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A review on air cathodes for zinc-air fuel cells

机译:锌空气燃料电池空气阴极的研究进展

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This paper reviews the compositions, design and methods of fabrication of air cathodes for alkali zinc-air fuel cells (ZAFCs), one of the few successfully commercialized fuel cells.The more promising compositions for air cathodes are based on individual oxides, or mixtures of such, with a spinel, perovskite, or pyrochlore structure: MnO_2, Ag, CO_3O_4, La_2O_3, LaNiO_3, NiCo_2O_4, LaMnO_3, LaNiO_3, etc. These compositions provide the optimal balance of ORR activity and chemical stability in an alkali electrolyte. The sol-gel and reverse micelle methods supply the most uniform distribution of the catalyst on carbon and the highest catalyst BET surface area. It is shown that the design of the air cathode, including types of carbon black, binding agents, current collectors, Teflon membranes, thermal treatment of the GDL, and catalyst layers, has a strong effect on performance.
机译:本文概述了碱性锌-空气燃料电池(ZAFC)的空气阴极的组成,设计和制造方法,这是少数几种成功商业化的燃料电池之一。空气阴极的更有希望的组成是基于单独的氧化物或以下物质的混合物例如,具有尖晶石,钙钛矿或烧绿石结构:MnO_2,Ag,CO_3O_4,La_2O_3,LaNiO_3,NiCo_2O_4,LaMnO_3,LaNiO_3等。这些组合物在碱性电解质中提供了ORR活性和化学稳定性的最佳平衡。溶胶-凝胶法和反胶束法可在碳上提供最均匀的催化剂分布,并提供最高的BET比表面积。结果表明,空气阴极的设计,包括炭黑的类型,粘合剂,集电器,特富龙膜,GDL的热处理以及催化剂层,对性能有很大影响。

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