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First principles study of structural and electronic properties of different phases of boron nitride
Authors:Rashid Ahmed   Fazal-e-Aleem   S. Javad Hashemifar  Hadi Akbarzadeh
Affiliation:

aCentre for High Energy Physics, University of the Punjab, Lahore 54590, Pakistan

bDepartment of Physics, Isfahan University of Technology, 84156 Isfahan, Iran

Abstract:A theoretical study of structural and electronic properties of the four phases of BN (zincblende, wurtzite, hexagonal and rhombohedral) is presented. The calculations are done by full potential (linear) augmented plane wave plus local orbitals (APW+lo) method based on the density functional theory (DFT) as employed in WIEN2k code. Using the local density approximation (LDA) and generalized gradient approximation (GGA-PBE) for the exchange correlation energy functional, we have calculated lattice parameters, bulk modulus, its pressure derivative and cohesive energy. In order to calculate electronic band structure, another form of the generalized gradient approximation proposed by Engel and Vosko (GGA-EV) has been employed along with LDA and GGA-PBE. It is found that all the three approximations exhibit similar band structure qualitatively. However, GGA-EV gives energy band gap values closer to the measured data. Our results for structural and electronic properties are compared with the experimental and other theoretical results wherever these are available.
Keywords:Density functional theory   III–V Compounds   Boron nitride   Bandgap   WIEN2K   FPLAPW
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