TY - JOUR
T1 - The structural, mechanical and electronic properties of BaxNy compounds
AU - Wang, Gao Min
AU - Zeng, Wei
AU - Zhang, Fan
AU - Li, Xing Han
AU - Liu, Fu Sheng
AU - Tang, Bin
AU - Zhong, Mi
AU - Liu, Qi Jun
N1 - Publisher Copyright:
© 2022
PY - 2023/3/15
Y1 - 2023/3/15
N2 - The effects of pressure on structures, enthalpies, elastic properties, mechanical stability and electronic properties of BaN2, Ba2N, BaN6 and BaN5 have been investigated using first-principles calculations. Based on the experimental and theoretical parameters, the crystal structures of four Ba–N compounds at zero pressure and high pressure have been built and studied. The enthalpies of BaN2, Ba2N, BaN6 and BaN5 decrease gradually within the range of 0 GPa–100 GPa. The mechanical stability of compounds in the pressure range from 0 GPa to 100 GPa has been estimated by the modified Born stability conditions under pressure. Through the study of elastic modulus, it is found that the increasing pressure can enhance the ability of resisting elastic deformation. The B/G and Poisson's ratio shows that BaN2, BaN6 as well as BaN5 are ductile, and the brittle-tough transition was observed for Ba2N. The band structures and density of states are studied in order to explore the characteristics of the motion of electrons in barium nitrides.
AB - The effects of pressure on structures, enthalpies, elastic properties, mechanical stability and electronic properties of BaN2, Ba2N, BaN6 and BaN5 have been investigated using first-principles calculations. Based on the experimental and theoretical parameters, the crystal structures of four Ba–N compounds at zero pressure and high pressure have been built and studied. The enthalpies of BaN2, Ba2N, BaN6 and BaN5 decrease gradually within the range of 0 GPa–100 GPa. The mechanical stability of compounds in the pressure range from 0 GPa to 100 GPa has been estimated by the modified Born stability conditions under pressure. Through the study of elastic modulus, it is found that the increasing pressure can enhance the ability of resisting elastic deformation. The B/G and Poisson's ratio shows that BaN2, BaN6 as well as BaN5 are ductile, and the brittle-tough transition was observed for Ba2N. The band structures and density of states are studied in order to explore the characteristics of the motion of electrons in barium nitrides.
KW - Elastic properties
KW - Electronic properties
KW - First-principles calculations
KW - Mechanical stability
UR - http://www.scopus.com/inward/record.url?scp=85144359626&partnerID=8YFLogxK
U2 - 10.1016/j.mssp.2022.107268
DO - 10.1016/j.mssp.2022.107268
M3 - 文章
AN - SCOPUS:85144359626
SN - 1369-8001
VL - 156
JO - Materials Science in Semiconductor Processing
JF - Materials Science in Semiconductor Processing
M1 - 107268
ER -