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Transport and Electrochemical Interface Properties of Ionomers in Low-Pt Loading Catalyst Layers: Effect of Ionomer Equivalent Weight and Relative Humidity

机译:低PT加载催化剂层中离聚物的运输和电化学界面性质:离聚物当量重量和相对湿度的影响

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摘要

Catalyst layer (CL) ionomers control several transport and interfacial phenomena including long-range transport of protons, local transport of oxygen to Pt catalyst, effective utilization of Pt catalyst, electrochemical reaction kinetics and double-layer capacitance. In this work, the variation of these properties, as a function of humidity, for CLs made with two ionomers differing in side-chain length and equivalent weight, Nafion-1100 and Aquivion-825, was investigated. This is the first study to examine humidity-dependent oxygen reduction reaction (ORR) kinetics in-situ for CLs with different ionomers. A significant finding is the observation of higher ORR kinetic activity (A/cm ) for the Aquivion-825 CL than for the Nafion-1100 CL. This is attributed to differences in the interfacial protonic concentrations at Pt/ionomer interface in the two CLs. The differences in Pt/ionomer interface is also noted in a higher local oxygen transport resistance for Aquivion-825 CLs compared to Nafion-1100 CLs, consistent with stronger interaction between ionomer and Pt for ionomer with more acid groups. Similar dependency on Pt utilization (ratio of electrochemically active area at any relative humidity (RH) to that at 100% RH) as a function of RH is observed for the two CLs. As expected, strong influence of humidity on proton conduction is observed. Amongst the two, the CL with high equivalent weight ionomer (Nafion-1100) exhibits higher conduction.
机译:催化剂层(CL)离聚物控制几种运输和界面现象,包括质子的远程传输,局部氧气转运至Pt催化剂,有效利用Pt催化剂,电化学反应动力学和双层电容。在这项工作中,研究了用两种侧链长度和等效重量,Nafion-1100和Aquivion-825不同的离聚物制成的湿度,这些性能作为湿度的函数的变化。这是第一次研究用不同离聚物的CLS原位原位依赖依赖性氧还原反应(ORR)动力学的研究。显着的发现是观察Aquivion-825 Cl的更高ORR动力学活动(A / cm),而不是Nafion-1100 Cl。这归因于两个CLS中Pt /离聚物界面处的界面质子浓度的差异。与Nafion-1100Cls相比,伴随含量-825CLS的较高局部氧气传输性的Pt /离聚物界面的差异也在较高的局部氧气输送性中,与离子聚物和PT与更多酸基团的离聚物之间的相互作用一致。对于两个CLS,观察到与100%RH的任何相对湿度(RH)的电化学活性区域的电化学活性面积与100%RH的比率相似的依赖性。正如预期的那样,观察到湿度对质子传导的强烈影响。其中,具有高当量重量离聚物(Nafion-1100)的Cl表现出更高的导通。

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