首页> 外文期刊>Journal of Electroanalytical Chemistry: An International Journal Devoted to All Aspects of Electrode Kinetics, Interfacial Structure, Properties of Electrolytes, Colloid and Biological Electrochemistry >Dicusion of the potential step method for the determination of the diffusion coefficients of guest species in host materials Part I. Influence of charge transfer kinetics and ohmic potential drop
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Dicusion of the potential step method for the determination of the diffusion coefficients of guest species in host materials Part I. Influence of charge transfer kinetics and ohmic potential drop

机译:确定基质材料中客体物质扩散系数的势步方法的讨论第一部分:电荷转移动力学和欧姆电势降的影响

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摘要

Theoretical expressions are given for the output response of ion-insertion electrodes to a potential step assuming linear diffusion, restricted (blocking) diffusion conditions and possible limitations by insertion reaction kinetics. The effects of ohmic potential drop are also investigated. It is shown that slow interfacial charge transfer cannot be distinguished from ohmic drop effects, in contrast to impedance diagrams where ohmic drop and charge transfer effects can be separated. The influence of potential step amplitude is discussed. Chronocoulometric analysis is dealt with considering diffusion controlled processes as well as mixed control conditions. The error in the determination of the chemical diffusion coefficient of a guest species from chronoamperometric data, when using the limiting Cottrell equation in the short-time range or the exponential decay of current in the long-time domain, is evaluated in relation to insertion reaction kinetics and ohmic potential drop. Determination of the diffusion coefficients by curve fitting is also envisaged using the current versus time and charge versus time relationships. Finally, previous results in the electrochemical literature are discussed in the light of the theoretical derivations proposed in this paper.
机译:给出了离子插入电极对电势阶跃的输出响应的理论表达式,其中假设了线性扩散,受限制的(阻断)扩散条件以及可能受到插入反应动力学的限制。还研究了欧姆电位降的影响。结果表明,与可以将欧姆降和电荷转移效应分开的阻抗图相反,缓慢的界面电荷转移不能与欧姆滴效应区分开。讨论了潜在步幅的影响。计时库仑分析应考虑扩散控制过程以及混合控制条件。当在短时间范围内使用限制Cottrell方程或在长时域中电流的指数衰减时,根据计时安培数据确定来宾物种的化学扩散系数时的误差将与插入反应相关地进行评估动力学和欧姆电位下降。还设想了使用电流对时间和电荷对时间的关系,通过曲线拟合确定扩散系数。最后,根据本文提出的理论推导讨论了电化学文献中的先前结果。

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