Surface restructuring under gas pressure from first principles: A mechanism for CO-induced removal of theAu(110)−(1×2)reconstruction
Author:
Publisher
American Physical Society (APS)
Subject
Condensed Matter Physics,Electronic, Optical and Magnetic Materials
Link
http://harvest.aps.org/v2/journals/articles/10.1103/PhysRevB.71.113414/fulltext
Reference23 articles.
1. In situ scanning tunneling microscopy study of platinum (110) in a reactor cell at high pressures and temperatures
2. Elevated-pressure chemical reactivity of carbon monoxide over Au(111)
3. CO Oxidation on Pt(110): Scanning Tunneling Microscopy Inside a High-Pressure Flow Reactor
4. CO chemisorption on Au(110) investigated under elevated pressures by polarized reflection absorption infrared spectroscopy and scanning tunneling microscopy
5. CO-induced restructuring of Pt(110)-(1×2): Bridging the pressure gap with high-pressure scanning tunneling microscopy
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1. Atomic-Scale Mechanism of Platinum Catalyst Restructuring under a Pressure of Reactant Gas;Journal of the American Chemical Society;2022-12-22
2. Structure sensitivity of ceria-supported Au catalysts for CO oxidation;Journal of Catalysis;2022-03
3. Restructuring effects of the chemical environment in metal nanocatalysis and single-atom catalysis;Catalysis Today;2021-08
4. First-principles kinetics study of carbon monoxide promoted Ostwald ripening of Au particles on FeO/Pt(111);Journal of Energy Chemistry;2019-03
5. Theoretical Treatment of Surfaces in Equilibrium with Gases;Encyclopedia of Interfacial Chemistry;2018
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