Please use this identifier to cite or link to this item: http://dspace.unimap.edu.my:80/xmlui/handle/123456789/27293
Title: First-principle calculations to investigate the elastic and thermodynamic properties of RBRh 3 (R =Sc, y and La) perovskite compounds
Authors: Litimein, F.
Khenata, R.
Bouhemadou, Abdelmadjid
Yarub, Al-Douri, Prof. Dr.
S., Omran
yarub@unimap.edu.my
Keywords: Debye temperature
Elastic constants
First-principle calculations
Perovskite borides
Thermodynamic properties
Issue Date: 20-Jan-2012
Publisher: Taylor and Francis Group
Citation: Molecular Physics, vol. 110(2), 2012, pages 121-128
Abstract: We have performed first-principle calculations using the full-potential linear augmented plane wave (FP-LAPW) method within density functional theory (DFT) to investigate the structural, elastic and thermodynamic properties of the cubic perovskite RBRh 3 (R=Sc, Y and La) compounds. The exchange-correlation potential is treated within the generalized gradient approximation of Perdew-Burke-Ernzerhof (GGA-PBE). Single-crystal elastic constants are calculated using the total energy variation versus strain technique, then the shear modulus, Young's modulus, Poisson's ratio and anisotropic factor are derived for polycrystalline RBRh 3 using the Voigt-Reuss-Hill approximations. Analysis of the calculated elastic constants and B/G ratios shows that these compounds are mechanically stable and ductile in nature. Using the quasi-harmonic Debye model, the effect of pressure P and temperature T on the lattice parameter a 0, bulk modulus B 0, thermal expansion coefficient , Debye temperature and the heat capacity C v for these compounds are investigated for the first time. The computed structural and elastic constants are in good agreement with the available experimental and theoretical data.
Description: Link to publisher's homepage at http://www.tandfonline.com/
URI: http://www.tandfonline.com/doi/abs/10.1080/00268976.2011.635607#.UfofZ9KvzSk
http://dspace.unimap.edu.my/123456789/27293
ISSN: 0026-8976
Appears in Collections:Institute of Nano Electronic Engineering (INEE) (Articles)



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