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Complex Capacitance Analysis of Ionic Resistance and Interfacial Capacitance within Cathode Layers of PEMFC and DMFC Electrodes

机译:PEMFC和DMFC电极阴极层内离子电阻和界面电容的复合电容分析

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For PEMFC and DMFC catalyst layers, a complex capacitance analysis of impedance data was developed to evaluate the catalyst/ionomer interfacial capacitance and ionic resistance of ionomer networks, without non-linear data fitting. Assuming no Faradaic reactions, equivalent circuits for the catalyst layers were suggested, and it was confirmed that the plots of the real and imaginary parts as a function of ac frequency are determined by the catalyst/ionomer interfacial capacitances and RC time constants, which are important characteristics for high fuel cell performances. By performing a complex capacitance analysis, the interfacial capacitances and ionic resistances of PEMFC MEAs can be experimentally obtained at various relative humidities, proving that the catalytic activity in fuel cell operation depends on ionic resistances as well as on the catalyst/ionomer interfacial area. In addition, the effects of various MEA preparation methods on the ionomer distributions and DMFC performances were analyzed by a complex capacitance analysis.
机译:对于PEMFC和DMFC催化剂层,开发了对阻抗数据的复合电容分析,以评估离聚物网络的催化剂/离聚物界面电容和离子电阻,而没有非线性数据配件。假设没有游览反应,提出了催化剂层的等效电路,证实了作为AC频率的函数的实部和虚部的曲线由催化剂/离聚物界面电容和RC时间常数确定,这是重要的高燃料电池性能的特征。通过进行复杂的电容分析,可以在各种相对湿度下实验地获得PEMFC MEA的界面电容和离子电阻,证明燃料电池操作中的催化活性取决于离子电阻以及催化剂/离聚物界面区域。此外,通过复杂的电容分析分析了各种MEA制备方法对离聚物分布和DMFC性能的影响。

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