首页> 外文期刊>Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology >Electrochemical characterization of solid state reaction kinetics using voltammetry of microparticles. Application to thermal decomposition of iron chromites
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Electrochemical characterization of solid state reaction kinetics using voltammetry of microparticles. Application to thermal decomposition of iron chromites

机译:使用微粒伏安法对固态反应动力学进行电化学表征。在亚铬酸铁热分解中的应用

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摘要

The voltammetry of microparticles is applied to characterize the electrocatalytic ability of solids towards selected electrochemical processes. The variation of catalytic currents under fixed electrochemical conditions permits to obtain composition/time data to be fitted with solid state kinetic models. This methodology is applied to analyze the thermal decomposition of magnesiochromite ferroan and chlorite chromian standards and a South Africa iron chromite ore on the basis of the significant catalytic effect on the electrochemical oxygen evolution reaction (OER) in aqueous alkaline media at mineral-modified graphite electrodes. Measurement of the time variation of catalytic current for OER provides a direct estimate of fractional conversion of the reactant in the course of the reaction of thermal decomposition enabling for testing different reaction kinetic models.
机译:应用微粒伏安法来表征固体对所选电化学过程的电催化能力。在固定的电化学条件下,催化电流的变化允许获得与固态动力学模型相适应的组成/时间数据。该方法基于矿物改性石墨电极在碱性水溶液中对电化学氧析出反应(OER)的显着催化作用,因此可用于分析镁铬铁矿和亚氯酸铬标准品以及南非铬铁矿的热分解。 。测量用于OER的催化电流的时间变化可直接估算反应物在热分解反应过程中的分数转化率,从而可以测试不同的反应动力学模型。

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