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Ab initio investigation of the structural and unusual electronic properties of α-CuSe (klockmannite)
作者姓名:Ali Reza Shojaei  Zahra Nourbakhsh  Aminollah Vaez  Mohammad Dehghani
作者单位:[1]Physics Department, Faculty of Science, University of lsfahan, 8174-6-73441 Isfahan, Iran [2]Physics Department, Technical and Vocational University-Mohajer Center, 81645-315 Isfahan, Iran
基金项目:performed based on research project number 2054361 in the University of Isfahan (UI), Isfahan, Iran
摘    要:In this article, a computational analysis has been performed on the structural properties and predominantly on the electronic properties of the α-CuSe (klockmannite) using density functional theory. The studies in this work show that the best structural results, in comparison to the experimental values, belong to the PBEsol-GGA and WC-GGA functionals. However, the best results for the bulk modulus and density of states (DOSs) are related to the local density approximation (LDA) functional. Through utilized approaches, the LDA is chosen to investigate the electronic structure. The results of the electronic properties and geometric optimization of α-CuSe respectively show that this compound is conductive and non-magnetic. The curvatures of the energy bands crossing the Fermi level explicitly reveal that major charge carriers in CuSe are holes, whose density is estimated to be 0.86×1022 hole/cm3. In particular, the Fermi surfaces in the first Brillouin zone demonstrate interplane conductivity between (001) planes. Moreover, the charge carriers among them are electrons and holes simultaneously. The conductivity in CuSe is mainly due to the hybridization between the d orbitals of Cu atoms and the p orbitals of Se atoms. The former orbitals have the dual nature of localization and itinerancy.

关 键 词:电子性质  结构特性  从头算  密度泛函理论  局域密度近似  第一布里渊区  电子特性  体积模量
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