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Mapping of Heterogeneous Catalyst Degradation in Polymer Electrolyte Fuel Cells

机译:聚合物电解质燃料电池中非均相催化剂降解的测绘

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Abstract Pt catalysts in polymer electrolyte fuel cells degrade heterogeneously as the catalyst particles are exposed to local variations throughout the catalyst layer during operation. State‐of‐the‐art analytical techniques for studying degradation of Pt catalysts do not possess fine spatial resolution to elucidate such non‐uniform degradation behavior at a large electrode level. A new methodology is developed to spatially resolve and quantify the heterogeneous Pt catalyst degradation over a large area (several cm2) of aged MEAs based on synchrotron X‐ray microdiffraction. PEFC single cells are aged using voltage cycling as an accelerated stress test and the degradation heterogeneity at a micrometer length scale is visualized by mapping Pt catalyst particle size after voltage cycling. It is demonstrated in detail that the Pt catalyst particle size growth is non‐uniform and follows the flow field geometry. The Pt particle size growth is greater in the area under the flow field land, while it is minimal in the area under the flow field channel. Additional non‐uniformity is observed with the Pt particle size increasing more rapidly at the air outlet area than the Pt particle size at the inlet area.
机译:摘要聚合物电解质燃料电池中的Pt催化剂在操作期间催化剂颗粒暴露于整个催化剂层的局部变化时,使得异均匀地降解。用于研究Pt催化剂的降解的最先进的分析技术不具有精细的空间分辨率,以在大电极水平下阐明这种非均匀的降解行为。开发了一种新的方法来在空间上解析和量化基于同步X射线微缩合的大面积(几CM2)的异质Pt催化剂劣化。 PEFC单细胞使用电压循环时老化,作为加速应力测试,并且通过在电压循环之后通过映射Pt催化剂粒度来观察微米长度尺度下的降解异质性。详细说明了Pt催化剂粒度的生长是非均匀的,并且遵循流场几何形状。在流场土地下的区域中,PT粒度的生长更大,而流场通道下方的区域是最小的。通过PT粒径在空气出口区域处比入口区域处的Pt粒径更快地增加,观察到额外的不均匀性。

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