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首页> 外文期刊>Journal of power sources >A catalyst layer optimisation approach using electrochemical impedance spectroscopy for PEM fuel cells operated with pyrolysed transition metal-N-C catalysts
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A catalyst layer optimisation approach using electrochemical impedance spectroscopy for PEM fuel cells operated with pyrolysed transition metal-N-C catalysts

机译:使用电化学阻抗谱的PEM燃料电池热解过渡金属-N-C催化剂的催化剂层优化方法

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The effect of the ionomer to carbon (I/C) ratio on the performance of single cell polymer electrolyte fuel cells is investigated for three different types of non-precious metal cathodic catalysts. Polarisation curves as well as impedance spectra are recorded at different potentials in the presence of argon or oxygen at the cathode and hydrogen at the anode. It is found that a optimised ionomer content is a key factor for improving the performance of the catalyst. Non-optimal ionomer loading can be assessed by two different factors from the impedance spectra. Hence this observation could be used as a diagnostic element to determine the ideal ionomer content and distribution in newly developed catalyst-electrodes. An electrode morphology based on the presence of inhomogeneous resistance distribution within the porous structure is suggested to explain the observed phenomena. The back-pressure and relative humidity effect on this feature is also investigated and supports the above hypothesis. We give a simple flowchart to aid optimisation of electrodes with the minimum number of trials. (C) 2016 The Authors. Published by Elsevier B.V.
机译:对于三种不同类型的非贵金属阴极催化剂,研究了离聚物与碳(I / C)之比对单电池聚合物电解质燃料电池性能的影响。在阴极存在氩气或氧气而在阳极存在氢的情况下,记录了在不同电势下的极化曲线以及阻抗谱。发现优化的离聚物含量是改善催化剂性能的关键因素。非最佳离聚物负载可以通过阻抗谱中的两个不同因素来评估。因此,该观察结果可以用作诊断元素,以确定新开发的催化剂电极中理想的离聚物含量和分布。建议基于多孔结构内存在不均匀电阻分布的电极形态来解释观察到的现象。还研究了背压和相对湿度对此功能的影响,并支持上述假设。我们给出一个简单的流程图,以最少的试验次数帮助优化电极。 (C)2016作者。由Elsevier B.V.发布

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