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A novel membrane electrode assembly design for proton exchange membrane fuel cells: Characterization and performance evaluation

机译:质子交换膜燃料电池的新型膜电极组件设计:表征和性能评估

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Conventional membrane-electrode assembly (MEA), a key component in proton exchange membrane fuel cells, only operates reasonably within a narrow range of operating conditions. In this study, a scaled up MEA that can perform adequately under a wide range of humidification and flow conditions is developed. It consists of a microporous layer (MPL) composed of graphene for the cathode electrode, catalyst layers (CLs) prepared with a short-side-chain (SSC) ionomer, and a SSC electrolyte membrane. The results show that the graphene-based MPL employed on the cathode provides an excellent platform for the CL (hence promotes catalyst activity and catalyst utilization) and improves water retention, due to its unique microstructure and morphology. The proposed MEA provides stable and highly promising performance independent of flow conditions under the relative humidities (RHs) of 70% and 100%. Interestingly, the MEA also demonstrates relatively better cell performance under low-humidity conditions (40% RH), such that it performs noticeably better, as the reactants are supplied to the cell under low-flow condition, rather than moderate-and high-flow conditions. (C) 2019 Elsevier Ltd. All rights reserved.
机译:常规膜电极组件(MEA),在质子交换膜燃料电池的关键组成部分,仅在窄范围的操作条件内合理地工作。在这项研究中,按比例增加,可以在宽范围加湿充分执行和流动条件进行显影MEA。它包括有短侧链(SSC)的离聚物制备的用于阴极电极的石墨烯构成的微孔层(MPL),催化剂层(CLS)和SSC电解质膜。结果表明,在阴极中使用的基于石墨烯的MPL提供了CL一个很好的平台(因此促进催化剂活性和催化剂利用率),并改善保水性,由于其独特的微观结构和形态。所提出的MEA提供独立的的70%和100%的相对湿度(右轴)下的流动条件稳定和高度有前途的性能。有趣的是,MEA还演示了低湿度条件下相对更好的电池性能(40%RH),使得其执行明显更好,因为反应物的低流量条件下提供给细胞,而不是中等和高流动状况。 (c)2019 Elsevier Ltd.保留所有权利。

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