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首页> 外文期刊>Central European Journal of Physics >Structural, electronic and elastic properties of Ti2TlC, Zr2TlC and Hf2TlC
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Structural, electronic and elastic properties of Ti2TlC, Zr2TlC and Hf2TlC

机译:Ti2TlC,Zr2TlC和Hf2TlC的结构,电子和弹性性能

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Using First-principle calculations, we have studied the structural, electronic and elastic properties of M2TlC, with M = Ti, Zr and Hf. Geometrical optimization of the unit cell is in good agreement with the available experimental data. The effect of high pressures, up to 20 GPa, on the lattice constants shows that the contractions are higher along the c-axis than along the a axis. We have observed a quadratic dependence of the lattice parameters versus the applied pressure. The band structures show that all three materials are electrical conductors. The analysis of the site and momentum projected densities shows that bonding is due to M d-C p and M d-Tl p hybridizations. The M d-C p bonds are lower in energy and stiff er than M d-Tl p bonds. The elastic constants are calculated using the static finite strain technique. We derived the bulk and shear moduli, Young's modulus and Poisson's ratio for ideal polycrystalline M2TlC aggregates. We estimated the Debye temperature of M2TlC from the average sound velocity. This is the first quantitative theoretical prediction of the elastic properties of Ti2TlC, Zr2TlC, and Hf2TlC compounds that requires experimental confirmation.
机译:使用第一性原理计算,我们研究了M2TlC的结构,电子和弹性特性,其中M = Ti,Zr和Hf。晶胞的几何优化与可用的实验数据非常吻合。高达20 GPa的高压对晶格常数的影响表明,沿c轴的收缩大于沿a轴的收缩。我们已经观察到晶格参数对施加压力的二次依赖性。能带结构表明所有三种材料都是电导体。对位点和动量投影密度的分析表明,键合是由于M d-C p和M d-Tl p杂交造成的。 M d-C p键的能量比M d-Tl p键低,并且刚性更高。弹性常数是使用静态有限应变技术计算的。我们导出了理想多晶M2TlC聚集体的体积模量和剪切模量,杨氏模量和泊松比。我们根据平均声速估算了M2TlC的德拜温度。这是对Ti2TlC,Zr2TlC和Hf2TlC化合物的弹性特性的首次定量理论预测,需要进行实验确认。

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