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自洽的广义梯度近似元研究芳香族分子在贵金属表面的吸附。

Self-consistent meta-generalized gradient approximation study of adsorption of aromatic molecules on noble metal surfaces.

机构信息

Interdisciplinary Nanoscience Center (iNANO) and Department of Physics and Astronomy, Aarhus University, DK-8000 Aarhus C, Denmark.

出版信息

J Chem Phys. 2011 Aug 28;135(8):084704. doi: 10.1063/1.3624529.

Abstract

The adsorption of benzene, pyridine, and two nucleobases on the Au(111) surface has been investigated using a fully relaxed, self-consistent meta-generalized gradient approximation (meta-GGA) density functional theory setup with the M06-L functional. The meta-GGA based molecule-surface separations are shortened and the adsorption bond strengths of the molecules are greatly improved over the virtually non-interacting results obtained when using a plain GGA exchange-correlation functional. The nucleobases containing oxygen atoms show higher corrugation with adsorption site and orientation than the other aromatic molecules considered. The adsorption of pentacene is studied on Au, Ag, and Cu surfaces. In agreement with experiment, the adsorption energies are found to increase with decreasing nobleness, but the dependency is underestimated. We point out how the kinetic energy density can discriminate between covalent and non-covalent bonding regions of orbital overlap.

摘要

使用基于 M06-L 泛函的完全弛豫、自洽的meta 广义梯度近似(meta-GGA)密度泛函理论方法,研究了苯、吡啶和两个碱基在 Au(111)表面上的吸附。与使用普通 GGA 交换相关泛函得到的几乎非相互作用的结果相比,基于 meta-GGA 的分子-表面分离缩短,分子的吸附键强度大大提高。含氧原子的碱基在吸附位置和取向方面表现出比其他芳香族分子更高的起伏。研究了并五苯在 Au、Ag 和 Cu 表面上的吸附。与实验一致,发现吸附能随降低的稀有性而增加,但依赖性被低估了。我们指出了动能密度如何区分轨道重叠的共价和非共价键区域。

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