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将库普曼斯定理应用于密度泛函理论以进行满价带光电子能谱建模。

Application of Koopmans' theorem for density functional theory to full valence-band photoemission spectroscopy modeling.

作者信息

Li Tsung-Lung, Lu Wen-Cai

机构信息

Department of Electrophysics, National Chia-Yi University, Chiayi 60004, Taiwan.

Laboratory of Fiber Materials and Modern Textile and Growing Base for State Key Laboratory, College of Physics, Qingdao University, Qingdao, Shandong 266071, PR China; State Key Laboratory of Theoretical and Computational Chemistry, Institute of Theoretical Chemistry, Jilin University, Changchun, Jilin 130021, PR China.

出版信息

Spectrochim Acta A Mol Biomol Spectrosc. 2015 Oct 5;149:434-40. doi: 10.1016/j.saa.2015.04.084. Epub 2015 May 6.

Abstract

In this work, Koopmans' theorem for Kohn-Sham density functional theory (KS-DFT) is applied to the photoemission spectra (PES) modeling over the entire valence-band. To examine the validity of this application, a PES modeling scheme is developed to facilitate a full valence-band comparison of theoretical PES spectra with experiments. The PES model incorporates the variations of electron ionization cross-sections over atomic orbitals and a linear dispersion of spectral broadening widths. KS-DFT simulations of pristine rubrene (5,6,11,12-tetraphenyltetracene) and potassium-rubrene complex are performed, and the simulation results are used as the input to the PES models. Two conclusions are reached. First, decompositions of the theoretical total spectra show that the dissociated electron of the potassium mainly remains on the backbone and has little effect on the electronic structures of phenyl side groups. This and other electronic-structure results deduced from the spectral decompositions have been qualitatively obtained with the anionic approximation to potassium-rubrene complexes. The qualitative validity of the anionic approximation is thus verified. Second, comparison of the theoretical PES with the experiments shows that the full-scale simulations combined with the PES modeling methods greatly enhance the agreement on spectral shapes over the anionic approximation. This agreement of the theoretical PES spectra with the experiments over the full valence-band can be regarded, to some extent, as a collective validation of the application of Koopmans' theorem for KS-DFT to valence-band PES, at least, for this hydrocarbon and its alkali-adsorbed complex.

摘要

在这项工作中,将用于科恩-沙姆密度泛函理论(KS-DFT)的库普曼斯定理应用于整个价带的光电子能谱(PES)建模。为了检验这种应用的有效性,开发了一种PES建模方案,以促进理论PES光谱与实验的全价带比较。该PES模型纳入了电子电离截面在原子轨道上的变化以及光谱展宽宽度的线性色散。对原始红荧烯(5,6,11,12-四苯基四并苯)和钾-红荧烯配合物进行了KS-DFT模拟,并将模拟结果用作PES模型的输入。得出了两个结论。首先,理论总光谱的分解表明,钾解离出的电子主要保留在主链上,对苯基侧基的电子结构影响很小。通过对钾-红荧烯配合物的阴离子近似已定性获得了从光谱分解推导的这一结果和其他电子结构结果。因此验证了阴离子近似的定性有效性。其次,理论PES与实验的比较表明,结合PES建模方法的全尺度模拟大大增强了与阴离子近似相比在光谱形状上的一致性。理论PES光谱与整个价带上的实验结果的这种一致性在某种程度上可以被视为对将KS-DFT的库普曼斯定理应用于价带PES的一种集体验证,至少对于这种碳氢化合物及其碱吸附配合物是如此。

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