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Progress in the Development of Fe-Based PGM-Free Electrocatalysts for the Oxygen Reduction Reaction

机译:铁基无PGM的氧还原反应催化剂的研究进展

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摘要

Development of alternative energy sources is crucial to tackle challenges encountered by the growing global energy demand. Hydrogen fuel, a promising way to store energy produced from renewable power sources, can be converted into electrical energy at high efficiency via direct electrochemical conversion in fuel cells, releasing water as the sole byproduct. One important drawback to current fuel-cell technology is the high content of platinum-group-metal (PGM) electrocatalysts required to perform the sluggish oxygen reduction reaction (ORR). Addressing this challenge, remarkable progress has been made in the development of low-cost PGM-free electrocatalysts synthesized from inexpensive, earth-abundant, and easily sourced materials such as iron, nitrogen, and carbon (Fe-N-C). PGM-free Fe-N-C electrocatalysts now exhibit ORR activities approaching that of PGM electrocatalysts but at a fraction of the cost, promising to significantly reduce overall fuel-cell technology costs. Herein, recent developments in PGM-free electrocatalysis, demonstrating increased fuel-cell performance, as well as efforts aimed at understanding the key limiting factor, i.e., the nature of the PGM-free active site, are summarized. Further improvements will be accomplished through the controlled and/or rationally designed synthesis of materials with higher active-site densities, while at the same time establishing methods to mitigate catalyst degradation.
机译:开发替代能源对于应对日益增长的全球能源需求所面临的挑战至关重要。氢燃料是一种存储从可再生能源中产生的能量的有前途的方法,可以通过燃料电池中的直接电化学转化将氢高效地转化为电能,从而释放出水作为唯一的副产物。当前燃料电池技术的一个重要缺点是进行缓慢的氧还原反应(ORR)所需的铂族金属(PGM)电催化剂含量高。为应对这一挑战,在开发廉价的不含PGM的电催化剂方面已取得了显着进展,该催化剂由廉价,富含地球,容易获得的材料(如铁,氮和碳(Fe-N-C))合成。现在,不含PGM的Fe-N-C电催化剂的ORR活性接近PGM电催化剂,但价格却低廉,有望显着降低整体燃料电池技术成本。在此,总结了无PGM的电催化的最新发展,其证明了燃料电池性能的提高,以及旨在理解关键限制因素即无PGM的活性位点的性质的努力。通过具有较高活性位点密度的材料的受控和/或合理设计的合成,将实现进一步的改进,同时建立减轻催化剂降解的方法。

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