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Article Dans Une Revue Physical Chemistry Chemical Physics Année : 2011

Nature of adhesion of condensed organic films on platinum by first-principles simulations

Yan Li
Marie-Laure Bocquet
Philippe Sautet
David Loffreda

Résumé

Understanding the nature of the adhesion of an organic liquid on a metal surface is of paramount importance for elucidating the stability and chemical reactivity at these complex interfaces. However, to date, the morphology, layering and chemical properties at organic liquid metal interfaces have been rarely known. Using semi-empirical dispersion corrected density functional theory calculations and ab initio molecular dynamics simulations, we show that carbon tetrachloride and ethanol films confined to a platinum surface alter their intrinsic properties and exhibit interfacial reactivity. A few interface carbon tetrachloride (ethanol) molecules adsorb dissociatively (molecularly) on platinum thanks to the surrounding medium. The adsorption strength of the interfacial molecules is consequently increased in the condensed phase as compared to the gas phase. This remarkable effect is rationalized by an interaction energy decomposition model and an electrostatic potential analysis.
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Dates et versions

hal-01116782 , version 1 (14-02-2015)

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Slimane Laref, Yan Li, Marie-Laure Bocquet, Françoise Delbecq, Philippe Sautet, et al.. Nature of adhesion of condensed organic films on platinum by first-principles simulations. Physical Chemistry Chemical Physics, 2011, 13 (25), pp.11827-11837. ⟨10.1039/c0cp02285c⟩. ⟨hal-01116782⟩
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