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Stability of gold nanostructures on rutile TiO2(110) surface
Authors:T Pabisiak  A Kiejna
Institution:Institute of Experimental Physics, University of Wroc?aw, Plac M. Borna 9, PL- 50-204 Wroc?aw, Poland
Abstract:The adsorption of gold atoms and formation of nanostructures on the rutile TiO2(110) surface with different degree of oxygen reduction was studied from first principles. The Au atoms adsorb strongest at oxygen vacancy sites. Starting from a very low coverage limit the potential energy profiles or diffusion paths of the adsorbed Au monomers and dimers were calculated. Stable structures of two to nine Au atoms arranged in finite and infinite rows and in the shape of finite-size clusters were determined. All these structures are found to bind to the reduced surface stronger than 2 eV/atom. The elongated Au row-like structures bind by about 0.1 eV stronger than 3D clusters, suggesting a preference for the 1D-like Au growth mode on the missing-row reconstructed TiO2(110).
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