CoO2, the end member of the LixCoO2 solid solution

被引:900
|
作者
Amatucci, GG
Tarascon, JM
Klein, LC
机构
[1] RUTGERS STATE UNIV,PISCATAWAY,NJ 08855
[2] UPJV,F-80000 AMIENS,FRANCE
关键词
D O I
10.1149/1.1836594
中图分类号
O646 [电化学、电解、磁化学];
学科分类号
081704 ;
摘要
While LiCoO2 has been widely studied in the past 15 years as a promising positive electrode material in lithium-ion batteries, suprisingly, many questions are still unanswered concerning the electrochemical characteristics of the lithium intercalation material. Among these is the existence of an end member CoO2 phase on complete lithium deintercalation. The use of dry plastic lithium-ion battery technology has allowed the construction of an in situ x-ray diffraction cell which allows structural characterization of Li2CoO2 at x values at and close to 0 for the first time. Instead of the expected destruction of the core structure of LiCoO2 by a drastic increase in structural disorder, an increase in crystallographic quality occurred as It approached 0. For the first time, the end member CoO2 phase was isolated. This phase is a hexagonal single-layered phase (O1) believed to be isostructural with CdI2 and has lattice parameters of a = 2.822 Angstrom and c = 4.29 Angstrom. The phase converted immediately back to a three-layer (O3) delithiated Li2CoO2 type phase on lithium reinsertion. Electrochemical studies show that 95% of lithium can be reinserted back into the structure on complete delithiation and reversible cycling properties are maintained when cycled back to 4.2 V.
引用
收藏
页码:1114 / 1123
页数:10
相关论文
共 50 条
  • [21] Memristive and neuromorphic behavior in a LixCoO2 nanobattery
    V. H. Mai
    A. Moradpour
    P. Auban Senzier
    C. Pasquier
    K. Wang
    M. J. Rozenberg
    J. Giapintzakis
    C. N. Mihailescu
    C. M. Orfanidou
    E. Svoukis
    A. Breza
    Ch B. Lioutas
    S. Franger
    A. Revcolevschi
    T. Maroutian
    P. Lecoeur
    P. Aubert
    G. Agnus
    R. Salot
    P. A. Albouy
    R. Weil
    D. Alamarguy
    K. March
    F. Jomard
    P. Chrétien
    O. Schneegans
    Scientific Reports, 5
  • [22] Resistive Switching Phenomena in LixCoO2 Thin Films
    Moradpour, Alec
    Schneegans, Olivier
    Franger, Sylvain
    Revcolevschi, Alexandre
    Salot, Raphael
    Auban-Senzier, Pascale
    Pasquier, Claude
    Svoukis, Efthymios
    Giapintzakis, John
    Dragos, Oana
    Ciomaga, Vasile-Cristian
    Chretien, Pascal
    ADVANCED MATERIALS, 2011, 23 (36) : 4141 - +
  • [23] THE INCREASE OF STABILITY OF LIXCOO2 ELECTRODES OF COINTERCALATED SODIUM
    BLUDSKA, J
    VONDRAK, J
    STOPKA, P
    JAKUBEC, I
    JOURNAL OF POWER SOURCES, 1992, 39 (03) : 313 - 322
  • [24] Electronic structure of defective lithium cobaltites LixCoO2
    V. R. Galakhov
    M. Neumann
    D. G. Kellerman
    Applied Physics A, 2009, 94 : 497 - 500
  • [25] An electrochemical investigation into the lithium insertion properties of LixCoO2
    Barker, J
    Pynenburg, R
    Koksbang, R
    Saidi, MY
    ELECTROCHIMICA ACTA, 1996, 41 (15) : 2481 - 2488
  • [26] Operando magnetometry on LixCoO2 during charging/discharging
    Stefan Topolovec
    Harald Kren
    Gregor Klinser
    Stefan Koller
    Heinz Krenn
    Roland Würschum
    Journal of Solid State Electrochemistry, 2016, 20 : 1491 - 1496
  • [27] Ab initio calculation of the LixCoO2 phase diagram
    Van der Ven, A
    Aydinol, MK
    Ceder, G
    MATERIALS FOR ELECTROCHEMICAL ENERGY STORAGE AND CONVERSION II-BATTERIES, CAPACITORS AND FUEL CELLS, 1998, 496 : 121 - 126
  • [28] A first-order Mott transition in LixCoO2
    Marianetti, CA
    Kotliar, G
    Ceder, G
    NATURE MATERIALS, 2004, 3 (09) : 627 - 631
  • [29] Magnetic and electronic properties of LixCoO2 single crystals
    Miyoshi, K.
    Iwai, C.
    Kondo, H.
    Miura, M.
    Nishigori, S.
    Takeuchi, J.
    PHYSICAL REVIEW B, 2010, 82 (07):
  • [30] Characterization and electrode behavior of LixCoO2(x>1)
    N. Imanishi
    M. Yamade
    T. Ichikawa
    A. Hirano
    Y. Takeda
    Ionics, 2002, 8 : 100 - 107