TY - JOUR
T1 - Structural, Elastic, Mechanical and Electronic Properties of NbW-Based Intermetallic Compounds
T2 - First-Principles Calculations
AU - Zhu, Sheng Hai
AU - Qin, Han
AU - Liu, Fu Sheng
AU - Tang, Bin
AU - Liu, Qi Jun
N1 - Publisher Copyright:
© 2019 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim
PY - 2019/8
Y1 - 2019/8
N2 - The structural, elastic and electronic properties of NbW-based intermetallic compounds have been investigated by first-principles calculations from CASTEP code based on density functional theory (DFT). The calculated lattice parameters of NbW-based intermetallic compounds are in good agreement with the experimental values. The calculated elastic constants indicate that NbW, CNb0.8W0.2, Mo0.333Nb0.333W0.333, Nb0.33Ta0.33W0.34, Nb0.75Se2W0.25, and Nb2.25S6W0.75 have mechanically stable structures. The bulk modulus, shear modulus, Young's modulus, and Poisson's ratio are obtained. With the addition of Ta element, the ductility of NbW-based alloys increases obviously. With the addition of non-metallic elements, it can be decreased. Among the six compounds, Nb0.33Ta0.33W0.34 has the best plasticity and the stiffness of CNb0.8W0.2 is the highest. The results show that NbW, Mo0.333Nb0.333W0.333, Nb0.33Ta0.33W0.34, and Nb2.25S6W0.75 are ductile, and CNb0.8W0.2 as well as Nb0.75Se2W0.25 are brittle. Furthermore, all NbW-based intermetallic compounds considered in this work are conductors.
AB - The structural, elastic and electronic properties of NbW-based intermetallic compounds have been investigated by first-principles calculations from CASTEP code based on density functional theory (DFT). The calculated lattice parameters of NbW-based intermetallic compounds are in good agreement with the experimental values. The calculated elastic constants indicate that NbW, CNb0.8W0.2, Mo0.333Nb0.333W0.333, Nb0.33Ta0.33W0.34, Nb0.75Se2W0.25, and Nb2.25S6W0.75 have mechanically stable structures. The bulk modulus, shear modulus, Young's modulus, and Poisson's ratio are obtained. With the addition of Ta element, the ductility of NbW-based alloys increases obviously. With the addition of non-metallic elements, it can be decreased. Among the six compounds, Nb0.33Ta0.33W0.34 has the best plasticity and the stiffness of CNb0.8W0.2 is the highest. The results show that NbW, Mo0.333Nb0.333W0.333, Nb0.33Ta0.33W0.34, and Nb2.25S6W0.75 are ductile, and CNb0.8W0.2 as well as Nb0.75Se2W0.25 are brittle. Furthermore, all NbW-based intermetallic compounds considered in this work are conductors.
KW - elastic properties
KW - electronic structure
KW - first-principles calculations
KW - intermetallics
UR - http://www.scopus.com/inward/record.url?scp=85070469342&partnerID=8YFLogxK
U2 - 10.1002/pssb.201800570
DO - 10.1002/pssb.201800570
M3 - 文章
AN - SCOPUS:85070469342
SN - 0370-1972
VL - 256
JO - Physica Status Solidi (B) Basic Research
JF - Physica Status Solidi (B) Basic Research
IS - 8
M1 - 1800570
ER -