Adsorption of Amine Compounds on the Au(111) Surface:  A Density Functional Study

A Density Functional Theory study of the adsorption energetics of various amine compounds on the gold(111) surface revealed that preferential binding occurs in under-coordinated sites. The largest binding energy is obtained when a gold adatom is placed in the fcc position and the amine positioned wi...

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Bibliographic Details
Published inJournal of physical chemistry. C Vol. 111; no. 37; pp. 13886 - 13891
Main Authors Hoft, Rainer C., Ford, Michael J., McDonagh, Andrew M., Cortie, Michael B.
Format Journal Article
LanguageEnglish
Published American Chemical Society 20.09.2007
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Summary:A Density Functional Theory study of the adsorption energetics of various amine compounds on the gold(111) surface revealed that preferential binding occurs in under-coordinated sites. The largest binding energy is obtained when a gold adatom is placed in the fcc position and the amine positioned with the nitrogen above the adatom. The results are compared with previous calculations for thiols, phosphines, and ethynylbenzene molecules to provide a meaningful comparison within a consistent computational framework. The systematic increase in binding energy with methyl group substitution previously observed for phosphine compounds is not observed for the amine analogues. The binding energy of the amines is considerably lower than that for thiols and binding is indicated for only the adatom geometrya result consistent with experimental data.
Bibliography:ark:/67375/TPS-DNZWGKL8-0
istex:3BA18874F9B0A8CA753E7EFDEC724847A82D97E0
ISSN:1932-7447
1932-7455
DOI:10.1021/jp072494t