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密度泛函理论研究氢在金和金银团簇上的结合。

Density functional study of hydrogen binding on gold and silver-gold clusters.

机构信息

School of Chemical Engineering, Henan University of Science and Technology, Luoyang, Henan 471003, P. R. China.

出版信息

J Phys Chem A. 2010 Apr 15;114(14):4917-23. doi: 10.1021/jp910230p.

Abstract

A theoretical study was carried out on the binding of hydrogen on small bimetallic Ag(m)Au(n) (m + n < or = 5) and pure Au(n) (n < or = 5) clusters with neutral, negative, and positive charge state. It is found that the composition and charge state of clusters have strong influence on the most favorable binding site. The adiabatic ionization potentials, electron affinities, and hydrogen binding energies of cluster hydrides increase with the Au content increasing for the given cluster size. The cationic silver-gold cluster hydrides prefer ejection of Au-containing products whereas the anionic silver-gold cluster hydrides prefer ejection of Ag-containing products. The magnitude of metal-H frequency in combination with the metal-H bond length indicates that, with the same type of the binding site, the Au-H interaction is stronger than the Ag-H interaction.

摘要

针对带中性、负电荷和正电荷的小双金属 Ag(m)Au(n)(m+n<=5)和纯 Au(n)(n<=5)团簇与氢的结合进行了理论研究。结果表明,团簇的组成和电荷状态对最有利的结合位点有很强的影响。对于给定的团簇尺寸,随着 Au 含量的增加,团簇氢化物的绝热电离势、电子亲和能和氢结合能增加。阳离子银-金团簇氢化物倾向于释放含 Au 的产物,而阴离子银-金团簇氢化物倾向于释放含 Ag 的产物。金属-H 振动频率与金属-H 键长的结合表明,在相同类型的结合位点下,Au-H 相互作用强于 Ag-H 相互作用。

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