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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 >DIGITAL SIMULATION OF CHRONOPOTENTIOMETRIC AND STEADY-STATE VOLTAMMETRIC CURVES AT MICROELECTRODES IN THE PRESENCE OF A LOW CONCENTRATION OF SUPPORTING ELECTROLYTE
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DIGITAL SIMULATION OF CHRONOPOTENTIOMETRIC AND STEADY-STATE VOLTAMMETRIC CURVES AT MICROELECTRODES IN THE PRESENCE OF A LOW CONCENTRATION OF SUPPORTING ELECTROLYTE

机译:电解质浓度低时微电极上的计时电位和稳态伏安曲线的数字模拟

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A simulation scheme for the calculation of theoretical chronopotentiograms at microelectrodes in solutions containing low amounts of supporting electrolyte is presented. The scheme allows computation of the changes in the concentration profiles of the substrates, products and the supporting electrolyte ions with time. The electrode potentials that are established after reaching the steady-state, together with the appropriate current intensities, can be used for constructing the steady-state voltammograms. The simulation of the mixed diffusional and migrational transport is based on the Crank-Nicolson method with an exponentially expanding time and space grids. The scheme does not impose any limitations on diffusion coefficients and it can be applied both to simple electrode reactions (one reactant-one product) and more complicated reactions under the assumption that the double-layer thickness is small in comparison to the diffusion layer. Five simple types of electrode reactions and an example of a more complicated scheme were considered. The results obtained demonstrate that the dependence of the steady-state limiting current ont he support ratio (c(supp.e./)c(subst)) depends not only on the charge of the reactant and the product but also on the diffusion coefficient ratio of the substrate and product. If the difference between diffusion coefficients is large, the predictions based on simpler theories available in literature can become invalid. [References: 27]
机译:提出了一种模拟方案,用于计算含少量支持电解质的溶液中微电极上的理论计时电位图。该方案允许计算基质,产物和支持电解质离子的浓度分布随时间的变化。达到稳态后建立的电极电势以及适当的电流强度可用于构建稳态伏安图。混合扩散和迁移输运的模拟是基于Crank-Nicolson方法的,其中时空网格呈指数增长。该方案对扩散系数没有任何限制,并且在双层厚度比扩散层小的前提下,它既可以应用于简单的电极反应(一种反应物,一种产物),也可以应用于更复杂的反应。考虑了五种简单类型的电极反应和一个更复杂方案的示例。获得的结果表明,稳态极限电流与支撑比(c(supp.e ./)c(subst))的相关性不仅取决于反应物和产物的电荷,还取决于扩散系数底物与产品的比例。如果扩散系数之间的差异较大,则基于文献中可用的较简单理论的预测可能会无效。 [参考:27]

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