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Electronic and optical properties of thiogermanate AgGaGeS4: theory and experiment

赝势 价(化学) Crystal(编程语言) 态密度 密度泛函理论 电子结构 带隙 平面波 电子能带结构 谱线 原子物理学 X射线光电子能谱 凝聚态物理 化学 材料科学 物理 计算化学 光学 核磁共振 量子力学 计算机科学 程序设计语言 有机化学
作者
Tuan V. Vu,Vo D. Dat,A.A. Lavrentyev,B.V. Gabrelian,Nguyen N. Hieu,G.L. Myronchuk,О.Y. Khyzhun
出处
期刊:RSC Advances [The Royal Society of Chemistry]
卷期号:13 (2): 881-887 被引量:2
标识
DOI:10.1039/d2ra07639j
摘要

The electronic and optical properties of an AgGaGeS4 crystal were studied by first-principles calculations, where the full-potential augmented plane-wave plus local orbital (APW+lo) method was used together with exchange-correlation pseudopotential described by PBE, PBE+U, and TB-mBJ+U approaches. To verify the correctness of the present theoretical calculations, we have measured for the AgGaGeS4 crystal the XPS valence-band spectrum and the X-ray emission bands representing the energy distribution of the electronic states with the biggest contributions in the valence-band region and compared them on a general energy scale with the theoretical results. Such a comparison indicates that, the calculations within the TB-mBJ+U approach reproduce the electron-band structure peculiarities (density of states - DOS) of the AgGaGeS4 crystal which are in fairly good agreement with the experimental data based on measurements of XPS and appropriate X-ray emission spectra. In particular, the DOS of the AgGaGeS4 crystal is characterized by the existence of well-separated peaks/features in the vicinity of -18.6 eV (Ga-d states) and around -12.5 eV and -7.5 eV, which are mainly composed by hybridized Ge(Ga)-s/p and S-p state. We gained good agreement between the experimental and theoretical data with respect to the main peculiarities of the energy distribution of the electronic S 3p, Ag 4d, Ga 4p and Ge 4p states, the main contributors to the valence band of AgGaGeS4. The bottom of the conduction band is mostly donated by unoccupied Ge-s states, with smaller contributions of unoccupied Ga-s, Ag-s and S-p states, too. The AgGaGeS4 crystal is almost transparent for visible light, but it strongly absorbs ultra-violet light where the significant polarization also occurs.

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