Catalytic Role of Gold in Gold-Based Catalysts: A Density Functional Theory Study on the CO Oxidation on Gold
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- 13 November 2002
- journal article
- research article
- Published by American Chemical Society (ACS) in Journal of the American Chemical Society
- Vol. 124 (49), 14770-14779
- https://doi.org/10.1021/ja0205885
Abstract
Gold-based catalysts have been of intense interests in recent years, being regarded as a new generation of catalysts due to their unusually high catalytic performance. For example, CO oxidation on Au/TiO2 has been found to occur at a temperature as low as 200 K. Despite extensive studies in the field, the microscopic mechanism of CO oxidation on Au-based catalysts remains controversial. Aiming to provide insight into the catalytic roles of Au, we have performed extensive density functional theory calculations for the elementary steps in CO oxidation on Au surfaces. O atom adsorption, CO adsorption, O2 dissociation, and CO oxidation on a series of Au surfaces, including flat surfaces, defects and small clusters, have been investigated in detail. Many transition states involved are located, and the lowest energy pathways are determined. We find the following: (i) the most stable site for O atom on Au is the bridge site of step edge, not a kink site; (ii) O2 dissociation on Au (O2→2Oad) is hindered by high barriers with the lowest barrier being 0.93 eV on a step edge; (iii) CO can react with atomic O with a substantially lower barrier, 0.25 eV, on Au steps where CO can adsorb; (iv) CO can react with molecular O2 on Au steps with a low barrier of 0.46 eV, which features an unsymmetrical four-center intermediate state (O−O−CO); and (v) O2 can adsorb on the interface of Au/TiO2 with a reasonable chemisorption energy. On the basis of our calculations, we suggest that (i) O2 dissociation on Au surfaces including particles cannot occur at low temperatures; (ii) CO oxidation on Au/inactive-materials occurs on Au steps via a two-step mechanism: CO+O2→CO2+O, and CO+O→CO2; and (iii) CO oxidation on Au/active-materials also follows the two-step mechanism with reactions occurring at the interface.Keywords
This publication has 50 references indexed in Scilit:
- A Kinetic and Adsorption Study of CO Oxidation over Unsupported Fine Gold Powder and over Gold Supported on Titanium DioxideJournal of Catalysis, 1999
- A General Mechanism for CO Oxidation on Close-Packed Transition Metal SurfacesJournal of the American Chemical Society, 1999
- A Density Functional Theory Study of the Interaction between CO and O on a Pt Surface: CO/Pt(111), O/Pt(111), and CO/O/Pt(111)Journal of the American Chemical Society, 1999
- Onset of Catalytic Activity of Gold Clusters on Titania with the Appearance of Nonmetallic PropertiesScience, 1998
- Selective Vapor-Phase Epoxidation of Propylene over Au/TiO2Catalysts in the Presence of Oxygen and HydrogenJournal of Catalysis, 1998
- Mechanism of efficient carbon monoxide oxidation at Ru(0001)Journal of Vacuum Science & Technology A, 1997
- Size- and support-dependency in the catalysis of goldCatalysis Today, 1997
- Why gold is the noblest of all the metalsNature, 1995
- Low-Temperature Oxidation of CO over Gold Supported on TiO2, α-Fe2O3, and Co3O4Journal of Catalysis, 1993
- A theoretical model of metal surface reactionsThe Journal of Physical Chemistry, 1983