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Ex situ testing method to characterize cathode catalysts degradation under simulated start-up/shut-down conditions - A contribution to polymer electrolyte membrane fuel cell benchmarking

机译:在模拟启动/关闭条件下表征阴极催化剂降解的异位测试方法-对聚合物电解质膜燃料电池基准测试的贡献

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摘要

The paper introduces a novel ex situ test procedure that was developed to quantify the ageing of catalyst layers under critical automotive fuel cell conditions during start-up/shut-down phases. It is based on liquid electrolyte measurements, using a thin film catalyst electrode. The overall degradation under start-up/shut-down conditions is assessed by the decay in electrochemically active surface area. Furthermore, contributions from different processes leading to catalyst degradation such as Pt dissolution and Pt particle growth/agglomeration can be separated. Finally, using a differential electrochemical mass spectrometry (DEMS) set-up, also the extent and role of carbon corrosion under these conditions is accessible. The potential of this, compared to in situ fuel cell stack tests, rather fast and less costly ex situ test procedure is demonstrated in measurements using a commercial, graphitized carbon-supported Pt catalyst. The results of the degradation test and in particular the contributions from different degradation processes such as Pt dissolution, Pt particle growth/agglomeration and carbon corrosion during different stages of catalyst ageing are discussed.
机译:本文介绍了一种新颖的异地测试程序,该程序用于量化在启动/关闭阶段关键汽车燃料电池条件下催化剂层的老化情况。它基于使用薄膜催化剂电极的液体电解质测量结果。通过电化学活性表面积的衰减来评估在启动/关闭条件下的总体降解。此外,可以分离出导致催化剂降解的不同过程的贡献,例如Pt溶解和Pt颗粒生长/附聚。最后,使用差分电化学质谱(DEMS)设置,在这些条件下碳腐蚀的程度和作用也是可访问的。与原位燃料电池堆测试相比,这种潜力具有相当大的潜力,并且使用商业化的石墨化碳载Pt催化剂进行测量,证明了原位测试程序的成本较低。讨论了降解测试的结果,特别是来自不同降解过程(例如Pt溶解,Pt颗粒生长/凝聚和催化剂老化的不同阶段的碳腐蚀)的贡献。

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