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金原子和纳米团簇在掺 Li 的 SiO2/Mo(112) 薄膜上的充电机制。

Mechanism of charging of Au atoms and nanoclusters on Li doped SiO2/Mo(112) films.

机构信息

Dipartimento di Scienza dei Materiali, Università di Milano-Bicocca, via Cozzi, 53-20125 Milano, Italy.

出版信息

Chemphyschem. 2010 Feb 1;11(2):412-8. doi: 10.1002/cphc.200900662.

Abstract

We present the results of supercell DFT calculations on the adsorption properties of Au atoms and small clusters (Au(n), n < or = 5) on a SiO(2)/Mo(112) thin film and on the same system modified by doping with Li atoms. The adsorbed Li atoms penetrate into the pores of the silica film and become stabilized at the interface where they donate one electron to the Mo metal. As a consequence, the work function of the Li-doped SiO(2)/Mo(112) film is reduced and results in modified adsorption properties. In fact, while on the undoped SiO(2)/Mo(112) film Au interacts only very weakly, on the Li-doped surface Au atoms and clusters bind with significant bond strengths. The calculations show that this is due to the occurrence of an electron transfer from the SiO(2)/Mo(112) interface to the adsorbed gold. The occurrence of the charge transfer is related to the work function of the support but also to the possibility for the silica film to undergo a strong polaronic distortion.

摘要

我们呈现了超胞密度泛函理论计算的结果,该结果涉及到金原子和小团簇(Au(n),n <= 5)在 SiO(2)/Mo(112) 薄膜上以及经 Li 原子掺杂修饰的相同体系上的吸附特性。吸附的 Li 原子会渗透到二氧化硅薄膜的孔中,并在与 Mo 金属的界面处稳定下来,在那里它们会向 Mo 金属捐献一个电子。因此,Li 掺杂的 SiO(2)/Mo(112) 薄膜的功函数会降低,从而导致吸附特性发生改变。事实上,在未掺杂的 SiO(2)/Mo(112) 薄膜上,Au 的相互作用非常微弱,而在 Li 掺杂的表面上,Au 原子和团簇则具有显著的键合强度。计算表明,这是由于从 SiO(2)/Mo(112) 界面到吸附金的电子转移所致。电荷转移的发生与支撑体的功函数有关,但也与二氧化硅薄膜发生强烈极化子畸变的可能性有关。

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