Low-compressibility and hard materials ReB2 and WB2: Prediction from first-principles study


Autoria(s): Hao XF; Xu YH; Wu ZJ; Zhou DF; Liu XJ; Cao XQ; Meng J
Data(s)

2006

Resumo

First-principle calculations are performed to investigate the structural, elastic, and electronic properties of ReB2 and WB2. The calculated equilibrium structural parameters of ReB2 are consistent with the available experimental data. The calculations indicate that WB2 in the P6(3)/mmc space group is more energetically stable under the ambient condition than in the P6/mmm. Based on the calculated bulk modulus, shear modulus of polycrystalline aggregate, ReB2 and WB2 can be regarded as potential candidates of ultra-incompressible and hard materials. Furthermore, the elastic anisotropy is discussed by investigating the elastic stiffness constants. Density of states and electron density analysis unravel the covalent bonding between the transition metal atoms and the boron atoms as the driving force of the high bulk modulus and high shear modulus as well as small Poisson's ratio.

Identificador

http://ir.ciac.jl.cn/handle/322003/16099

http://www.irgrid.ac.cn/handle/1471x/151815

Idioma(s)

英语

Fonte

Hao XF;Xu YH;Wu ZJ;Zhou DF;Liu XJ;Cao XQ;Meng J.Low-compressibility and hard materials ReB2 and WB2: Prediction from first-principles study,PHYSICAL REVIEW B,2006,74(22):文献编号:224112

Palavras-Chave #SUPERHARD MATERIALS #ELECTRONIC-STRUCTURE #CRYSTAL STRUCTURE #DIBORIDE #ELASTICITY #DESIGN #OSB2 #RUB2 #GAS
Tipo

期刊论文