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Structural,electronic, elastic and thermodynamic properties of AlSi2RE (RE = La,Ce, Pr and Nd) from first-principle calculations
Authors:Yongzhong Zhan  Wenping Jiang  Yong Du
Affiliation:1. Laboratory of Nonferrous Metal Materials and New Processing Technology, Ministry of Education, Guangxi University, Nanning, Guangxi 530004, PR China;2. State Key Laboratory of Powder Metallurgy, Central South University, Changsha, Hunan 410083, PR China;1. School of Materials Science and Engineering, Hebei University of Science and Technology, Shijiazhuang, Hebei, 050018, PR China;2. Materials Research Center, CITIC Dicastal Co. Ltd., Qinhuangdao 066004, PR China;1. Key Laboratory of Aerospace Advanced Materials and Performance of Ministry of Education, School of Material Science and Engineering, Beihang University, Beijing 100191, China;2. Institute for Materials Research, Tohoku University, Sendai 980-8577, Japan;3. Center for Advanced Die Engineering and Technology, Gifu University, 1-1 Yanagido, Gifu City, Gifu 501-1193, Japan;4. Hebei Sitong New Metal Material Co., Ltd., Baoding 071105, China;1. Département de Technologie, Faculté de Technologie, Université du 20 Août 1955-Skikda, Algeria;2. Laboratoire LPR, Département de Physique, Faculté des Sciences, Université Badji Mokhtar, Annaba, Algeria;3. Laboratoire LMSSM, Département de Physique, Faculté des Sciences, Université Djillali Liabès, Sidi Bel Abbès, Algeria
Abstract:It is of academic interest to study the ternary intermetallic compounds of the Al–Si–RE system for the development of both structural and functional materials. In this work, the structural, electronic, elastic and thermodynamic properties of the AlSi2RE (RE = La, Ce, Pr and Nd) compounds was investigated using first-principle calculations based on density functional theory. The calculated structural parameters of AlSi2RE compounds are consistent with the experimental data. Due to the fact that there is strong Coulomb correlation among the partially filled 4f electron for RE atoms, we present a combination of the GGA and the LSDA + U approaches to investigate the electronic structures of Al3RE compounds in order to obtain the appropriate results. The elastic constants were determined from a linear fit of the calculated stress–strain function according to Hooke’s law. The bulk modulus B, shear modulus G, Young’s modulus E, and Poisson’s ratio ν of polycrystalline AlSi2RE compounds were determined using the Voigt–Reuss–Hill (VRH) averaging scheme. The Debye temperature of AlSi2RE compounds can be obtained from elastic constants. The temperature dependence of the internal energy, free energy, entropy and heat capacity for AlSi2RE compounds were also calculated by using the quasi-harmonic approximation.
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