首页> 外文会议>Polymer Electrolyte Fuel Cell Symposium;Meeting of the Electrochemical Society >MEA Pt/C Cathode Catalyst Degradation during Repeated Anode Gas Exchange Cycles: In-Situ XAFS, STEM-EDS and Electrochemical Analysis
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MEA Pt/C Cathode Catalyst Degradation during Repeated Anode Gas Exchange Cycles: In-Situ XAFS, STEM-EDS and Electrochemical Analysis

机译:MEA PT / C阴极催化剂催化剂在重复阳极气体交换循环期间降解:原位XAF,茎EDS和电化学分析

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The effects of repeated start-up/shut-down cycles on degradation of Pt/C cathode catalysts in polymer electrolyte fuel cells (PEFC) were investigated by repeated anode gas exchange (AGEX) cycles. The degradation of MEA Pt/C catalysts during the AGEX cycles was examined at three different areas of the MEAs by in-situ XAFS and STEM-EDS. The steady decreases of the electrochemical surface area and ORR performance by the AGEX processes were observed. In contrast to the aspects averaged over the whole MEA areas, in-situ XAFS can provide the positiondependent structural and electronic information on Pt nanoparticles at different positions in the MEA during the AGEX cycles. The white line peak intensity in in-situ XANES spectra at Pt LIII-edge decreased in the order for the MEA regions, top > bottom ≥ middle. STEM images showed that Pt particles dropped off from the carbon supporting particles in the cathode catalyst layer and large cracks and voids formed in the top area of the MEA. These aspects of the in-situ XANES spectra and STEM images are correlated with each other and the MEA degradation.
机译:反复阳极气体交换(Agex)循环研究了重复启动/关闭循环对聚合物电解质燃料电池(PEFC)中Pt / C阴极催化剂的降解的影响。通过原位XAF和茎干在测量的三个不同区域检查MEA Pt / C催化剂的降解。观察到通过AGAx过程的电化学表面积和ORR性能的稳定降低。相反,与整个MEA区​​域的平均方面相比,原位XAF可以在Adex循环期间在MEA中的不同位置处提供关于PT纳米颗粒的位置依赖性结构和电子信息。 Pt Lii-Edge的原位Xanes光谱中的白线峰强度在MEA区域的顺序下减少,顶部>底部≥中间。茎图像显示Pt颗粒从阴极催化剂层中的碳载体颗粒中掉下来,并且在MEA的顶部区域中形成的大裂缝和空隙。原位XAN谱和茎图像的这些方面彼此相关,并且MEA劣化是相关的。

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