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Advanced Electrocatalysts with Single-Metal-Atom Active Sites

  • Yuxuan Wang
  • , Hongyang Su
  • , Yanghua He
  • , Ligui Li
  • , Shangqian Zhu
  • , Hao Shen
  • , Pengfei Xie
  • , Xianbiao Fu
  • , Guangye Zhou
  • , Chen Feng
  • , Dengke Zhao
  • , Fei Xiao
  • , Xiaojing Zhu
  • , Yachao Zeng
  • , Minhua Shao
  • , Shaowei Chen
  • , Gang Wu
  • , Jie Zeng
  • , Chao Wang
  • Johns Hopkins University
  • University of Science and Technology of China
  • SUNY Buffalo
  • South China University of Technology
  • Hong Kong University of Science and Technology
  • University of California at Santa Cruz

Research output: Contribution to journalReview articlepeer-review

922 Scopus citations

Abstract

Electrocatalysts with single metal atoms as active sites have received increasing attention owing to their high atomic utilization efficiency and exotic catalytic activity and selectivity. This review aims to provide a comprehensive summary on the recent development of such single-atom electrocatalysts (SAECs) for various energy-conversion reactions. The discussion starts with an introduction of the different types of SAECs, followed by an overview of the synthetic methodologies to control the atomic dispersion of metal sites and atomically resolved characterization using state-of-the-art microscopic and spectroscopic techniques. In recognition of the extensive applications of SAECs, the electrocatalytic studies are dissected in terms of various important electrochemical reactions, including hydrogen evolution reaction (HER), oxygen evolution reaction (OER), oxygen reduction reaction (ORR), carbon dioxide reduction reaction (CO2RR), and nitrogen reduction reaction (NRR). Examples of SAECs are deliberated in each case in terms of their catalytic performance, structure-property relationships, and catalytic enhancement mechanisms. A perspective is provided at the end of each section about remaining challenges and opportunities for the development of SAECs for the targeted reaction.

Original languageEnglish
Pages (from-to)12217-12314
Number of pages98
JournalChemical Reviews
Volume120
Issue number21
DOIs
StatePublished - Nov 11 2020

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