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正交Li1-xMnO2(0≤x≤0.95)首次充电过程中物相及结构的演变
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河南省教育厅自然科学研究项目(2009A430010); 河南理工大学博士基金(B648238)


Evolutions of Phase and Microstructure of Orthorhombic Li1-xMnO2 (0≤x≤0.95) during the First Charge Process
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    摘要:

    用高精度非原位XRD结合Rietveld精修对正交Li1-xMnO2(简写为o-Li1-xMnO2,0≤x≤0.95)在首次充电(电化学脱锂)过程中物相及结构的演变进行了研究。结果表明,o-LiMnO2电极的电压升高速率与其结构的变化有关;随着电化学脱锂o-LiMnO2发生一系列相变。证实了文献的理论计算和由晶体学推测出的相变过程,即相变产物中先后出现岩盐型锰酸锂和类尖晶石型锰酸锂。相变结束后,产物中只有岩盐型和类尖晶石锰酸锂2种物相。随着充电的进行, 都有 Li+从岩盐型和类尖晶石锰酸锂晶格中脱出,二者晶胞参数逐渐变小,微结构也不断变化

    Abstract:

    Phase transformation of layered orthorhombic Li1-xMnO2 (o-Li1-xMnO2, 0≤x≤0.95) during the first charging process (lithium ion deintercalation in electrochemical system) was investigated using ex-situ high-resolution X-ray diffraction and Rietveld refinement. The results reveal that the increasing speed of the o-LiMnO2 cathode’s voltages is related to the change of its microstructure. And a succession of phase transformation of the o-LiMnO2 occurs in the first lithium deintercalation process. Rock-salt typed lithium manganese oxides emerge followed by the appearance of the spinel-like typed, which confirms the phase transition process from theoretical computation and crystallography conjecture in literatures. Only the above-stated type lithium manganese oxides (originated from o-LiMnO2) exist in the final product. Lithium ions extract from lattices of the rock-salt typed and the spinel-like typed lithium manganese oxides; both the lattice parameters become smaller and their microstructures change with the charge proceeding

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范广新,曾跃武,陈荣升,吕光烈.正交Li1-xMnO2(0≤x≤0.95)首次充电过程中物相及结构的演变[J].稀有金属材料与工程,2011,40(3):424~428.[Fan Guangxin, Zeng Yuewu, Chen Rongsheng, Lü Guanglie. Evolutions of Phase and Microstructure of Orthorhombic Li1-xMnO2 (0≤x≤0.95) during the First Charge Process[J]. Rare Metal Materials and Engineering,2011,40(3):424~428.]
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  • 收稿日期:2010-03-25
  • 最后修改日期:2010-12-20
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