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Crystallographically vacancy‐induced MOF nanosheet as rational single‐atom support for accelerating CO2 electroreduction to CO

Authors :
Jin Hyuk Cho
Joonhee Ma
Chaehyeon Lee
Jin Wook Lim
Youngho Kim
Ho Yeon Jang
Jaehyun Kim
Myung‐gi Seo
Youngheon Choi
Youn Jeong Jang
Sang Hyun Ahn
Ho Won Jang
Seoin Back
Jong‐Lam Lee
Soo Young Kim
Source :
Carbon Energy, Vol 6, Iss 8, Pp n/a-n/a (2024)
Publication Year :
2024
Publisher :
Wiley, 2024.

Abstract

Abstract To attain a circular carbon economy and resolve CO2 electroreduction technology obstacles, single‐atom catalysts (SACs) have emerged as a logical option for electrocatalysis because of their extraordinary catalytic activity. Among SACs, metal–organic frameworks (MOFs) have been recognized as promising support materials because of their exceptional ability to prevent metal aggregation. This study shows that atomically dispersed Ni single atoms on a precisely engineered MOF nanosheet display a high Faradaic efficiency of approximately 100% for CO formation in H‐cell and three‐compartment microfluidic flow‐cell reactors and an excellent turnover frequency of 23,699 h−1, validating their intrinsic catalytic potential. These results suggest that crystallographic variations affect the abundant vacancy sites on the MOF nanosheets, which are linked to the evaporation of Zn‐containing organic linkers during pyrolysis. Furthermore, using X‐ray absorption spectroscopy and density functional theory calculations, a comprehensive investigation of the unsaturated atomic coordination environments and the underlying mechanism involving CO* preadsorbed sites as initial states was possible and provided valuable insights.

Details

Language :
English
ISSN :
26379368
Volume :
6
Issue :
8
Database :
Directory of Open Access Journals
Journal :
Carbon Energy
Publication Type :
Academic Journal
Accession number :
edsdoj.64c6075a60774c3f92e1c4e2f49fa93a
Document Type :
article
Full Text :
https://doi.org/10.1002/cey2.510