Electrochemical performance of CuO nanocrystal film fabricated by room temperature sputtering

被引:37
作者
Feng, J. K. [1 ]
Xia, H. [1 ]
Lai, M. O. [1 ]
Lu, L. [1 ]
机构
[1] Natl Univ Singapore, Mat Sci Grp, Dept Mech Engn, Singapore 117576, Singapore
关键词
Thin film; Oxides; Sputtering; Electrochemical properties; Energy storage; LITHIUM-ION BATTERIES; THIN-FILMS; ELECTRODE MATERIALS; ANODES; INSERTION; STORAGE; COPPER;
D O I
10.1016/j.materresbull.2010.12.006
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
To develop high performance anode materials for thin film batteries, copper oxide (CuO) film is fabricated at room temperature by reactive radio frequency magnetron sputtering. Morphological characterization shows that the CuO film consists of compacted CuO columnar grains of 20 nm in diameter and 200 nm in thickness. The measurement of lithium storage capacity and cyclability of the CuO film show that the first charge capacity of the film is 585 mAh g(-1) with an efficiency of 68.3% at a current density of 200 mA g(-1). After the 50th cycle, the capacity retention remains as high as 97.4%. The nanostructured CuO film also shows a good rate capability even being cycled at 3000 rnA g(-1) (5 C), demonstrating that the CuO film can be a promising material as an anode for high performance thin film batteries, especially for thin film battery with amorphous electrolyte. (C) 2010 Elsevier Ltd. All rights reserved.
引用
收藏
页码:424 / 427
页数:4
相关论文
共 27 条
  • [1] Thin-film lithium and lithium-ion batteries
    Bates, JB
    Dudney, NJ
    Neudecker, B
    Ueda, A
    Evans, CD
    [J]. SOLID STATE IONICS, 2000, 135 (1-4) : 33 - 45
  • [2] High rate electrochemical performances of nanosized ZnO and carbon co-coated LiFePO4 cathode
    Cui, Yan
    Zhao, Xiaoli
    Guo, Ruisong
    [J]. MATERIALS RESEARCH BULLETIN, 2010, 45 (07) : 844 - 849
  • [3] Nanoflake CoN as a high capacity anode for Li-ion batteries
    Das, B.
    Reddy, M. V.
    Malar, P.
    Osipowicz, Thomas
    Rao, G. V. Subba
    Chowdari, B. V. R.
    [J]. SOLID STATE IONICS, 2009, 180 (17-19) : 1061 - 1068
  • [4] Electrochemical AFM study of LiMn2O4 thin film electrodes exposed to elevated temperatures
    Doi, Takayuki
    Inaba, Minoru
    Tsuchiya, Hiroshi
    Jeong, Soon-Ki
    Iriyama, Yasutoshi
    Abe, Takeshi
    Ogumi, Zempachi
    [J]. JOURNAL OF POWER SOURCES, 2008, 180 (01) : 539 - 545
  • [5] One-step fabrication of CuO nanoribbons array electrode and its excellent lithium storage performance
    Ke, Fu-Sheng
    Huang, Ling
    Wei, Guo-Zhen
    Xue, Lian-Jie
    Li, Jun-Tao
    Zhang, Bo
    Chen, Shu-Ru
    Fan, Xiao-Yong
    Sun, Shi-Gang
    [J]. ELECTROCHIMICA ACTA, 2009, 54 (24) : 5825 - 5829
  • [6] Synthesis of xLi2MnO3•(1-x)LiMO2 (M = Cr, Mn, Co, Ni) nanocomposites and their electrochemical properties
    Kim, Donghan
    Gim, Jihyeon
    Lim, Jinsub
    Park, Sangjun
    Kim, Jaekook
    [J]. MATERIALS RESEARCH BULLETIN, 2010, 45 (03) : 252 - 255
  • [7] Reversible and High-Capacity Nanostructured Electrode Materials for Li-Ion Batteries
    Kim, Min Gyu
    Cho, Jaephil
    [J]. ADVANCED FUNCTIONAL MATERIALS, 2009, 19 (10) : 1497 - 1514
  • [8] Structural and textural characterization of LiFePO4 thin films prepared by pulsed laser deposition on Si substrates
    Legrand, C.
    Dupont, L.
    Tang, K.
    Li, H.
    Huang, X. J.
    Baudrin, E.
    [J]. THIN SOLID FILMS, 2010, 518 (19) : 5447 - 5451
  • [9] VO2(B) nanospheres: Hydrothermal synthesis and electrochemical properties
    Li, Rui
    Liu, Chun-Yan
    [J]. MATERIALS RESEARCH BULLETIN, 2010, 45 (06) : 688 - 692
  • [10] Use of low-temperature nanostructured CuO thin films deposited by spray-pyrolysis in lithium cells
    Morales, J
    Sánchez, L
    Martín, F
    Ramos-Barrado, J
    Sánchez, M
    [J]. THIN SOLID FILMS, 2005, 474 (1-2) : 133 - 140