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An electrochemical impedance spectroscopic study of the electronic and ionic transport properties of LiCoO2 cathode

机译:电化学阻抗谱研究LiCoO2阴极的电子和离子输运性质

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摘要

The storage behavior and process of the first delithiation-lithiation of LiCoO2 cathode were investigated by electrochemical impedance spectroscopy (EIS). The electronic and ionic transport properties of LiCoO2 cathode along with variation of electrode potential were obtained in 1 mol.L-1 LiPF6-EC: DMC: DEC electrolyte solution. It was found that after 9 h storage of the LiCoO2 cathode in electrolyte solutions, a new arc appears in the medium frequency range in Nyquist plots of EIS, which increases with increasing the storage time. In the charge/discharge processes, the diameter of the new arc is reversibly changed with electrode potential. Such variation coincides well with the electrode potential dependence of electronic conductivity of the LiCoO2.. Thus this new EIS feature is attributed to the change of electronic conductivity of LixCoO2 during storage of the LiCoO2 cathode in electrolyte solutions, as well as in processes of intercalation-deintercalationtion of lithium ions. It has been revealed that the reversible increase and decrease of the resistance of SEI film in charge-discharge processes can be also ascribed to the variation of electronic conductance of active materials of the LiCoO2 cathode.
机译:通过电化学阻抗谱(EIS)研究了LiCoO2阴极第一次脱锂-锂化的存储行为和过程。在1摩尔的L-1 LiPF6-EC:DMC:DEC电解质溶液中,获得了LiCoO2阴极的电子和离子传输性质以及电极电势的变化。发现在电解质溶液中储存LiCoO2阴极9小时后,EIS奈奎斯特图的中频范围内出现了新的电弧,该电弧随储存时间的增加而增加。在充电/放电过程中,新电弧的直径随电极电势可逆地变化。这种变化与LiCoO2的电导率对电极电位的依赖性很好地吻合。因此,这一新的EIS功能归因于LiCoO2阴极在电解质溶液中存储过程以及插层过程中LixCoO2的电导率变化。锂离子的脱嵌。已经发现,在充放电过程中SEI膜的电阻的可逆增加和减少也可以归因于LiCoO 2阴极活性材料的电子电导的变化。

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