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 >Cyclic voltammetry in weakly supported media The reduction of the cobaltocenium cation in acetonitrile - Comparison between theory and experiment
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Cyclic voltammetry in weakly supported media The reduction of the cobaltocenium cation in acetonitrile - Comparison between theory and experiment

机译:弱支撑介质中的循环伏安法乙腈中钴ce阳离子的还原-理论与实验的比较

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摘要

Experimental cyclic voltammetry at a hemispherical mercury microelectrode in acetonitrile solution containing 3 mM cobaltocenium hexafluorophosphate and different concentrations of supporting electrolyte is compared with theoretical simulations using the Nernst-Planck-Poisson system of equations without the assumption of electroneutrality and is found in to be in good agreement Deviations from diffusion-only theory are analyzed in terms of migration and potential drop in the solution as a function of the concentration of supporting electrolyte We are unaware of previous reports in which non-steady-state cyclic voltammetry without supporting electrolyte has been quantitatively and fully simulated so this work opens up a new area for voltammetry.
机译:在不假设电子中性的情况下,使用Nernst-Planck-Poisson方程组,将半球形汞微电极在含有3 mM六氟磷酸钴钴和不同浓度的支持电解质的乙腈溶液中的实验循环伏安法与理论模拟进行了比较,发现该方法良好一致性仅根据扩散和溶液中电势下降作为支持电解质浓度的函数来分析与仅扩散理论的偏差。我们不了解以前的报告,其中对没有支持电解质的非稳态循环伏安法进行了定量分析,完全模拟,因此这项工作为伏安法开辟了一个新领域。

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