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Unveiling the CO Oxidation Mechanism over a Molecularly Defined Copper Single‐Atom Catalyst Supported on a Metal–Organic Framework.

Authors :
Abdel‐Mageed, Ali M.
Rungtaweevoranit, Bunyarat
Impeng, Sarawoot
Bansmann, Joachim
Rabeah, Jabor
Chen, Shilong
Häring, Thomas
Namuangrak, Supawadee
Faungnawakij, Kajornsak
Brückner, Angelika
Behm, R. Jürgen
Source :
Angewandte Chemie International Edition. 7/24/2023, Vol. 62 Issue 30, p1-10. 10p.
Publication Year :
2023

Abstract

Elucidating the reaction mechanism in heterogeneous catalysis is critically important for catalyst development, yet remains challenging because of the often unclear nature of the active sites. Using a molecularly defined copper single‐atom catalyst supported by a UiO‐66 metal–organic framework (Cu/UiO‐66) allows a detailed mechanistic elucidation of the CO oxidation reaction. Based on a combination of in situ/operando spectroscopies, kinetic measurements including kinetic isotope effects, and density‐functional‐theory‐based calculations, we identified the active site, reaction intermediates, and transition states of the dominant reaction cycle as well as the changes in oxidation/spin state during reaction. The reaction involves the continuous reactive dissociation of adsorbed O2, by reaction of O2,ad with COad, leading to the formation of an O atom connecting the Cu center with a neighboring Zr4+ ion as the rate limiting step. This is removed in a second activated step. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
14337851
Volume :
62
Issue :
30
Database :
Academic Search Index
Journal :
Angewandte Chemie International Edition
Publication Type :
Academic Journal
Accession number :
165045492
Full Text :
https://doi.org/10.1002/anie.202301920