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Numerical investigation of transient current density distributions for multi-ion electrolytes at a rotating disk electrode

机译:旋转圆盘电极上多离子电解质瞬态电流密度分布的数值研究

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摘要

A versatile model for the simulation of transient multiion transport and reaction processes is applied to investigate current density distributions over a rotating disk electrode for linear voltammetric sweep experiments. The model accounts for ion transport by convection, diffusion, and migration, in combination with Butler-Volmer type electrode reactions. For several process conditions (reversible and irreversible reactions, excess or lack of supporting electrolyte), the current density distribution over the disk surface is examined and the transient current response is compared to results from the more commonly used one-dimensional axial approach. The impact of migrational effects on the nonuniform local process conditions over the disk surface is illustrated, and the resulting effect on the current peak height, width, and position is investigated. A mathematical correlation for the current peak height as a function of the reacting ion transference number is established.
机译:一个通用的瞬态多离子迁移和反应过程仿真模型被用于研究线性伏安扫描实验中旋转圆盘电极上的电流密度分布。该模型说明了通过对流,扩散和迁移结合Butler-Volmer型电极反应进行的离子迁移。对于几种工艺条件(可逆和不可逆反应,支持电解质过多或缺乏),将检查磁盘表面的电流密度分布,并将瞬态电流响应与更常用的一维轴向方法的结果进行比较。说明了迁移效应对磁盘表面非均匀局部处理条件的影响,并研究了对电流峰值高度,宽度和位置的最终影响。建立了当前峰高与反应离子转移数的函数的数学相关性。

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