Title of article :
First-principles investigation of BNxP1−x, BNxAs1−x and BPxAs1−x ternary alloys
Author/Authors :
El Haj Hassan، نويسنده , , F. and Akbarzadeh، نويسنده , , H.، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2005
Pages :
8
From page :
170
To page :
177
Abstract :
First-principles calculations have been used to investigate the structural and electronic properties of boron ternary alloys (BNxP1−x, BNxAs1−x and BPxAs1−x) using full potential-linearized augmented plane wave (FP-LAPW) method within density functional theory (DFT). We investigated the effect of composition on lattice constants, bulk modulus and band gap. A strong deviation of the lattice constants from Vegardʹs law and the bulk modulus from linear concentration dependence (LCD) were observed for BNxP1−x and BNxAs1−x alloys, while in the case of BPxAs1−x alloy only a marginal deviation were found for both properties. This is mainly due to the large mismatch of the lattice parameter and bulk modulus of BN with the corresponding values at the other two binary semiconductors. In addition, the microscopic origins of compositional disorder were explained by using the approach of Zunger and co-workers. The disorder parameter (gap bowing) was found to be strong for BNxP1−x and BNxAs1−x alloys and was mainly caused by the chemical charge transfer effect. The volume deformation contributions for both alloys were also found to be significant, while the structural relaxation contributions to the gap bowing parameter were relatively ignorable. The gap bowing of BPxAs1−x alloy was found to be much smaller than those of the other two alloys. In order to investigate the thermodynamic stability of BNxP1−x, BeNxAs1−x and BPxAs1−x alloys we first calculated the excess enthalpy of mixing ΔHm as a function of concentration (x). Then by using a regular model solution the x-dependent interaction parameter, Ω, was obtained from the result of ΔHm versus x. Finally, by using this Ω value, the phase diagram of the alloys was calculated. It was shown that all of these alloys are stable at low temperature.
Keywords :
FP-LAPW , Band structures calculations , Boron alloys , Bowing gap , DFT
Journal title :
MATERIALS SCIENCE & ENGINEERING: B
Serial Year :
2005
Journal title :
MATERIALS SCIENCE & ENGINEERING: B
Record number :
2142846
Link To Document :
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