A635 / A638
页数:4
相关论文
共 16 条
  • [1] Hydrothermal synthesis of cathode materials
    Chen, Jiajun
    Wang, Shijun
    Whittingham, M. Stanley
    [J]. JOURNAL OF POWER SOURCES, 2007, 174 (02) : 442 - 448
  • [2] Electronically conductive phospho-olivines as lithium storage electrodes
    Chung, SY
    Bloking, JT
    Chiang, YM
    [J]. NATURE MATERIALS, 2002, 1 (02) : 123 - 128
  • [3] Toward understanding of electrical limitations (electronic, ionic) in LiMPO4 (M = Fe, Mn) electrode materials
    Delacourt, C
    Laffont, L
    Bouchet, R
    Wurm, C
    Leriche, JB
    Morcrette, M
    Tarascon, JM
    Masquelier, C
    [J]. JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 2005, 152 (05) : A913 - A921
  • [4] The existence of a temperature-driven solid solution in LixFePO4 for 0 ≤ x ≤ 1
    Delacourt, C
    Poizot, P
    Tarascon, JM
    Masquelier, C
    [J]. NATURE MATERIALS, 2005, 4 (03) : 254 - 260
  • [5] Phase diagram of LixFePO4
    Dodd, JL
    Yazami, R
    Fultz, B
    [J]. ELECTROCHEMICAL AND SOLID STATE LETTERS, 2006, 9 (03) : A151 - A155
  • [6] Nano-network electronic conduction in iron and nickel olivine phosphates
    Herle, PS
    Ellis, B
    Coombs, N
    Nazar, LF
    [J]. NATURE MATERIALS, 2004, 3 (03) : 147 - 152
  • [7] Phospho-olivines as positive-electrode materials for rechargeable lithium batteries
    Padhi, AK
    Nanjundaswamy, KS
    Goodenough, JB
    [J]. JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 1997, 144 (04) : 1188 - 1194
  • [8] Improved electrochemical performance of a LiFePO4-based composite cathode
    Prosini, PP
    Zane, D
    Pasquali, M
    [J]. ELECTROCHIMICA ACTA, 2001, 46 (23) : 3517 - 3523
  • [9] Ab initio study of the surface properties and nanoscale effects of LiMnPO4
    Wang, L.
    Zhou, F.
    Ceder, G.
    [J]. ELECTROCHEMICAL AND SOLID STATE LETTERS, 2008, 11 (06) : A94 - A96
  • [10] POWERFUL OXIDIZING-AGENTS FOR THE OXIDATIVE DEINTERCALATION OF LITHIUM FROM TRANSITION-METAL OXIDES
    WIZANSKY, AR
    RAUCH, PE
    DISALVO, FJ
    [J]. JOURNAL OF SOLID STATE CHEMISTRY, 1989, 81 (02) : 203 - 207