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原子分散金属位点电催化剂用于氧还原反应的合理设计。

Rational Design of Atomically Dispersed Metal Site Electrocatalysts for Oxygen Reduction Reaction.

机构信息

Clean Energy Automotive Engineering Center and School of Automotive Studies, Tongji University, 4800 Cao'an Road, Shanghai, 201804, China.

出版信息

Adv Sci (Weinh). 2023 Apr;10(11):e2203391. doi: 10.1002/advs.202203391. Epub 2023 Jan 30.

Abstract

Future renewable energy supply and a cleaner Earth greatly depend on various crucial catalytic reactions for the society. Atomically dispersed metal site electrocatalysts (ADMSEs) have attracted tremendous research interest and are considered as the next-generation promising oxygen reduction reaction (ORR) electrocatalysts due to the maximum atom utilization efficiency, tailorable catalytic sites, and tunable electronic structures. Despite great efforts have been devoted to the development of ADMSEs, the systematic summary for design principles of high-efficiency ADMSEs is not sufficiently highlighted for ORR. In this review, the authors first summarize the fundamental ORR mechanisms for ADMSEs, and further discuss the intrinsic catalytic mechanism from the perspective of theoretical calculation. Then, the advanced characterization techniques to identify the active sites and effective synthesis methods to prepare catalysts for ADMSEs are also showcased. Subsequently, a special emphasis is placed on effective strategies for the rational design of the advanced ADMSEs. Finally, the present challenges to be addressed in practical application and future research directions are also proposed to overcome the relevant obstacles for developing high-efficiency ORR electrocatalysts. This review aims to provide a deeper understanding for catalytic mechanisms and valuable design principles to obtain the advanced ADMSEs for sustainable energy conversion and storage techniques.

摘要

未来的可再生能源供应和更清洁的地球在很大程度上依赖于各种关键的催化反应来为社会服务。原子分散金属位点电催化剂(ADMSEs)由于具有最高的原子利用率、可调节的催化位点和可调谐的电子结构,吸引了人们极大的研究兴趣,被认为是下一代有前途的氧还原反应(ORR)电催化剂。尽管人们已经投入了大量的精力来开发 ADMSEs,但对于高效 ADMSEs 的设计原则的系统总结并没有充分突出用于 ORR。在这篇综述中,作者首先总结了 ADMSEs 的基本 ORR 机制,并进一步从理论计算的角度讨论了内在的催化机制。然后,还展示了用于识别活性位点的先进表征技术和用于制备 ADMSEs 催化剂的有效合成方法。随后,特别强调了用于合理设计先进 ADMSEs 的有效策略。最后,还提出了在实际应用中需要解决的当前挑战和未来的研究方向,以克服开发高效 ORR 电催化剂的相关障碍。本综述旨在为催化机制提供更深入的理解,并为获得用于可持续能源转换和存储技术的先进 ADMSEs 提供有价值的设计原则。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8fa1/10104677/fbeef0d367c7/ADVS-10-2203391-g022.jpg

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