CO oxidation on a single Pd atom supported on magnesia
arXiv:cond-mat/0105460 · doi:10.1103/PhysRevLett.86.5950
Abstract
The oxidation of CO on single Pd atoms anchored to MgO(100) surface oxygen vacancies is studied with temperature-programmed-reaction mass-spectrometry and infrared spectroscopy. In one-heating-cycle experiments CO, formed from O and CO preadsorbed at 90 K, is detected at 260 K and 500 K. Ab-initio simulations suggest two reaction routes, with Pd(CO)O and Pd(CO)CO found as precursors for the low and high temperature channels, respectively. Both reactions result in annealing of the vacancy and induce migration and coalescence of the remaining Pd-CO to form larger clusters.
4 pages, 3 figures, scheduled for publication in PRL 18 June 2001
References in corpus (1)
Cited by in corpus (5)
- Supported magnetic nanoclusters: Softlanding of Pd clusters on a MgO surface
- Structure, stability, and mobility of small Pd clusters on the stoichiometric and defective TiO (110) surfaces
- Single-Atom Catalysis: An Opportunity For Surface Science
- Activity of Pd (n = 1-5) Clusters on Alumina Film on NiAl(111) for CO Oxidation: A Molecular Beam Study
- The common attribute shared by defects, surfaces, and nanostructures: the BOLS-NEP notion