New multifunctional tungsten nitride with energetic N 6 and extreme hardness predicted from first principles
材料科学
钨
氮化物
纳米技术
冶金
图层(电子)
作者
Qian Li,Lei Sha,Chunye Zhu,Yansun Yao
出处
期刊:EPL [Institute of Physics] 日期:2017-05-01卷期号:118 (4): 46001-46001被引量:29
标识
DOI:10.1209/0295-5075/118/46001
摘要
We report a new member to the family of tungsten nitrides, WN6, predicted from the structure search. Ground-state convex hull calculation reveals that crystalline WN6 is thermodynamically stable at pressures above 16 GPa, but remains dynamically stable at ambient conditions. The predicted high-pressure WN6 structure contains chaired rings isoelectronic to cyclo-hexasulfur (S6), which is unprecedented in nitrogen. In the unit all nitrogen atoms are singly bonded and therefore contain a high energy density. By means of efficiently packing the covalent-bonded species, WN6 is estimated to have extremely high Vickers hardness greater than 40 GPa at ambient conditions, placing it as one of the hardest materials. The present results reveal that WN6 may be used as a superhard material but simultaneously maintaining other desirable properties, which represents an interesting example of multifunctional materials.