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Molecular precursor-mediated methanol dissociation on Si(1 1 1)7 × 7: ab initio study
Authors:Ph Sonnet  L Stauffer  C Minot
Institution:a Laboratoire de Physique et de Spectroscopie Electronique, UMR 7014 CNRS, Universitè de Haute Alsace, 4 rue des Fréres Lumiére, 68093 Mulhouse Cedex, France
b Laboratoire de Chimie Théorique, UMR 7616 CNRS, Université Pierre et Marie Curie, Case courrier 137, Tour 23-22 p114, 4 place Jussieu Paris 75252 Cedex 05, France
Abstract:We present an ab initio study of methanol interaction with the Si(1 1 1)7 × 7 surface using a Si(1 1 1)4 × 2 model. The study of the methanol dissociation on Si(1 1 1)4 × 2 shows that pair dissociation on adatom-restatom dangling bonds is largely favoured, in agreement with the experimental observations. The “center” type adatom is slightly more reactive than the “corner” type one, although the difference is weak. Similar behaviour is observed in both adatom types. Our results for a direct CH3OH dissociation favouring a basic cleavage (adsorption of OH and CH3 fragments) rather than an acidic one (adsorption of H and OCH3 fragments), we are finally led to take a kinetic effect into consideration to reconcile theory with experiment. We show that the presence of molecular precursor states is possible. Different orientations with respect to the silicon dangling bonds of these molecular precursors are investigated. However, the corresponding energies are very close and, considering their relative energies, it is finally difficult to discriminate between acidic and basic cleavages.
Keywords:Density functional calculations  Chemisorption  Alcohols  Semiconducting surfaces
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