| Literature DB >> 26280464 |
Arnaud Fihey1, Christian Hettich2, Jérémy Touzeau1, François Maurel1, Aurélie Perrier1, Christof Köhler2, Bálint Aradi2, Thomas Frauenheim2.
Abstract
We present a parametrization of a self-consistent charge density functional-based tight-binding scheme (SCC-DFTB) to describe gold-organic hybrid systems by adding new Au-X (X = Au, H, C, S, N, O) parameters to a previous set designed for organic molecules. With the aim of describing gold-thiolates systems within the DFTB framework, the resulting parameters are successively compared with density functional theory (DFT) data for the description of Au bulk, Aun gold clusters (n = 2, 4, 8, 20), and Aun SCH3 (n = 3 and 25) molecular-sized models. The geometrical, energetic, and electronic parameters obtained at the SCC-DFTB level for the small Au3 SCH3 gold-thiolate compound compare very well with DFT results, and prove that the different binding situations of the sulfur atom on gold are correctly described with the current parameters. For a larger gold-thiolate model, Au25 SCH3 , the electronic density of states and the potential energy surfaces resulting from the chemisorption of the molecule on the gold aggregate obtained with the new SCC-DFTB parameters are also in good agreement with DFT results.Entities:
Keywords: chemisorption; density functional theory; gold cluster; potential energy surface; thiolate molecule; tight-binding
Year: 2015 PMID: 26280464 DOI: 10.1002/jcc.24046
Source DB: PubMed Journal: J Comput Chem ISSN: 0192-8651 Impact factor: 3.376