First Principles Investigation of the Elastic, Optoelectronic and Thermal Properties of XRuSb: (X = V, Nb, Ta) Semi-Heusler Compounds Using the mBJ Exchange Potential

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作者
K. Bencherif
A. Yakoubi
N. Della
O. Miloud Abid
H. Khachai
R. Ahmed
R. Khenata
S. Bin Omran
S. K. Gupta
G. Murtaza
机构
[1] Université Djillali Liabès de Sidi Bel Abbès,Laboratoire d’Étude des Matériaux and Instrumentations Optiques, Département Matériaux et Développement Durable, Faculté des Sciences Exactes
[2] Université de Mascara,Département des Sciences et Techniques, Faculté des Sciences et Technologies
[3] Universiti Teknologi Malaysia,Department of Physics, Faculty of Science
[4] UTM,Laboratoire de Physique Quantique de la Matière et de Modélisation Mathématique (LPQ3M)
[5] Université de Mascara,Department of Physics and Astronomy, College of Science
[6] King Saud University,Department of Physics
[7] St. Xavier’s College,Materials Modeling Lab, Department of Physics
[8] Islamia College University,undefined
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关键词
Elastic constants; optoelectronic properties; thermal properties; density functional theory;
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摘要
Semi-Heusler materials are intensively investigated due to their potential use in diverse applications, such as in spintronics and green energy applications. In this work, we employ the density functional theory to calculate the structural, electronic, elastic, thermal and optical properties of the VRuSb, NbRuSb and TaRuSb semi-Heusler compounds. The calculated results for the lattice constants, bulk moduli and their corresponding pressure derivative values are in fairly good agreement with previous works. In addition, besides the local density approximation, the modified Becke–Johnson exchange potential is also used to improve the value of the band gaps. The bonding nature reveals a mixture of covalent and ionic bonding character of the VRuSb, NbRuSb and TaRuSb compounds. Furthermore, the elastic constants (Cij) and the related elastic moduli confirm their stability in the cubic phase and demonstrate their ductile nature. We also analyze the influence of the pressure and temperature on the primitive cell volume, heat capacity, volume expansion coefficient, and Debye temperature of the semi-Heusler compounds. Additionally, we investigate the optical properties, such as the complex dielectric function, refractive index, reflectivity, and the energy loss function.
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页码:3479 / 3490
页数:11
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