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五氧化二钒近边吸收光谱的含时密度泛函研究

Time dependent density functional investigation of the near-edge absorption spectra of V2O5.

作者信息

De Francesco R, Stener M, Causà M, Toffoli D, Fronzoni G

机构信息

Dipartimento di Scienze Chimiche, Via L. Giorgieri 1, Università di Trieste, I-34127 Trieste, Italy.

出版信息

Phys Chem Chem Phys. 2006 Oct 7;8(37):4300-10. doi: 10.1039/b607705f. Epub 2006 Aug 14.

Abstract

We have performed Time Dependent Density Functional Theory (TDDFT) calculations employing a cluster model of the core excitation spectra of vanadium pentoxide, V(2)O(5). The excitation energies and dipole transition moments are determined for all the core edges, vanadium and oxygen K- and vanadium L-edges, treating them at the same level of accuracy. The agreement between the TDDFT theoretical spectra and the experimental data is rather good, particularly at the V and O K-edges. A quantitative reproduction of the fine pre-edge structures appears more difficult for the V L-edge. The comparison between the TDDFT results and the results obtained at the simpler one electron Kohn-Sham (KS) level indicates that the V and O K edges can be correctly described within a single particle approximation (KS), while the strong modification of the V L-edge structures from the KS to the TDDFT description emphasizes the importance of configuration mixing to treat the metal 2p excitations. The origin of the calculated pre-edge features is analyzed in detail with the help of the atom-projected density-of-states of the unoccupied levels. This analysis emphasizes the V 3d dominant character of the final states in the conduction band, probed by the V L-absorption. The strong octahedral distortion of the V(2)O(5) structure allows the mixing of the 3d state with the V 4p components, which are mapped by the oscillator strength in the V K-edge spectrum. The high intensity of the O 1s transitions reflects the presence of a significant O 2p component in the conduction band.

摘要

我们采用五氧化二钒(V₂O₅)的核心激发光谱团簇模型进行了含时密度泛函理论(TDDFT)计算。确定了所有核心边(钒和氧的K边以及钒的L边)的激发能和偶极跃迁矩,并以相同的精度水平对其进行处理。TDDFT理论光谱与实验数据之间的吻合度相当好,尤其是在钒和氧的K边。对于钒的L边,精细的边前结构的定量再现似乎更困难。TDDFT结果与在更简单的单电子科恩-沙姆(KS)水平上获得的结果之间的比较表明,钒和氧的K边可以在单粒子近似(KS)内得到正确描述,而从KS描述到TDDFT描述时钒L边结构的强烈变化强调了组态混合在处理金属2p激发中的重要性。借助未占据能级的原子投影态密度详细分析了计算出的边前特征的起源。该分析强调了通过钒L吸收探测的导带中终态的钒3d主导特征。V₂O₅结构的强烈八面体畸变使得3d态与钒4p成分混合,这在钒K边光谱中由振子强度映射。氧1s跃迁的高强度反映了导带中存在显著的氧2p成分。

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