Structural, Elastic, and Electronic Properties of CeN and LuN Using: Ab Initio Study

被引:0
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作者
Allal Oualdine
Ali Bentouaf
Amar Chebli
Boukhari Nouamane
Amel Zahira Bouyakoub
Brahim Aïssa
机构
[1] University of Sidi Bel-Abbes,Physics Department
[2] University of Djillali Liabès,Laboratory of Physico
[3] University of Dr. Moulay Tahar,Chemitry of Advanced Materials
[4] Université des Sciences et de la Technologie d’Oran Mohamed Boudiaf,Faculty of Technology
[5] Hamad Bin Khalifa University,Laboratoire Microscope Electronique et Science des Matériaux
[6] Qatar Foundation,Qatar Environment and Energy Research Institute
[7] Institut National de la Recherche Scientifique,undefined
[8] Centre INRS-EMT,undefined
关键词
FP-LMTO; Density of states; LDA + U; Electronic properties; Elastic properties;
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学科分类号
摘要
We report on the electronic, structural, and elastic property calculations conducted for the rare-earth (RE) nitride compounds in the rocksalt structure (CeN and LuN compounds) using the full-potential linear muffin-tin orbital method (FP-LMTO) based on the spin density functional theory (DFT) calculations using the LSDA + U approach (local spin density approximation with Hubbard-U corrections). The LSDA + U approximation is applied to the 4f as well as 5d states. Various space groups were considered including the NaCl (Fm-3m (225)), the cesium chloride [CsCl(Pm-3m (221))], and the zinc blende [ZnS(F-43m 216))]. Our obtained results indicate that the NaCl-type structure is stable than all the other phases, while the predicted elastic constants were found to satisfy the mechanical stability. The related mechanical properties such as the anisotropy factor (A), Poisson’s ratio (υ), Young’s modulus (E), and the shear modulus (G) for the same NaCl structure were also calculated. Finally, the band structure calculations of the CeN and LuN have revealed half-metallic and semiconductor behaviour, respectively. The obtained results are presented and in-depth discussed.
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页码:3323 / 3330
页数:7
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