Theoretical study of BN, BP, and BAs at high pressures
- 15 October 1987
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review B
- Vol. 36 (11) , 6058-6068
- https://doi.org/10.1103/physrevb.36.6058
Abstract
The present work employs the total-energy pseudopotential technique to calculate the relative stabilities at high pressures of the zinc-blende β-Sn, and rocksalt structures in the series of compounds BN, BP, and BAs. For compressed volumes these compounds are shown to favor the rocksalt phase over β-Sn, even though BP and BAs are the least ionic of the III-V zinc-blende compounds. This indicates that the stability of the rocksalt structure under pressure depends on more than just the ionicity factor. The structural preference is analyzed in terms of charge densities. The charge rearrangements at different volumes are also studied. We find that for BN the charge associated with B decreases with volume compression while the charge associated with N increases. In BP and BAs the opposite trend is observed, with P and As behaving like B in BN. BN appears to behave like a typical III-V compound semiconductor in its charge distribution while BP and BAs are anomalous cases which can be characterized by reversing the standard assignments for the anions and cations in these compounds.Keywords
This publication has 27 references indexed in Scilit:
- Pressure coefficients of band gaps of diamondPhysical Review B, 1987
- Theory of structural and electronic properties of BAsJournal of Physics C: Solid State Physics, 1986
- Electronic and structural properties of BN and BPPhysical Review B, 1986
- Pressure coefficients of band gaps in semiconductorsSolid State Communications, 1984
- Ab initioself-consistent study of the electronic structure and properties of cubic boron nitridePhysical Review B, 1978
- Characterization of wurtzite type boron nitride synthesized by shock compressionMaterials Research Bulletin, 1974
- Synthesis of polycrystalline cubic BNMaterials Research Bulletin, 1972
- New Set of Tetrahedral Covalent RadiiPhysical Review B, 1970
- Direct Transformation of Hexagonal Boron Nitride to Denser FormsThe Journal of Chemical Physics, 1963
- An X-ray study of boron nitrideActa Crystallographica, 1952