通过强金属-载体相互作用实现高效电催化的协同催化效应

IF 42.9 Q1 ELECTROCHEMISTRY
Xue Teng , Di Si , Lisong Chen , Jianlin Shi
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引用次数: 0

摘要

强金属-载体相互作用(SMSI),即金属纳米颗粒与载体之间的强电子和结构相互作用,是复合催化剂中最典型的协同催化效应之一,在热催化催化剂的设计中具有重要意义。近年来,基于smsi的协同效应在电催化方面取得了重要的进展,如电催化剂的设计和电催化机理的研究。为了更好地理解协同效应的本质,帮助电催化剂的进一步发展,全面深入地概述和讨论SMSI在电催化中的最新进展是必要的,也是非常可取的,但目前还没有。本文首先介绍了设计和构建SMSI复合催化剂的各种策略。进一步从电催化的角度,对smsi基电催化剂的电子结构、局部界面、形态特征和活性位点的表征技术进行了详细的综述。重点介绍了具有SMSI协同催化作用的单功能和双功能电催化剂的最新设计进展,以及SMSI在电催化反应中的关键作用。最后,对smsi基电催化剂的发展面临的挑战和前景进行了讨论,指出了smsi基电催化剂未来发展中存在的关键问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Synergetic catalytic effects by strong metal–support interaction for efficient electrocatalysis

Synergetic catalytic effects by strong metal–support interaction for efficient electrocatalysis
Strong metal–support interaction (SMSI), namely the strong electronic and structural interaction between metal nanoparticles and supports, one of the most typical synergetic catalytic effects in composite catalysts, has been found critically important in the design of catalyst for thermocatalysis in the past. Recently, however, important and great progress of SMSI-based synergetic effects has been made in electrocatalysis, such as electrocatalyst design and electrocatalytic mechanism investigations. To better understand the nature of the synergetic effect assisting the further development of electrocatalysts, a comprehensive and in-depth overview highlighting and discussing the recent advances of SMSI in electrocatalysis is necessary and highly desirable but still absent. Herein, this review firstly presents various strategies of designing and constructing composite catalysts featuring SMSI. Further from the perspectives of electrocatalysis, the characterization techniques towards the electron structure, local interfacial and morphological features and active sites for SMSI-based electrocatalysts, have been summarized in detail. Importantly, the recent advances in the design of single- and bi-functional electrocatalysts featuring SMSI-based synergetic catalytic effects, and the key roles of SMSI during the electrocatalytic reactions are emphasized. Finally, the challenges and prospects are discussed to highlight the key remaining issues in the future development of SMSI-based electrocatalysts.
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CiteScore
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