首页> 外文期刊>Electrochimica Acta >Effect of Nafion ionomer and catalyst in cathode layers for the direct formic acid fuel cell with complex capacitance analysis on the ionic resistance
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Effect of Nafion ionomer and catalyst in cathode layers for the direct formic acid fuel cell with complex capacitance analysis on the ionic resistance

机译:复电容分析法对直接甲酸燃料电池阴极层中Nafion离聚物和催化剂的影响

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摘要

Using platinum (Pt) black and carbon-supported Pt (Pt/C) as cathode catalysts, membrane-electrode assemblies (MEAs) were fabricated with various Nafion ionomer content, and their direct formic acid fuel cell (DFAFC) performances were investigated. In MEAs incorporating Pt black catalysts, the current density at 0.6V was highest at ionomer/catalyst volume ratio of 1.0, which was consistent with the electrochemical active area (EAS) variation measured by cyclic voltammetry. However, the current density measured at 0.3 V, the cell performance increased with Nafion ionomer content, especially at low ionomer loading, indicating that proton transport rate played an important role. The variation in ionic resistance (R_(ion)) of cathode layers with Nafion ionomer content was experimentally confirmed by using the complex capacitance analysis of impedance data implemented with nitrogen (cathodes)/hydrogen (anodes) atmosphere. For Pt/C, the layer thickness and EAS of cathode were larger than those of MEA cathode using Pt black; and the current densities at 0.6V were lower than those of Pt black, suggesting that smaller fraction of EAS was utilized.
机译:以铂(Pt)黑和碳载铂(Pt / C)为阴极催化剂,制备了具有不同Nafion离聚物含量的膜电极组件(MEA),并研究了其直接甲酸燃料电池(DFAFC)的性能。在装有Pt黑催化剂的MEA中,离聚物/催化剂的体积比为1.0时,在0.6V时的电流密度最高,这与通过循环伏安法测得的电化学活性面积(EAS)变化一致。然而,在0.3 V下测得的电流密度下,电池性能随Nafion离聚物的含量而增加,尤其是在低离聚物负载下,这表明质子传输速率起着重要作用。通过使用在氮(阴极)/氢(阳极)气氛下实现的阻抗数据的复电容分析,实验证实了Nafion离聚物含量对阴极层离子电阻(R_(ion))的影响。对于Pt / C,阴极的层厚度和EAS大于使用Pt黑的MEA阴极的层厚度和EAS;并且在0.6V时的电流密度低于Pt黑色,这表明使用了较小的EAS。

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