LiCoPO4 mechanical properties evaluated by nanoindentation

被引:17
作者
Wolfenstine, J. [1 ]
Allen, J. L. [1 ]
Jow, T. R. [1 ]
Thompson, T. [2 ]
Sakamoto, J. [2 ]
Jo, H. [3 ]
Choe, H. [3 ]
机构
[1] US Army Res Lab, Adelphi, MD 20783 USA
[2] Michigan State Univ, Dept Chem Engn & Mat Sci, E Lansing, MI 48824 USA
[3] Kookmin Univ, Sch Adv Mat Engn, Seoul 136702, South Korea
基金
新加坡国家研究基金会;
关键词
Hardness; Fracture toughness; LiCoPO4; Modulus; Olivine; FRACTURE-TOUGHNESS; ELASTIC-MODULUS; INDENTATION; HARDNESS; PRESSURE; CAPACITY; FILMS;
D O I
10.1016/j.ceramint.2014.04.122
中图分类号
TQ174 [陶瓷工业]; TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
LiCoPO4 is a promising cathode material for use in high voltage Li-ion batteries. One of the problems with LiCoPO4 is limited cycle life. One possible cause for the limited cycle life of LiCoPO4 is mechanical degradation. As a consequence, the mechanical properties, elastic modulus, E, and fracture toughness, Kic, of hot-pressed dense (similar to 98%) polycrystalline (15-20 mu m) single phase LiCoPO4 were investigated. E for the hotpressed LiCoPO4 specimen is similar to 137 GPa while the E value for the LiCoPO4 specimen after annealing at 600 degrees C is 106 GPa. The fracture toughness of the hot-pressed LiCoPO4 sample is similar to 0.41 MPa m112, which increased to similar to 0.53 MPa 111112 after annealing. These low Ific values reveal that LiCoPO4 is a brittle material. It is believed that the decrease in E and increase in Kic with annealing is associated with a reduction in residual stress. Published by Elsevier Ltd and Techna Group S.r.l.
引用
收藏
页码:13673 / 13677
页数:5
相关论文
共 35 条
  • [1] Design criteria for nanostructured Li-ion batteries
    Aifantis, K. E.
    Hackney, S. A.
    Dempsey, J. P.
    [J]. JOURNAL OF POWER SOURCES, 2007, 165 (02) : 874 - 879
  • [2] Improved cycle life of Fe-substituted LiCoPO4
    Allen, J. L.
    Jow, T. R.
    Wolfenstine, J.
    [J]. JOURNAL OF POWER SOURCES, 2011, 196 (20) : 8656 - 8661
  • [3] Transport properties of LiCoPO4 and Fe-substituted LiCoPO4
    Allen, Jan L.
    Thompson, Travis
    Sakamoto, Jeff
    Becker, Collin R.
    Jow, T. Richard
    Wolfenstine, Jeff
    [J]. JOURNAL OF POWER SOURCES, 2014, 254 : 204 - 208
  • [4] Determination of fracture toughness and energy dissipation of SiO2-poly(methyl metacrylate) hybrid films by nanoindentation
    Alvarado-Rivera, J.
    Munoz-Saldana, J.
    Ramirez-Bon, R.
    [J]. THIN SOLID FILMS, 2011, 519 (16) : 5528 - 5534
  • [5] High pressure polymorphs of LiCoPO4 and LiCoAsO4
    Amador, U.
    Gallardo-Amores, J. M.
    Heymann, G.
    Huppertz, H.
    Moran, E.
    Arroyo y de Dompablo, M. E.
    [J]. SOLID STATE SCIENCES, 2009, 11 (02) : 343 - 348
  • [6] Olivine LiCoPO4 as 4.8 V electrode material for lithium batteries
    Amine, K
    Yasuda, H
    Yamachi, M
    [J]. ELECTROCHEMICAL AND SOLID STATE LETTERS, 2000, 3 (04) : 178 - 179
  • [7] Barrett C.R., 1973, The Principles of Engineering Materials
  • [8] Barsoum M.W., 1997, Fundamentals of Ceramics, V2nd ed.
  • [9] Microstructures and mechanical properties of a directionally solidified NiAl-Mo eutectic alloy
    Bei, H
    George, EP
    [J]. ACTA MATERIALIA, 2005, 53 (01) : 69 - 77
  • [10] Electrochemical and structural study of LiCoPO4-based electrodes
    Bramnik, NN
    Bramnik, KG
    Buhrmester, T
    Baehtz, C
    Ehrenberg, H
    Fuess, H
    [J]. JOURNAL OF SOLID STATE ELECTROCHEMISTRY, 2004, 8 (08) : 558 - 564