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Integrated Description of Electrode/Electrolyte Interfaces Based on Equivalent Circuits and Its Verification Using Impedance Measurements

机译:基于等效电路的电极/电解质界面的集成描述及其使用阻抗测量的验证

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An integrated theory describing both faradaic and nonfaradaic currents obtained upon potential step at an electrified electrode/electrolyte interface has been developed based on equivalent circuits that had been used to explain electrochemical reactions and experimentally verified. The faradaic current is shown to consist of the mass transport-dependent and -independent parts, which is in general agreement with the expression previously derived from the diffusion equations. The decay of the capacitive current is determined by the time constant represented by the product of the resistance obtained from the parallel connection of the solution and polarization resistances and the double layer capacitance; this is not consistent with the current understanding of the capacitive current decay, which takes into account the double layer capacitance and the solution resistance only. Many insights into the electron-transfer reactions are discussed based on the interpretation of impedance representation of the system, which would not have been possible without the present theory.
机译:基于用于解释电化学反应并经过实验验证的等效电路,已经开发出了一种综合理论,描述了在带电电极/电解质界面上电位阶跃时获得的法拉第电流和非法拉第电流。法拉第电流被显示为由质量传输相关的部分和与质量无关的部分组成,这与先前从扩散方程得出的表达式大体上一致。电容性电流的衰减由时间常数决定,该时间常数由溶液和极化电阻的并联连接的电阻与双层电容的乘积表示;这与当前对电容性电流衰减的理解不一致,后者仅考虑了双层电容和溶液电阻。基于系统阻抗表示的解释,讨论了对电子转移反应的许多见解,如果没有本理论,这是不可能的。

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