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吸附原子在F4TCNQ于Au(111)表面吸附过程中的作用

Role of Adatoms for the Adsorption of F4TCNQ on Au(111).

作者信息

Berger Richard K, Jeindl Andreas, Hörmann Lukas, Hofmann Oliver T

机构信息

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

出版信息

J Phys Chem C Nanomater Interfaces. 2022 May 5;126(17):7718-7727. doi: 10.1021/acs.jpcc.2c00994. Epub 2022 Apr 21.

Abstract

Organic adlayers on inorganic substrates often contain adatoms, which can be incorporated within the adsorbed molecular species, forming two-dimensional metal-organic frameworks at the substrate surface. The interplay between native adatoms and adsorbed molecules significantly changes various adlayer properties such as the adsorption geometry, the bond strength between the substrate and the adsorbed species, or the work function at the interface. Here, we use dispersion-corrected density functional theory to gain insight into the energetics that drive the incorporation of native adatoms within molecular adlayers based on the prototypical, experimentally well-characterized system of F4TCNQ on Au(111). We explain the adatom-induced modifications in the adsorption geometry and the adsorption energy based on the electronic structure and charge transfer at the interface.

摘要

无机基底上的有机吸附层通常包含吸附原子,这些吸附原子可以并入吸附的分子物种中,在基底表面形成二维金属有机框架。原生吸附原子与吸附分子之间的相互作用显著改变了各种吸附层性质,如吸附几何结构、基底与吸附物种之间的键强度或界面处的功函数。在此,我们基于在Au(111)上实验表征良好的典型体系F4TCNQ,使用色散校正密度泛函理论来深入了解驱动原生吸附原子并入分子吸附层的能量学。我们基于界面处的电子结构和电荷转移,解释了吸附原子引起的吸附几何结构和吸附能量的变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2708/9082607/423d16f25b8b/jp2c00994_0002.jpg

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