Published July 15, 1990 | Version v1
Journal article

Self-consistent calculations of the energy bands and bonding properties of B12C3

  • 1. Department of Physics, University of Texas, Austin, Texas 78712 (USA)

Description

Using a basis set of ∼3580 plane waves, we perform ab initio self-consistent calculations of the energy bands and cohesive energy of B12C3. Calculating stresses and forces, both the lattice constants and the positions of the atoms in the unit cell are determined. If trigonal symmetry is forced (i.e., all three carbons on the chain), the cohesive energy is 108.20 eV/(unit cell). In the experimentally observed structure with one boron on each chain and one carbon on each icosahedron, the cohesive energy is 109.48 eV/(unit cell). An indirect energy gap of 2.781 eV is obtained for this structure and charge-density--contour plots indicate that the ratio of the charge on the carbons to that on the borons is much greater than the 4:3 ratio of their valences

Additional details

Publishing Information

Journal Title
Physical Review, B: Condensed Matter
Journal Volume
42
Journal Issue
2
Series
Phys. Rev., B: Condens. Matter.
Journal Page Range
1394-1403
ISSN
0163-1829
CODEN
PRBMD

INIS

Country of Publication
United States
Country of Input or Organization
United States
INIS RN
21086175
Subject category
S36: MATERIALS SCIENCE;
Descriptors DEI
BAND THEORY; BINDING ENERGY; BORON CARBIDES; ENERGY GAP; ENERGY SPECTRA; LATTICE PARAMETERS
Descriptors DEC
BORON COMPOUNDS; CARBIDES; CARBON COMPOUNDS; ENERGY; SPECTRA