Strong precious metal–metal oxide interaction for oxygen reduction reaction: A strategy for efficient catalyst design

Strong precious metal–metal oxide interaction for oxygen reduction reaction: A strategy for efficient catalyst design
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DOI:
10.1002/sus2.108
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发表时间:
2023-01
期刊:
SusMat
影响因子:
--
通讯作者:
Wei Zhang;Jinfa Chang;Yang Yang-Yang
Wei Zhang;Jinfa Chang;Yang Yang-Yang
中科院分区:
其他
文献类型:
--
作者:
Wei Zhang;Jinfa Chang;Yang Yang-Yang

文献摘要

相似文献

氧还原反应(ORR)是一种电化学反应,在接收电子时,将氧气溶解在电解质中,将其溶解至OH-/H2O。金属是在阴极中执行ORR的主要催化剂。最大化的利用率仍在开发中。在ORR中,我们从介绍ORR的背景开始机制和全面的评估协议,我们对SPMMOI的工作原理提供了完整的理解,并强调了相关的进步。将来要解决的问题。
Oxygen reduction reaction (ORR) is an electrochemical reaction in which dissolved oxygen in an electrolyte is reduced to OH−/H2O when receiving electrons. This reaction plays a crucial role in shaping the efficiency of both metal–air batteries and fuel cells, and precious metals are the dominant catalysts carrying out the ORR in their cathodes. However, how to manipulate the electronic structure of precious metals as active sites to further promote ORR performance and maximize the utilization rate is still under development. Metal oxide serves as suitable and promising support that can strongly interact with precious metals for both activity and durability enhancement. Herein, we present recent research updates on strong precious metal–metal oxide interaction (SPMMOI) utilized in ORR. We start by introducing the background of ORR, the issues to be solved, and its practical applications followed by a thorough discussion of the reaction mechanism and comprehensive evaluation protocols of performance. We then provide a complete understanding of the working principle of SPMMOI and highlight the related advances. Finally, we summarize the merits of the precious metal–metal oxide system and propose the research direction as well as some urgent problems to be addressed in the future.