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The corrosion of PEM fuel cell catalyst supports and its implications for developing durable catalysts

机译:PEM燃料电池催化剂载体的腐蚀及其对开发耐用催化剂的影响

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摘要

Studying the corrosion behavior of catalyst support materials is significant for understanding the degradation of polymer electrolyte membrane (PEM) fuel cell performance and developing durable electrocatalysts. The oxidation of Vulcan carbon black (the most widely used catalyst support for PEM fuel cells) was investigated using various electrochemical stressing methods (fixed-potential holding vs. potential-step cycling), among which the potential-step cycling was considered to mimic more closely the real drive-cycle operation of vehicle PEM fuel cells. The oxidation of carbon was accelerated under potential-step conditions as compared with the fixed-potential holding condition. Increasing the potential-step frequency or decreasing the lower potential limit in the potential-step can further accelerate the corrosion of carbon. The accelerated corrosion of carbon black was tentatively attributed to the cycle of consumption/regeneration of some easily oxidized species. These findings are being employed to develop a test protocol for fast-screening durable catalyst support.
机译:研究催化剂载体材料的腐蚀行为对于理解聚合物电解质膜(PEM)燃料电池性能的下降以及开发耐用的电催化剂具有重要意义。使用各种电化学应力方法(固定电位保持与电位阶跃循环)研究了Vulcan炭黑(最广泛用于PEM燃料电池的催化剂载体)的氧化的方法,其中电位阶跃循环被认为可以模仿更多与车辆PEM燃料电池的实际驾驶循环密切相关。与固定电位保持条件相比,在电位阶跃条件下加速了碳的氧化。增加电势阶跃频率或降低电势阶跃中的下电势极限可以进一步加速碳的腐蚀。炭黑的加速腐蚀暂时归因于一些易氧化物质的消耗/再生循环。这些发现被用于开发用于快速筛选耐用催化剂载体的测试方案。

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