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Interplay of Electronic and Steric Effects to Yield Low‐Temperature CO Oxidation at Metal Single Sites in Defect‐Engineered HKUST‐1
- Source :
- Angewandte Chemie (International Ed. in English), Angewandte Chemie / International edition, 59 (26), 10514-10518
- Publication Year :
- 2020
- Publisher :
- John Wiley and Sons Inc., 2020.
-
Abstract
- In contrast to catalytically active metal single atoms deposited on oxide nanoparticles, the crystalline nature of metal‐organic frameworks (MOFs) allows for a thorough characterization of reaction mechanisms. Using defect‐free HKUST‐1 MOF thin films, we demonstrate that Cu+/Cu2+ dimer defects, created in a controlled fashion by reducing the pristine Cu2+/Cu2+ pairs of the intact framework, account for the high catalytic activity in low‐temperature CO oxidation. Combining advanced IR spectroscopy and density functional theory we propose a new reaction mechanism where the key intermediate is an uncharged O2 species, weakly bound to Cu+/Cu2+. Our results reveal a complex interplay between electronic and steric effects at defect sites in MOFs and provide important guidelines for tailoring and exploiting the catalytic activity of single metal atom sites.<br />A complex interplay: A thorough study combining advanced spectroscopy and theory reveals that electronic and steric effects occur at reduced Cu+/Cu2+ single dimers in defect‐engineered HKUST‐1 SURMOF to yield high catalytic activity for low‐temperature CO oxidation. A new reaction mechanism is presented involving an uncharged O2 species as the key intermediate.
- Subjects :
- Steric effects
inorganic chemicals
Technology
Reaction mechanism
Materials science
Single‐Atom Catalysts | Hot Paper
Oxide
Nanoparticle
Infrared spectroscopy
dioxygen activation
010402 general chemistry
Photochemistry
01 natural sciences
Catalysis
Metal
chemistry.chemical_compound
density functional theory
010405 organic chemistry
Communication
General Chemistry
Communications
MOFs
0104 chemical sciences
chemistry
visual_art
visual_art.visual_art_medium
Density functional theory
reaction mechanism
ddc:600
single-atom sites
Subjects
Details
- Language :
- English
- ISSN :
- 15213773 and 14337851
- Volume :
- 59
- Issue :
- 26
- Database :
- OpenAIRE
- Journal :
- Angewandte Chemie (International Ed. in English)
- Accession number :
- edsair.doi.dedup.....8b858f82b5263817727fdbb116daaf80