3d Transition-Metal Oxides as Anode Micro/Nano-Materials for Lithium Ion Batteries

被引:0
|
作者
Chen Xin [2 ]
Zhang Naiqing [1 ,3 ]
Sun Kening [1 ,3 ]
机构
[1] Harbin Inst Technol, Acad Fundamental & Interdisciplinary Sci, Harbin 150001, Peoples R China
[2] Harbin Inst Technol, Dept Chem, Harbin 150001, Peoples R China
[3] Harbin Inst Technol, State Key Lab Urban Water Resource & Environm, Harbin 150090, Peoples R China
关键词
lithium-ion batteries; transition-metal oxides; micro/nano-structure; composites; NEGATIVE-ELECTRODE MATERIALS; ELECTROCHEMICAL PERFORMANCE; ALPHA-FE2O3; NANORODS; CO3O4; NANOTUBES; HOLLOW SPHERES; GAS SENSOR; CARBON; CUO; COMPOSITE; STORAGE;
D O I
暂无
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Compared with the traditional carbon materials for lithium-ion batteries, 3d transition-metal oxides (MxOy, where M is Co, Fe, Cu or Ni) as anode materials have been attracting intensive attention in recent years due to their higher energy capacity, higher recharging rates and safety to meet the ever-going demand for lithium-ion batteries with energy density, power density, cyclability and safety to be more suitable for its new applications in many fields, which include portable electronic consumer devices, electric vehicles, large-scale electricity storage in smart or intelligent grids, etc. In this review, firstly a general introduction is given to the charge-discharge mechanism of 3d MxOy, anode materials. Then, a discussion in detail is made to the relationship between the electrochemical properties and a variety of structural characteristics of 3d MxOy and composite anode materials, in light of the structural characteristics of 0 dimensional (0 D), 1D, 2D, 3D nano-structures, hollow, core/shell, micro/nano-structures, and so on. More over, some analyses are focused mainly on various strategies used to fabricate different 3d MxOy, anode materials. Finally, it is highlighted to the future trends and prospects in the development of 3d MxOy, anode micro/nano- materials.
引用
收藏
页码:2045 / 2054
页数:10
相关论文
共 80 条
  • [1] Aric QAS, 2005, NAT MATER, V4, P366
  • [2] Building better batteries
    Armand, M.
    Tarascon, J. -M.
    [J]. NATURE, 2008, 451 (7179) : 652 - 657
  • [3] Synthesis, characterization, and li-electrochemical performance of highly porous Co3O4 powders
    Binotto, G.
    Larcher, D.
    Prakash, A. S.
    Urbina, R. Herrera
    Hegde, M. S.
    Tarascon, J-M.
    [J]. CHEMISTRY OF MATERIALS, 2007, 19 (12) : 3032 - 3040
  • [4] Nanomaterials for rechargeable lithium batteries
    Bruce, Peter G.
    Scrosati, Bruno
    Tarascon, Jean-Marie
    [J]. ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2008, 47 (16) : 2930 - 2946
  • [5] An understanding of anomalous capacity of nano-sized CoO anode for advanced Li-ion battery
    Chen, C. H.
    Hwang, B. J.
    Do, J. S.
    Weng, J. H.
    Venkateswarlu, M.
    Cheng, M. Y.
    Santhanam, R.
    Ragavendran, K.
    Lee, J. F.
    Chen, J. M.
    Liu, D. G.
    [J]. ELECTROCHEMISTRY COMMUNICATIONS, 2010, 12 (03) : 496 - 498
  • [6] Some new facts on electrochemical reaction mechanism for transition metal oxide electrodes
    Chen, Chunhua
    Ding, Ning
    Wang, Long
    Yu, Yan
    Lieberwirth, Ingo
    [J]. JOURNAL OF POWER SOURCES, 2009, 189 (01) : 552 - 556
  • [7] α-Fe2O3 nanotubes in gas sensor and lithium-ion battery applications
    Chen, J
    Xu, LN
    Li, WY
    Gou, XL
    [J]. ADVANCED MATERIALS, 2005, 17 (05) : 582 - +
  • [8] Electrochemical performance of polycrystalline CuO nanowires as anode material for Li ion batteries
    Chen, L. B.
    Lu, N.
    Xu, C. M.
    Yu, H. C.
    Wang, T. H.
    [J]. ELECTROCHIMICA ACTA, 2009, 54 (17) : 4198 - 4201
  • [9] Mesoporous carbon-encapsulated NiO nanocomposite negative electrode materials for high-rate Li-ion battery
    Cheng, Ming-Yao
    Hwang, Bing-Joe
    [J]. JOURNAL OF POWER SOURCES, 2010, 195 (15) : 4977 - 4983
  • [10] A study of the mechanism of the electrochemical reaction of lithium with CoO by two-dimensional soft X-ray absorption spectroscopy (2D XAS), 2D Raman, and 2D heterospectral XAS-Raman correlation analysis
    Choi, HC
    Jung, YM
    Noda, I
    Kim, SB
    [J]. JOURNAL OF PHYSICAL CHEMISTRY B, 2003, 107 (24): : 5806 - 5811