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Direct determination of diffusion coefficients of substrate and product by chronoamperometric techniques at microelectrodes for any level of ionic support

机译:通过计时安培技术在微电极上直接测定基质和产物的扩散系数,以测定任何水平的离子载体

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A new method for the determination of the diffusion coefficients of both the substrate, D-S, and the product, D-P, of an electrode process has been developed. The method proposed is based on the analysis of the transient currents and can be applied to some reactions of the type S-S(z) = P-P(z) + ne and, in contrast to the concept based on the steady-state current, to any ratio of the concentrations of supporting electrolyte and substrate. The diffusion coefficients can be evaluated sequentially from the two parts of the double-potential step chronoamperogram, since the magnitude of the normalized chronoamperometric current of the first step depends on the D-S value, while that of the second step is controlled by both D-S and D-P values. The corresponding, easy-to-use equations and procedures are given in the paper. The equations were derived on the basis of the numerical simulation data. The proposed methods of determination of diffusion coefficients for the substrates and products have been examined experimentally with the charged and uncharged ferrocene derivatives under diffusional and mixed diffusion-migration conditions. Only the chronoamperometric D-S values obtained for the substrates could be compared to those determined from the steady-state diffusional current. It was found that for the systems investigated the agreement between these two methods was good. In this limited comparison, the standard deviations for the transient techniques were slightly larger than those obtained for the excess supporting electrolyte steady-state voltammetry. [References: 28]
机译:已经开发出一种用于确定电极工艺的衬底D-S和乘积D-P的扩散系数的新方法。所提出的方法基于对瞬态电流的分析,并且可以应用于SS(z)= PP(z)+ ne类型的某些反应,并且与基于稳态电流的概念相比,该方法可以应用于任何形式的反应。支持电解质和底物的浓度之比。由于第一步的归一化计时电流的大小取决于DS值,而第二步的归一化计时电流的大小由DS和DP共同控制,因此可以从双电位阶跃计时电流图的两个部分顺序地评估扩散系数。价值观。本文给出了相应的,易于使用的方程式和过程。这些方程是根据数值模拟数据得出的。确定的底物和产品的扩散系数测定方法已在扩散和混合扩散迁移条件下用带电和不带电的二茂铁衍生物进行了实验检验。仅将从基板获得的计时电流D-S值与从稳态扩散电流确定的D-S值进行比较。发现对于所研究的系统,这两种方法之间的一致性很好。在这种有限的比较中,瞬态技术的标准偏差略大于过量支持电解质稳态伏安法获得的标准偏差。 [参考:28]

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