Progress on the mechanisms of Ru-based electrocatalysts for the oxygen evolution reaction in acidic media

IF 14 1区 化学 Q1 CHEMISTRY, APPLIED
Yuanyuan Shi , Han Wu , Jiangwei Chang , Zhiyong Tang , Siyu Lu
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引用次数: 5

Abstract

Water electrolysis using proton-exchange membranes is one of the most promising technologies for carbon-neutral and sustainable energy production. Generally, the overall efficiency of water splitting is limited by the oxygen evolution reaction (OER). Nevertheless, a trade-off between activity and stability exists for most electrocatalytic materials in strong acids and oxidizing media, and the development of efficient and stable catalytic materials has been an important focus of research. In this view, gaining in-depth insights into the OER system, particularly the interactions between reaction intermediates and active sites, is significantly important. To this end, this review introduces the fundamentals of the OER over Ru-based materials, including the conventional adsorbate evolution mechanism, lattice oxygen oxidation mechanism, and oxide path mechanism. Moreover, the up-to-date progress of representative modifications for improving OER performance is further discussed with reference to specific mechanisms, such as tuning of geometric, electronic structures, incorporation of proton acceptors, and optimization of metal-oxygen covalency. Finally, some valuable insights into the challenges and opportunities for OER electrocatalysts are provided with the aim to promote the development of next-generation catalysts with high activity and excellent stability.

Abstract Image

ru基电催化剂在酸性介质中析氧反应机理研究进展
利用质子交换膜电解水是碳中和的和可持续能源生产最有前景的技术之一。通常,水分解的总效率受到析氧反应(OER)的限制。然而,大多数电催化材料在强酸和氧化介质中都存在活性和稳定性之间的权衡,开发高效稳定的催化材料一直是研究的重要焦点。从这个角度来看,深入了解OER系统,特别是反应中间体和活性位点之间的相互作用,非常重要。为此,本文介绍了Ru基材料OER的基本原理,包括传统的吸附质析出机制、晶格氧氧化机制和氧化物路径机制。此外,还参考具体机制,如几何结构、电子结构的调整、质子受体的掺入和金属氧共价性的优化,进一步讨论了提高OER性能的代表性修饰的最新进展。最后,对OER电催化剂的挑战和机遇提供了一些有价值的见解,旨在促进具有高活性和优异稳定性的下一代催化剂的开发。
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来源期刊
CiteScore
23.60
自引率
0.00%
发文量
2875
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