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Mass transport to and within porous electrodes. Linear sweep voltammetry and the effects of pore size: The prediction of double peaks for a single electrode process

机译:传质到多孔电极中和内部。线性扫描伏安法和孔径的影响:单电极工艺双峰的预测

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摘要

We simulate an electrode modified with a conducting porous film, where the electrolysis occurs both at the surface of the film and within it, in order to study the effect of pore size on the peak current in linear sweep voltammetry. For redox systems with reversible electrode kinetics we find that for both very large and very small pores the peak current is given by the Randles-?ev ik equation. For intermediate pore size, however, we observe a greatly enhanced peak current. When considering systems with irreversible electrode kinetics a very similar pattern is observed, except for the case of very small pores. In this case the peak current is actually smaller than expected from the Randles-?ev ik equation because the peak splits into two distinct peaks; one due to "thin layer" diffusion within the film and another caused by planar diffusion from bulk solution. The experimental implications of this observation are significant given the widespread use of modified electrodes for analysis.
机译:为了模拟线性扫描伏安法中孔径对峰值电流的影响,我们模拟了用导电多孔膜修饰的电极,其中电解发生在膜的表面及其内部。对于具有可逆电极动力学的氧化还原系统,我们发现对于很大和很小的孔,峰值电流都由Randles-?ev ik方程给出。但是,对于中等孔径,我们观察到峰值电流大大提高。当考虑具有不可逆电极动力学的系统时,除了非常小的孔的情况外,观察到非常相似的模式。在这种情况下,峰值电流实际上比Randles-?ev ik方程所期望的要小,因为该峰值分裂为两个不同的峰值。一种是由于薄膜中的“薄层”扩散,另一种是由于本体溶液的平面扩散。考虑到修饰电极的广泛使用,该观察结果的实验​​意义重大。

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