In this work, we synthesized nano-particles (20-80 nm) of Li2MnO3 using the self-combustion reaction and studied the electrochemical activity of electrodes prepared from this nano-material at 30, 45, and 60 degrees C. It was shown that the first Li-extraction from nano-Li2MnO3 occurs at much lower potentials (by 180-360 mV) in comparison with micron-sized Li2MnO3 electrodes. This can be associated with the higher surface-to-volume ratio, much shorter the diffusion path and the increased surface concentration of the electrochemically active sites. On the basis of magnetic susceptibility studies of nano-Li2MnO3 we proposed a model of disordered surface layer, containing Mn3+ or Mn2+ ions, both at low spin state, at the surface of these nano-particles. From the results of structural analysis (by X-ray and electron diffraction and vibrational Raman spectroscopy) of galvanostatically cycled nano-Li2MnO3 electrodes in Li-cells we came to a conclusion of partial transition of layered LiMO2 to spinel-type ordering. (C) 2013 Elsevier Ltd. All rights reserved.
机构:Konkuk Univ, Dept Adv Fus Technol, Ctr Emerging Wireless Power Transmiss Technol, Seoul 143701, South Korea
Choi, SH
Kim, J
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机构:Konkuk Univ, Dept Adv Fus Technol, Ctr Emerging Wireless Power Transmiss Technol, Seoul 143701, South Korea
Kim, J
Yoon, YS
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Konkuk Univ, Dept Adv Fus Technol, Ctr Emerging Wireless Power Transmiss Technol, Seoul 143701, South KoreaKonkuk Univ, Dept Adv Fus Technol, Ctr Emerging Wireless Power Transmiss Technol, Seoul 143701, South Korea
机构:Konkuk Univ, Dept Adv Fus Technol, Ctr Emerging Wireless Power Transmiss Technol, Seoul 143701, South Korea
Choi, SH
Kim, J
论文数: 0引用数: 0
h-index: 0
机构:Konkuk Univ, Dept Adv Fus Technol, Ctr Emerging Wireless Power Transmiss Technol, Seoul 143701, South Korea
Kim, J
Yoon, YS
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h-index: 0
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Konkuk Univ, Dept Adv Fus Technol, Ctr Emerging Wireless Power Transmiss Technol, Seoul 143701, South KoreaKonkuk Univ, Dept Adv Fus Technol, Ctr Emerging Wireless Power Transmiss Technol, Seoul 143701, South Korea