Perspectives on Challenges and Achievements in Local Oxygen Transport of Low Pt Proton Exchange Membrane Fuel Cells

Xiaojing Cheng, S. Shen, G. Wei, Chao Wang, L. Luo, Junliang Zhang
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引用次数: 14

Abstract

The key to address the cost issue of polymer electrolyte membrane fuel cells (PEMFCs) lies on reducing Pt amount employed in cathode catalyst layers (CCLs). In past decades, researchers focus on developing series of alloy and core–shell electrocatalysts with high oxygen reduction reaction activity in order to alleviate the low Pt loading caused performance loss. However, it is noted that the concentration polarization loss resulting from the cathode oxygen transport plays a more important role as the Pt loading decreases, especially the local oxygen transport through the ultrathin ionomer film covering on Pt surface. This paper reviews the nanomorphology of the ultrathin perfluorinated sulfonic acid ionomer film in CCLs, as well as the local oxygen transport mechanism and the corresponding effects on fuel cell performance in low Pt PEMFCs. In addition, both the detailed local oxygen transport properties in carbon black‐supported Pt membrane electrode assemblies (MEAs) and high surface carbon‐supported MEAs are summarized. Subsequently, numerous innovative strategies and effective approaches of reducing the local oxygen transport resistance are introduced. The new insights proposed in this paper have important implications for enhancing local oxygen transport and designing high‐performance fuel cell electrodes.
低铂质子交换膜燃料电池局部氧传输的挑战与成果展望
解决聚合物电解质膜燃料电池(pemfc)成本问题的关键在于减少阴极催化剂层(ccl)中Pt的用量。过去几十年,研究人员致力于开发一系列具有高氧还原反应活性的合金和核壳电催化剂,以缓解低Pt负载导致的性能损失。然而,随着Pt负载的减少,阴极氧输运引起的浓度极化损失起着更重要的作用,特别是通过覆盖在Pt表面的超薄离子膜的局部氧输运。本文综述了ccl中超薄全氟磺酸离聚体薄膜的纳米形态,以及低Pt pemfc中局部氧传输机制及其对燃料电池性能的影响。此外,本文还对炭黑负载Pt膜电极组件(MEAs)和高表面碳负载Pt膜电极组件的局部氧输运特性进行了详细的总结。随后,介绍了许多减少局部氧运输阻力的创新策略和有效方法。本文提出的新见解对增强局部氧传输和设计高性能燃料电池电极具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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