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通过与X射线光电子能谱(XPES)和拉曼光谱(RS)实验相关的密度泛函微扰理论(DFPT)预测,研究新型四元化合物Tl2HgGeSe4的结构、弹性、电子、光学和各向异性性质。

Structural, elastic, electronic, optical and anisotropy properties of newly quaternary Tl2HgGeSe4 via DFPT predictions associated to XPES and RS experiments.

作者信息

Halati Mohamed Salah, Khyzhun Oleg Yu, Khireddine Abderrazak, Piasecki Michal, Radkowska Ilona, Cherif Khaled Hamdi, Lounis Zakia, Caudano Yves, Bedjaoui Abdelhak, Alghamdi Ahmad, Paramasivam Prabhu, Prakash Chander, Ghoneim Sherif S M

机构信息

Scientific and Technical Research Centre for Arid Areas (C.R.S.T.R.A), water resources and treatments team, Omar El Barnaoui, Campus of Mohamed, Khider University of Biskra, 07000, Biskra, Algeria.

Laboratory of Materials (LabMat), National Polytechnique School (ENP-Maurice Audin -Oran-), El M'naouer, P.O. Box 1523, 31000, Oran, Algeria.

出版信息

Sci Rep. 2024 Jul 15;14(1):16293. doi: 10.1038/s41598-024-67231-2.

Abstract

In the present work, we report on theoretical studies of thermodynamic properties, structural and dynamic stabilities, dependence of unit-cell parameters and elastic constants upon hydrostatic pressure, charge carrier effective masses, electronic and optical properties, contributions of interband transitions in the Brillouin zone of the novel TlHgGeSe crystal. The theoretical calculations within the framework of the density-functional perturbation theory (DFPT) are carried out employing different approaches to gain the best correspondence to the experimental data. The present theoretical data indicate the dynamical stability of the title crystal and they reveal that, under hydrostatic pressure, it is much more compressible along the a-axis than along the c-axis. Strikingly, the charge effective mass values ( and ) vary considerably when the high symmetry direction changes indicating a relative anisotropy of the charge-carrier's mobility. Furthermore, the Young modulus and compressibility are characterized by the maximum and minimum values ( and ) and ( and ) that are equal to (62.032 and 28.812) GPa and (13.672 and 6.7175) TPa, respectively. Additionally, we have performed calculations of the Raman spectra (RS) and reached a good correspondence with the experimental RS spectra of the TlHgGeSe crystal. The XPES associated to RS constitutes powerful techniques to explore the oxidized states of Se and Ge in TlHgGeSe system.

摘要

在本工作中,我们报告了关于新型TlHgGeSe晶体的热力学性质、结构和动力学稳定性、晶胞参数和弹性常数对静水压力的依赖性、电荷载流子有效质量、电子和光学性质以及布里渊区带间跃迁贡献的理论研究。在密度泛函微扰理论(DFPT)框架内进行理论计算时采用了不同方法,以获得与实验数据的最佳吻合。目前的理论数据表明了标题晶体的动力学稳定性,并且揭示出在静水压力下,它沿a轴比沿c轴更易压缩。引人注目的是,当高对称方向改变时,电荷有效质量值( 和 )变化很大,这表明电荷载流子迁移率存在相对各向异性。此外,杨氏模量和压缩率分别以最大值和最小值( 和 )以及( 和 )为特征,它们分别等于(62.032和28.812)GPa以及(13.672和6.7175)TPa。另外,我们对拉曼光谱(RS)进行了计算,并与TlHgGeSe晶体的实验RS光谱取得了良好的吻合。与RS相关的X射线光电子能谱(XPES)构成了探索TlHgGeSe体系中Se和Ge氧化态的有力技术。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bad0/11251278/e8a66fecef77/41598_2024_67231_Fig1_HTML.jpg

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