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Growth and hydrogenation of ultra-thin Mg films on Mo(1 1 1)
Authors:Christopher W. Ostenfeld  Tejs Vegge  Ib Chorkendorff
Affiliation:a Interdisciplinary Research Center for Catalysis, Center for Atomic-scale Materials Physics, Department of Physics, Building 307, Technical University of Denmark, Department of Chemical Engineering, DK-2800 Kgs. Lyngby, Denmark
b Danfoss Corporate Ventures A/S, DK-6430 Nordborg, Denmark
Abstract:The growth and hydrogenation of ultra-thin magnesium overlayers have been investigated on a Mo(1 1 1) single crystal substrate. For increasing magnesium coverages we observe intermediate stages in the TPD and LEISS profiles, which illustrate the transition from one monolayer to multilayer growth. Hydrogen cannot be adsorbed on magnesium films under UHV conditions. However, when evaporating Mg in a hydrogen background, a hydrogen overlayer is seen to adsorb at the Mg surface, due to the catalytic interaction with the Mo(1 1 1) substrate and subsequent spill-over. We show that two monolayers of Mg are necessary to sustain this purely adsorbed state. Using predissociated hydrogen we show that the hydride formation is self-stabilizing and the hydride only decomposes at a temperature where a considerable desorption of magnesium occurs.
Keywords:Magnesium   Metallic films   Thermal desorption spectroscopy   Density functional theory   Hydrogen molecule
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