首页> 外文期刊>Journal of power sources >Controlling gas diffusion layer oxidation by homogeneous hydrophobic coating for polymer electrolyte fuel cells
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Controlling gas diffusion layer oxidation by homogeneous hydrophobic coating for polymer electrolyte fuel cells

机译:通过均质疏水涂层控制聚合物电解质燃料电池的气体扩散层氧化

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摘要

Reduced production costs and enhanced durability are necessary for practical application of polymer electrolyte fuel cells. There has been a great deal of concern about degradation of the gas diffusion layer located outside the membrane electrode assembly. However, very few studies have been carried out on the degradation process, and no suitable methods for improving the durability of the cell have been found. In this work, the influence on the cell performance and factors involved in the degradation of the gas diffusion layer has been clarified through power generation tests. Long-term power generation tests on single cells for 6000 h were carried out under high humidity conditions with homogeneous and inhomogeneous hydrophobic coating gas diffusion layers. The results showed that the increase in the diffusion overvoltage from the gas diffusion layer could be controlled by the use of a homogeneous coating. Post-analyses indicated that this occurred by controlling oxidation of the carbon fiber.
机译:对于聚合物电解质燃料电池的实际应用,降低的生产成本和增强的耐久性是必需的。对于位于膜电极组件外部的气体扩散层的劣化,存在很多担忧。但是,关于降解过程的研究很少,还没有找到合适的方法来改善电池的耐久性。在这项工作中,已经通过发电测试弄清了对电池性能的影响以及与气体扩散层退化有关的因素。在高湿度条件下使用均质和不均质的疏水涂层气体扩散层对单电池进行了6000 h的长期发电测试。结果表明,可以通过使用均匀涂层来控制来自气体扩散层的扩散过电压的增加。后分析表明,这是通过控制碳纤维的氧化而发生的。

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