American Chemical Society, Journal of Physical Chemistry C, 20(114), p. 9444-9452, 2010
DOI: 10.1021/jp102036r
Full text: Unavailable
66-3 FIELD Section Title:Surface Chemistry and Colloids UMR 7197, and CNRS, UMR 7197, Laboratoire de Reactivite de Surface, UPMC Univ Paris 06, Paris, Fr. FIELD URL: written in English ; The bonding of propanethiol mols. on a Au(111) surface is studied using period DFT calcns. within the framework of the model for chem. bond breaking that was recently proposed. The S-H bond breaking and the Au-S bond formation are analyzed through the evolution of the d. of states. The energetics confirms the complexity of the reaction emerging from the interthiol chain interaction. The formation of a self-assembled monolayer is explained through a two-step mechanism, S-H bond breaking and Au-S bond formation. The prodn. of H2 is more favorable than the formation of Au-H species. The bonding and antibonding electronic states of the S-H bond were identified and their evolutions during the process of bond breaking carefully analyzed. The corresponding bonding and antibonding states for the C-S bond are practically not affected during this process, indicating that the bond is preserved. The s orbital of the hydrogen atom strongly interacts with the gold surface and finally a Au-H bond is formed. [on SciFinder(R)]