TY - JOUR
T1 - First-principles studies of the structural, elastic, electronic and thermal properties of Ni3Nb
AU - Cao, Yong
AU - Zhu, Jingchuan
AU - Nong, Zhisheng
AU - Yang, Xiawei
AU - Liu, Yong
AU - Lai, Zhonghong
PY - 2013
Y1 - 2013
N2 - First-principles calculations were performed to investigate the structural, elastic, electronic and thermal properties of Ni3Nb. The calculated results are agreed well with the available experimental data. The chemical bonding was interpreted by calculating the density of states, electron density distribution and Mulliken analysis. Ni3Nb has a combination of metallic, ionic and covalent bonding properties. Elastic constants were calculated, and the bulk modulus, shear modulus, Young's modulus and Poisson's ratio of polycrystalline aggregates were derived. The value of B/G is bigger than 1.75 and the material is ductile. Electronic density of states (DOSs) and charge density distribution were also calculated to reveal the underlying mechanism of structural stability and mechanical properties. Moreover, the pressure and temperature dependences of thermal expansion coefficient, bulk modulus, Debye temperature and heat capacity in a wide pressure (0-40 GPa) and temperature (0-1600 K) ranges are presented in this study.
AB - First-principles calculations were performed to investigate the structural, elastic, electronic and thermal properties of Ni3Nb. The calculated results are agreed well with the available experimental data. The chemical bonding was interpreted by calculating the density of states, electron density distribution and Mulliken analysis. Ni3Nb has a combination of metallic, ionic and covalent bonding properties. Elastic constants were calculated, and the bulk modulus, shear modulus, Young's modulus and Poisson's ratio of polycrystalline aggregates were derived. The value of B/G is bigger than 1.75 and the material is ductile. Electronic density of states (DOSs) and charge density distribution were also calculated to reveal the underlying mechanism of structural stability and mechanical properties. Moreover, the pressure and temperature dependences of thermal expansion coefficient, bulk modulus, Debye temperature and heat capacity in a wide pressure (0-40 GPa) and temperature (0-1600 K) ranges are presented in this study.
KW - Elastic properties
KW - Electronic properties
KW - NiNb
KW - Thermodynamic properties
UR - http://www.scopus.com/inward/record.url?scp=84878157217&partnerID=8YFLogxK
U2 - 10.1016/j.commatsci.2013.04.022
DO - 10.1016/j.commatsci.2013.04.022
M3 - 文章
AN - SCOPUS:84878157217
SN - 0927-0256
VL - 77
SP - 208
EP - 213
JO - Computational Materials Science
JF - Computational Materials Science
ER -