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Single Atom Catalysts for Electrochemical CO2 Reduction Reaction: Synthetic Strategies and Mechanistic Insights

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Title
Single Atom Catalysts for Electrochemical CO2 Reduction Reaction: Synthetic Strategies and Mechanistic Insights
Issued Date
2025-09
Citation
Small, v.21, no.37
Type
Article
Author Keywords
atomic-scale active sitesCO2 reductionelectrocatalytic mechanismsreaction pathwayssingle-atom catalysts (SACs)
Keywords
CARBONSITESELECTROREDUCTIONELECTROLYSISMETHANATIONENVIRONMENTFRAMEWORKEVOLUTIONFORMATE
ISSN
1613-6810
Abstract

Electrocatalytic CO2 reduction is one of the most promising pathways for addressing environmental and green energy concerns while converting CO2 into added value chemicals and fuels. For this purpose, single-atom catalysts (SACs) have emerged as highly active and selective classes of materials toward electrochemical CO2 reduction (CO2RR) due to their unique electronic properties, exposed active centers, and tunable coordination environment. Herein, a critical assessment of the recent development of SACs for CO2RR is presented. Rational design and synthetic strategies of SACs have been summarized. The interaction of ligands and modulation of both activity and selectivity with extensive analysis on local atomic structure and different SAC types is discussed. The reaction mechanisms of SACs based CO2RR and synergistic effect of SACs with nanoparticles and nanoclusters are also highlighted, emphasizing enhanced catalytic performance due to improved charge transfer, optimized binding of intermediates, and improved accessibility of the active site. Finally, the future perspective of SACs based CO2RR is provided.

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URI
https://scholar.dgist.ac.kr/handle/20.500.11750/59979
DOI
10.1002/smll.202507483
Publisher
Wiley
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상가라쥬샨무감
Shanmugam, Sangaraju상가라쥬샨무감

Department of Energy Science and Engineering

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