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A mathematical model for predicting cyclic voltammograms of electronically conductive polypyrrole

机译:预测导电聚吡咯的循环伏安图的数学模型

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摘要

Polypyrrole is an attractive polymer for use as a high-energy-density secondary battery because of its potential as an inexpensive, lightweight, and noncorrosive electrode material. A mathematical model to simulate cyclic voltammograms for polypyrrole is presented. The model is for a conductive porous electrode film on a rotating disk electrode (RDE) and is used to predict the spatial and time dependence of concentration, overpotential, and stored charge profiles within a polypyrrole film. The model includes both faradic and capacitance charge components in the total current density expression.
机译:聚吡咯是一种用作高能量密度二次电池的有吸引力的聚合物,因为它具有廉价,轻巧和无腐蚀性的电极材料的潜力。提出了一种模拟聚吡咯循环伏安图的数学模型。该模型用于旋转圆盘电极(RDE)上的导电多孔电极膜,用于预测聚吡咯膜内浓度,超电势和存储的电荷分布的空间和时间依赖性。该模型在总电流密度表达式中同时包含了法拉第和电容电荷分量。

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