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首页> 外文期刊>International Journal of Refractory Metals & Hard Materials >Structural, electronic, mechanical and thermo-physical properties of TMN (TM = Ti, Zr and Hf) under high pressures: A first-principle study
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Structural, electronic, mechanical and thermo-physical properties of TMN (TM = Ti, Zr and Hf) under high pressures: A first-principle study

机译:高压下TMN(TM = Ti,Zr和Hf)的结构,电子,机械和热物理性质:第一性原理研究

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摘要

The ab-initio calculations have been performed to investigate the structural, electronic, elastic and thermo-physical properties of TiN, ZrN and HfN in the stable Bl and high pressure B2 phases. Two different pseudo- and full-potential based approaches have been used in the calculations. The results are in good agreement with the measured data. The elastic constants for the B2 phase of these materials have been calculated for the first time except for ZrN. The observations show that these materials are mechanically stable not only in Bl phase at ambient conditions but also in B2 phase at high pressures. They are brittle in Bl phase while ductile in B2 phase. These materials are anisotropic in both Bl and B2 phases with increased anisotropy in B2 phase. The electronic behaviour of these materials is similar in both Bl and B2 phases except the broadening of the bands in B2 phase. These materials are found to be covalent, ionic and metallic in both the phases concerned. Present observation of electronic nature in CsCl structure of these materials needs validation by future researchers.
机译:已经进行了从头算,以研究在稳定的B1和高压B2相中TiN,ZrN和HfN的结构,电子,弹性和热物理性质。计算中使用了两种不同的基于伪电势和全电势的方法。结果与实测数据吻合良好。除了ZrN之外,首次计算了这些材料的B2相的弹性常数。观察表明,这些材料不仅在环境条件下在B1相中而且在高压下在B2相中都是机械稳定的。它们在B1相中是脆性的,而在B2相中是延性的。这些材料在B1和B2相中都是各向异性的,并且在B2相中各向异性增加。这些材料的电子行为在B1和B2相中相似,除了B2相中的能带变宽之外。发现这些材料在有关的两个相中都是共价的,离子的和金属的。目前对这些材料的CsCl结构中的电子性质的观察需要未来的研究人员验证。

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