Morbec Juliana M, Kratzer Peter
Faculty of Physics, University of Duisburg-Essen, Lotharstrasse 1, 47057 Duisburg, Germany.
J Chem Phys. 2017 Jan 21;146(3):034702. doi: 10.1063/1.4973839.
Using first-principles calculations based on density-functional theory (DFT), we investigated the effects of the van der Waals (vdW) interactions on the structural and electronic properties of anthracene and pentacene adsorbed on the Ag(111) surface. We found that the inclusion of vdW corrections strongly affects the binding of both anthracene/Ag(111) and pentacene/Ag(111), yielding adsorption heights and energies more consistent with the experimental results than standard DFT calculations with generalized gradient approximation (GGA). For anthracene/Ag(111) the effect of the vdW interactions is even more dramatic: we found that "pure" DFT-GGA calculations (without including vdW corrections) result in preference for a tilted configuration, in contrast to the experimental observations of flat-lying adsorption; including vdW corrections, on the other hand, alters the binding geometry of anthracene/Ag(111), favoring the flat configuration. The electronic structure obtained using a self-consistent vdW scheme was found to be nearly indistinguishable from the conventional DFT electronic structure once the correct vdW geometry is employed for these physisorbed systems. Moreover, we show that a vdW correction scheme based on a hybrid functional DFT calculation (HSE) results in an improved description of the highest occupied molecular level of the adsorbed molecules.
基于密度泛函理论(DFT)的第一性原理计算,我们研究了范德华(vdW)相互作用对吸附在Ag(111)表面的蒽和并五苯的结构和电子性质的影响。我们发现,包含vdW校正会强烈影响蒽/Ag(111)和并五苯/Ag(111)的结合,与采用广义梯度近似(GGA)的标准DFT计算相比,产生的吸附高度和能量与实验结果更一致。对于蒽/Ag(111),vdW相互作用的影响更为显著:我们发现,“纯”DFT-GGA计算(不包括vdW校正)导致倾向于倾斜构型,这与平躺吸附的实验观察结果相反;另一方面,包括vdW校正会改变蒽/Ag(111)的结合几何形状,有利于平躺构型。一旦为这些物理吸附系统采用正确的vdW几何形状,使用自洽vdW方案获得的电子结构与传统DFT电子结构几乎无法区分。此外,我们表明,基于混合泛函DFT计算(HSE)的vdW校正方案能够更好地描述吸附分子的最高占据分子能级。