Toward understanding of electrical limitations (electronic, ionic) in LiMPO4 (M = Fe, Mn) electrode materials

被引:586
作者
Delacourt, C [1 ]
Laffont, L
Bouchet, R
Wurm, C
Leriche, JB
Morcrette, M
Tarascon, JM
Masquelier, C
机构
[1] Univ Picardie, CNRS, UMR 6007, Lab React & Chim Solides, F-80039 Amiens, France
[2] Univ Aix Marseille 1, CNRS, Lab Mat Divises, F-13397 Marseille, France
关键词
D O I
10.1149/1.1884787
中图分类号
O646 [电化学、电解、磁化学];
学科分类号
081704 ;
摘要
To better understand the factors responsible for the poor electrochemical performances of the olivine-type LiMnPO4, various experiments such as chemical delithiation, galvanostatic charge and discharge, cyclic voltamperometry, and impedance conductivity, were carried out on both LiFePO4 and LiMnPO4. Chemical delithiation experiments confirmed a topotactic two-phase electrochemical mechanism between LiMnPO4 and the fully delithiated phase MnPO4 (a = 5.909(5) angstrom, b = 9.64(1) angstrom, and c = 4.768(6) angstrom). We conclude that the limiting factor in the MnPO4/LiMnPO4 electrochemical reaction is nested mostly in the ionic and/or electronic transport within the LiMnPO4 particles themselves rather than in charge transfer kinetics or structural instability of the MnPO4 phase. For instance, the electrical conductivity of LiMnPO4 (sigma similar to 3.10(- 9) S cm(-1) at 573 K, Delta E similar to 1.1 eV) was found to be several orders of magnitude lower than that of LiFePO4 (sigma similar to 10(-9) S cm(-1) at 298 K, Delta E similar to 0.6 eV). (c) 2005 The Electrochemical Society.
引用
收藏
页码:A913 / A921
页数:9
相关论文
共 36 条
[11]  
DEPORTES C, 1987, ELECTROCHIMIE SOLIDE
[12]  
ELLIS B, 2003, ELECTROCHEMICAL SOC
[13]   LiFePO4 synthesis routes for enhanced electrochemical performance [J].
Franger, S ;
Le Cras, F ;
Bourbon, C ;
Rouault, H .
ELECTROCHEMICAL AND SOLID STATE LETTERS, 2002, 5 (10) :A231-A233
[14]   Nano-network electronic conduction in iron and nickel olivine phosphates [J].
Herle, PS ;
Ellis, B ;
Coombs, N ;
Nazar, LF .
NATURE MATERIALS, 2004, 3 (03) :147-152
[15]   Approaching theoretical capacity of LiFePO4 at room temperature at high rates [J].
Huang, H ;
Yin, SC ;
Nazar, LF .
ELECTROCHEMICAL AND SOLID STATE LETTERS, 2001, 4 (10) :A170-A172
[16]   LiMnPO4 as the cathode for lithium batteries [J].
Li, GH ;
Azuma, H ;
Tohda, M .
ELECTROCHEMICAL AND SOLID STATE LETTERS, 2002, 5 (06) :A135-A137
[17]   Improvement of the electrochemical performance of LiCoPO45Vmaterial using a novel synthesis procedure [J].
Lloris, JM ;
Vicente, CP ;
Tirado, JL .
ELECTROCHEMICAL AND SOLID STATE LETTERS, 2002, 5 (10) :A234-A237
[18]  
MASQUELIER C, 2004, 12 INT M LITH BATT J
[19]   Li conductivity in LixMPO4 (M = Mn, Fe, Co, Ni) olivine materials [J].
Morgan, D ;
Van der Ven, A ;
Ceder, G .
ELECTROCHEMICAL AND SOLID STATE LETTERS, 2004, 7 (02) :A30-A32
[20]   A theoretical study of olivine LiMPO4 cathodes [J].
Osorio-Guillen, JM ;
Holm, B ;
Ahuja, R ;
Johansson, B .
SOLID STATE IONICS, 2004, 167 (3-4) :221-227