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Coordination Engineering of Single-Atom Catalysts for the Oxygen Reduction Reaction: A Review

机译:氧还原反应单原子催化剂的协调工程:综述

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Future renewable energy supplies and a sustainable environment rely on many important catalytic processes. Single-atom catalysts (SACs) are attractive because of their maximum atom utilization efficiency, tunable electronic structures, and outstanding catalytic performance. Of particular note, transition-metal SACs exhibit excellent catalytic activity and selectivity for the oxygen reduction reaction (ORR)-an important half reaction in fuel cells and metal-air batteries as well as for portable hydrogen peroxide (H2O2) production. Although considerable efforts have been made on the synthesis of SACs for ORR, the regulation of the coordination environments of SACs and thus the electronic structures still pose a big challenge. In this review, strategies for manipulating the coordination environments of SACs are classified into three categories, including regulation of the center metal atoms, manipulation of the surrounding environment connecting to the center metal atom, and modification of the geometric configuration of the support. Finally, some issues regarding the future development of SACs for ORR are raised and possible solutions are proposed.
机译:未来可再生能源用品和可持续环境依赖于许多重要的催化过程。单原子催化剂(SAC)由于其最大原子利用效率,可调谐电子结构和出色的催化性能而具有吸引力。特别注意,过渡金属囊具有优异的催化活性和对氧还原反应的选择性(ORR) - 燃料电池和金属 - 空气电池以及可便携式过氧化氢(H2O2)产生的重要半反应。虽然对ORR的SACS合成已经进行了相当大的努力,但是对囊的协调环境的调节,因此电子结构仍然构成了大挑战。在本次审查中,操纵SAC的协调环境的策略被分为三类,包括中央金属原子的调节,操纵连接到中心金属原子的周围环境,以及修改支撑件的几何构造。最后,提出了关于ORR的未来发展的一些问题,提出了可能的解决方案。

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