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Influence of the gas diffusion cathode structure on the performance of an air-breathing proton exchange membrane fuel cell

机译:气体扩散阴极结构对透气质子交换膜燃料电池性能的影响

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摘要

This study presents a comprehensive analysis regarding the relevance of the cathode electrode structure on the performance of an air-breathing proton exchange membrane fuel cell, for which water management is a critical issue. In the light of the obtained results, general guidelines for designing a high-performance cathode for air-breathing operation are provided. Selecting adequate characteristics for the gas diffusion electrode in the cathode is shown to be crucial for optimizing performance. Sufficiently thin catalytic layers increase impressively Pt utilization by favouring the access of oxygen and protons to the electroactive centres. The properties of the gas diffusion medium for air-breathing cathodes have been also observed to be critical. The study reveals that selection criteria for gas diffusion layers based on high air permeability and good hydrophobicity does not ensure optimal performance. The ability of the GDL macroporous structure to expel water from the cathode is decisive for improving oxygen access to the catalytic layer and obtaining high-performance air-breathing fuel cells.
机译:这项研究提出了有关阴极电极结构与空气呼吸质子交换膜燃料电池性能相关性的综合分析,而水管理是一个关键问题。根据获得的结果,提供了设计用于空气呼吸操作的高性能阴极的一般准则。对于阴极中的气体扩散电极选择适当的特性对优化性能至关重要。足够薄的催化层通过促进氧气和质子进入电活性中心,显着提高了Pt的利用率。还已经观察到用于空气呼吸阴极的气体扩散介质的性质是至关重要的。研究表明,基于高透气性和良好疏水性的气体扩散层选择标准不能确保最佳性能。 GDL大孔结构将水从阴极排出的能力对于改善氧气进入催化层的能力和获得高性能的透气型燃料电池至关重要。

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