First-principles study of phase stability of stoichiometric vanadium nitrides

被引:20
|
作者
Ivashchenko, V. I. [1 ]
Turchi, P. E. A. [2 ]
Shevchenko, V. I. [1 ]
Olifan, E. I. [1 ]
机构
[1] NAS Ukraine, Inst Problems Mat Sci, UA-03142 Kiev, Ukraine
[2] Lawrence Livermore Natl Lab L 352, Livermore, CA 94551 USA
关键词
TRANSITION; VN;
D O I
10.1103/PhysRevB.84.174108
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
First-principles pseudopotential total-energy and phonon-spectrum calculations of various phases of stoichiometric vanadium nitrides with a small number of vanadium and nitrogen vacancies, as well as with small carbon and oxygen admixtures, were carried out. It was found that the stoichiometric hexagonal and tetragonal vanadium nitrides (VN) were dynamically stable. The NaCl-type VN exhibited lattice instability. The total energy for the computed ground-state phases of VN increased in the sequence hexagonal (WC type, P (6) over tilde m2)-hexagonal (AsNi type, P6(3)/mmc)-tetragonal (P4(2)/mcm)-cubic (NaCl type, Fm (3) over barm)-cubic (ZnS type, F (4) over bar 3m)-cubic (CsCl type, Pm (3) over barm). At low temperatures, the vacancies in both sublattices stabilize the triclinic phases of VxNx for x < 0.94, which is consistent with tetragonal symmetry. At high temperatures, the stability of the NaCl-and WC-type VN structures was estimated using an approach based on band-energy smearing. The results obtained indicate that the cubic structure of VN with the fully occupied sublattices will be stable only at high temperatures. The small carbon and oxygen admixtures do not stabilize the cubic phase compared to the hexagonal one. The phase stability of the cubic and hexagonal structures of VxNx was explained on the basis of the peculiarities of their electronic densities of states near the Fermi level. The predicted structural transformations in stoichiometric vanadium nitrides are compatible with those observed experimentally.
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页数:7
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