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金(111)表面芳香族自组装单分子层的准粒子能量计算

Calculation of Quasi-Particle Energies of Aromatic Self-Assembled Monolayers on Au(111).

作者信息

Li Yan, Lu Deyu, Galli Giulia

机构信息

Chemistry Department, University of California, Davis, California 95616.

出版信息

J Chem Theory Comput. 2009 Apr 14;5(4):881-6. doi: 10.1021/ct800465f.

Abstract

We present many-body perturbation theory calculations of the electronic properties of phenylene diisocyanide self-assembled monolayers (SAMs) on a gold surface. Using structural models obtained within density functional theory (DFT), we have investigated how the SAM molecular energies are modified by self-energy corrections and how they are affected by the presence of the surface. We have employed a combination of GW (G = Green's function; W = screened Coulomb interaction) calculations of the SAM quasi-particle energies and a semiclassical image potential model to account for surface polarization effects. We find that it is essential to include both quasi-particle corrections and surface screening in order to provide a reasonable estimate of the energy level alignment at a SAM-metal interface. In particular, our results show that within the GW approximation the energy distance between phenylene diisocyanide SAM energy levels and the gold surface Fermi level is much larger than that found within DFT, e.g., more than double in the case of low packing densities of the SAM.

摘要

我们展示了对金表面亚苯基二异氰化物自组装单分子层(SAMs)电子性质的多体微扰理论计算。使用在密度泛函理论(DFT)中获得的结构模型,我们研究了自能修正如何改变SAM分子能量以及表面的存在如何影响这些能量。我们采用了GW(G = 格林函数;W = 屏蔽库仑相互作用)计算SAM准粒子能量与半经典镜像势模型相结合的方法来考虑表面极化效应。我们发现,为了合理估计SAM - 金属界面处的能级对齐,必须同时包含准粒子修正和表面屏蔽。特别是,我们的结果表明,在GW近似下,亚苯基二异氰化物SAM能级与金表面费米能级之间的能量距离比在DFT中发现的要大得多,例如,在SAM低堆积密度的情况下,该距离增加了一倍多。

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