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Electronic Metal-Support Interaction of Single-Atom Catalysts and Applications in Electrocatalysis

机译:单原子催化剂的电子金属支持相互作用及其在电寄生分析中的应用

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The electronic metal-support interaction (EMSI), which acts as a bridge between theoretical electronic study and the design of heterogenous catalysts, has attracted much attention. Utilizing the interaction between the metal and the support is one of the most essential strategies to enhance electrocatalytic efficiency due to structural and synergetic promotion. To date, as the ideal model for realizing EMSI, many types of single-atom catalysts (SACs) have been developed. The understanding of the electronic interaction on SACs has also been pushed to a higher level. However, systematic theories and operando experiments are seldom reported, and will be necessary to put forward and be carried out, respectively. Herein, the types, characterization, mechanism, and electrocatalytic applications of EMSI are comprehensively summarized and discussed. In addition to the basic information above, the challenges, opportunities, and future development of the EMSI on SACs are also proposed to present an overall view and reference to the later research.
机译:电子金属支持相互作用(EMSI),其作为理论电子研究与异源催化剂设计之间的桥梁,引起了很多关注。利用金属之间的相互作用和载体是由于结构和协同促进,提高电催化效率最为重要的策略之一。迄今为止,作为实现EMSI的理想模型,已经开发了许多类型的单原子催化剂(SAC)。对囊上的电子相互作用的理解也被推到了更高的水平。然而,系统的理论和操作数实验很少报告,并且将分别提出并进行并进行。本文,综合综述了EMSI的类型,表征,机制和电催化应用。除上述基本信息外,还提出了对SAC的挑战,机会和未来发展,以展示了对后期研究的整体观点和提及。

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