4.4 Article

Adsorption of NO on Au atoms and dimers supported on MgO(100): DFT studies

Journal

SURFACE SCIENCE
Volume 602, Issue 9, Pages 1669-1676

Publisher

ELSEVIER
DOI: 10.1016/j.susc.2008.02.037

Keywords

Au/MgO; gold clusters; NO adsorption; nitric oxide; DFT; cluster model

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The adsorption of NO on single gold atoms and Au-2 dimers deposited on regular O2- sites and neutral oxygen vacancies (F-s sites) of the MgO(100) surface have been studied by means of DFT calculations. For Au-1/MgO the adsorption of NO is stronger when the Au atom is supported on an anionic site than when it is on a F, site, with adsorption binding energies of 1.1 and 0.5 eV, respectively. In the first case the spin density is mainly concentrated on the metal atom and protruding from the surface. In such a way, an active site against radicals such as NO is generated. On the F, site, the presence of the vacancy delocalizes the spin into the substrate, weakening its coupling with NO. For Au-2/MgO, as this system has a closed-shell configuration, the NO molecules bonds weakly with Au-2. Regarding the N-O stretching frequencies, a very strong shift of similar to 340-400 cm(-1) to lower frequencies is observed for Aul/MgO in comparison with free NO. (c) 2008 Elsevier B.V. All rights reserved.

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