介电谱
循环伏安法
电极
分析化学(期刊)
石墨
材料科学
电化学
扩散
自放电
阿累尼乌斯方程
插层(化学)
化学
复合材料
活化能
热力学
无机化学
有机化学
物理化学
物理
电解质
作者
Mikhael D. Levi,C. Wang,Doron Aurbach
摘要
We propose a new method for the kinetic treatment of self-discharge of intercalation electrodes based on a combination of cyclic voltammetry (CV) and chronopotentiometry under net zero current conditions. This was applied to composite graphite electrodes in 1 M dimethyl polycarbonate at four different temperatures from 25 to 80°C, and was quantitatively proved for small degrees of self-discharge. The degree of self-discharge and the self-discharge current, were shown to substantially increase with the increase in temperature. Self-discharge experiments, which continued for 50 h, were complemented by detailed impedance characterizations of the gradually discharged electrodes, which show an increase in the diameter of the high-frequency semicircles (HFS) with open-circuit time at different temperatures. A comparison between Arrhenius plots for the HFS, the chemical diffusion coefficient, and the self-discharge current may create a basis for a new method of "electrochemical temperature spectroscopy" for identification of the nature of the rate-determining step of self-discharge for different temperature ranges. Our results are discussed in light of studies by others of self-discharge phenomena and mechanisms (Li-graphite electrodes). © 2004 The Electrochemical Society. All rights reserved.
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