June 2016

Journal

Synthesis, Hardness, and Electronic Properties of Stoichiometric VN and CrN

By:
Wang, Shanmin ; Yu, Xiaohui; Zhang, Jinzhong; Wang, Liping; Leinenweber, Kurt; He, Duanwei; Zhao, Yusheng
Journal Name:
Crystal Growth & Design
Page Number:
351-358
Volume:
16
Issue Number:
1
Publication Date:
June 17, 2016
View DOI Listing:
https://doi.org/10.1021/acs.cgd.5b01312

Abstract

We report synthesis of single-crystal VN and CrN through high-pressure ionexchange reaction routes. The final products are stoichiometric and have crystallite sizes in the range of 50-120 mu m. We also prepared VN and TiN crystals using high-pressure sintering of nitride powders. On the basis of single-crystal indentation testing, the determined asymptotic Vickers hardness for TiN, VN, and CrN is 18 (1), 10 (1), and 16 (1) GPa, respectively. The relatively low hardness in VN indicates that the metallic bonding prevails due to the overfilled metallic a bonds, although the cation-anion covalent hybridization in this compound is much stronger than that in TiN and CrN. All three nitrides are intrinsically excellent metals at ambient pressure. In particular, VN exhibits superconducting transition at T-c approximate to 7.8 K, which is slightly lower than the reported values for nitrogen-deficient or crystallinedisordered samples due to unsuppressed "spin fluctuation" in the well-crystallized stoichiometric VN. The magnetostructural transition in CrN correlates with a metal metal transition at T-N = 240(5) K and is accompanied by a similar to 40% drop in electrical resistivity. In addition, more detailed electronic properties are presented with new insights into these nitrides.