TY - JOUR
T1 - Structural, mechanical and electronic properties of orthorhombic Nb2X4Si5 (X=V, Nb, Ta, Cr, Mo, W) compounds from first-principles calculations
AU - Xu, Xia
AU - Zeng, Wei
AU - Hong, Dan
AU - Liu, Qi Jun
AU - Liu, Zheng Tang
AU - Huang, Xing Yong
N1 - Publisher Copyright:
© 2023 Elsevier B.V.
PY - 2023/6
Y1 - 2023/6
N2 - A comparative study on the structural, mechanical and electronic properties was carried out for orthorhombic Nb2X4Si5 (X = V, Nb, Ta, Cr, Mo, W) intermetallic compounds using first-principles calculations. Our computed structural parameters are excellent consistent with the experimental data. The obtained elastic constants of Nb2X4Si5 (X = V, Nb, Ta, Cr, Mo, W) compounds have been analyzed in detail for the first time, indicating that these ternary compounds are mechanically stable. The obtained formation enthalpies show that these compounds are thermodynamically stable. Nb2Cr4Si5 compound behaves in a brittle manner, while other compounds exhibit ductile nature. With stronger ductility and lower hardness, meanwhile, Nb2W4Si5 has more obvious elastic anisotropy than that of other compounds. Nb2Cr4Si5 possesses the highest Debye temperature and the best thermal conductivity. The band structures and DOS of Nb2X4Si5 (X = V, Nb, Ta, Cr, Mo, W) compounds have been calculated and analyzed, showing that they have mixtures of covalent and metallic characters.
AB - A comparative study on the structural, mechanical and electronic properties was carried out for orthorhombic Nb2X4Si5 (X = V, Nb, Ta, Cr, Mo, W) intermetallic compounds using first-principles calculations. Our computed structural parameters are excellent consistent with the experimental data. The obtained elastic constants of Nb2X4Si5 (X = V, Nb, Ta, Cr, Mo, W) compounds have been analyzed in detail for the first time, indicating that these ternary compounds are mechanically stable. The obtained formation enthalpies show that these compounds are thermodynamically stable. Nb2Cr4Si5 compound behaves in a brittle manner, while other compounds exhibit ductile nature. With stronger ductility and lower hardness, meanwhile, Nb2W4Si5 has more obvious elastic anisotropy than that of other compounds. Nb2Cr4Si5 possesses the highest Debye temperature and the best thermal conductivity. The band structures and DOS of Nb2X4Si5 (X = V, Nb, Ta, Cr, Mo, W) compounds have been calculated and analyzed, showing that they have mixtures of covalent and metallic characters.
KW - Density functional theory
KW - Elastic anisotropy
KW - Mechanical properties
KW - Orthorhombic intermetallics
UR - https://www.scopus.com/pages/publications/85147991380
U2 - 10.1016/j.cocom.2023.e00792
DO - 10.1016/j.cocom.2023.e00792
M3 - 文章
AN - SCOPUS:85147991380
SN - 2352-2143
VL - 35
JO - Computational Condensed Matter
JF - Computational Condensed Matter
M1 - e00792
ER -