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金属有机混合界面处芯能级结合能的终态模拟:虚假集体静电效应引起的伪像

Final-State Simulations of Core-Level Binding Energies at Metal-Organic Hybrid Interfaces: Artifacts Caused by Spurious Collective Electrostatic Effects.

作者信息

Taucher Thomas C, Hofmann Oliver T, Zojer Egbert

机构信息

Institute of Solid State Physics, Graz University of Technology, NAWI Graz, Petersgasse 16, 8010 Graz, Austria.

出版信息

ACS Omega. 2020 Sep 29;5(40):25868-25881. doi: 10.1021/acsomega.0c03209. eCollection 2020 Oct 13.

Abstract

Core-level energies are frequently calculated to explain the X-ray photoelectron spectra of metal-organic hybrid interfaces. The current paper describes how such simulations can be flawed when modeling interfaces between physisorbed organic molecules and metals. The problem occurs when applying periodic boundary conditions to correctly describe extended interfaces and simultaneously considering core hole excitations in the framework of a final-state approach to account for screening effects. Since the core hole is generated in every unit cell, an artificial dipole layer is formed. In this work, we study methane on an Al(100) surface as a deliberately chosen model system for hybrid interfaces to evaluate the impact of this computational artifact. We show that changing the supercell size leads to artificial shifts in the calculated core-level energies that can be well beyond 1 eV for small cells. The same applies to atoms at comparably large distances from the substrate, encountered, for example, in extended, upright-standing adsorbate molecules. We also argue that the calculated work function change due to a core-level excitation can serve as an indication for the occurrence of such an artifact and discuss possible remedies for the problem.

摘要

经常计算芯能级以解释金属-有机杂化界面的X射线光电子能谱。本文描述了在对物理吸附的有机分子与金属之间的界面进行建模时,此类模拟可能存在的缺陷。当应用周期性边界条件来正确描述扩展界面,并同时在终态方法的框架内考虑芯孔激发以解释屏蔽效应时,问题就会出现。由于在每个晶胞中都会产生芯孔,因此会形成一个人工偶极层。在这项工作中,我们研究了Al(100)表面上的甲烷,将其作为一个特意选择的杂化界面模型系统,以评估这种计算假象的影响。我们表明,改变超胞大小会导致计算出的芯能级出现人工位移,对于小晶胞而言,这种位移可能远超过1 eV。对于距离衬底相当远的原子,例如在伸展的直立吸附分子中遇到的原子,情况也是如此。我们还认为,由于芯能级激发而计算出的功函数变化可以作为这种假象出现的一个指标,并讨论了针对该问题可能的补救措施。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/69f4/7557941/9d02b3c231fa/ao0c03209_0002.jpg

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