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分散作用对钴(II)八乙基卟啉单层在Au(111)和HOPG(0001)基底上表面相互作用的影响:一项比较性第一性原理研究

Effect of dispersion on surface interactions of cobalt(II) octaethylporphyrin monolayer on Au(111) and HOPG(0001) substrates: a comparative first principles study.

作者信息

Chilukuri Bhaskar, Mazur Ursula, Hipps K W

机构信息

Department of Chemistry, Washington State University, Pullman, Washington 99164-4630, USA.

出版信息

Phys Chem Chem Phys. 2014 Jul 21;16(27):14096-107. doi: 10.1039/c4cp01762e. Epub 2014 Jun 5.

Abstract

A density functional theory study of a cobalt(II) octaethylporphyrin (CoOEP) monolayer on Au(111) and HOPG(0001) surfaces was performed under periodic boundary conditions. Calculations with and without dispersion corrections are performed and the effect of van der Waals forces on the interface properties is analyzed. Calculations have determined that the CoOEP molecule tends to bind at the 3-fold and the 6-fold center sites on Au(111) and HOPG(0001), respectively. Geometric optimizations at the center binding sites have indicated that the porphyrin molecules (in the monolayer) lie flat on both substrates. Calculations also reveal that the CoOEP monolayer binds slightly more strongly to Au(111) than to HOPG(0001). Charge density difference plots disclose that charge is redistributed mostly around the porphyrin plane and the first layer of the substrates. Dispersion interactions cause a larger substrate to molecule charge pushback on Au(111) than on HOPG. CoOEP adsorption tends to lower the work functions of either substrate, qualitatively agreeing with the experimental photoelectron spectroscopic data. Comparison of the density of states (DOS) of the isolated CoOEP molecule with that on gold and HOPG substrates showed significant band shifts around the Fermi energy due to intermolecular orbital hybridization. Simulated STM images were plotted with the Tersoff-Hamann approach using the local density of states, which also agree with the experimental results. This study elucidates the role of dispersion for better describing porphyrin-substrate interactions. A DFT based overview of geometric, adsorption and electronic properties of a porphyrin monolayer on conductive surfaces is presented.

摘要

在周期性边界条件下,对金(111)和高定向热解石墨(HOPG,0001)表面上的钴(II)八乙基卟啉(CoOEP)单层进行了密度泛函理论研究。进行了有无色散校正的计算,并分析了范德华力对界面性质的影响。计算确定CoOEP分子倾向于分别在金(111)和HOPG(0001)的三重和六重中心位点结合。在中心结合位点的几何优化表明,卟啉分子(在单层中)在两种基底上均平躺。计算还表明,CoOEP单层与金(111)的结合比与HOPG(0001)的结合略强。电荷密度差图显示,电荷主要在卟啉平面和基底的第一层周围重新分布。色散相互作用导致金(111)上的基底到分子的电荷推斥比HOPG上的更大。CoOEP吸附倾向于降低任何一种基底的功函数,这在定性上与实验光电子能谱数据一致。将孤立的CoOEP分子的态密度(DOS)与金和HOPG基底上的态密度进行比较,结果表明由于分子间轨道杂化,费米能级附近出现了明显的能带移动。使用局部态密度,通过Tersoff-Hamann方法绘制了模拟STM图像,其也与实验结果一致。本研究阐明了色散在更好地描述卟啉-基底相互作用中的作用。给出了基于DFT的导电表面上卟啉单层的几何、吸附和电子性质的概述。

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