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First-principles calculations of hydrostatic pressure effects on the structural, elastic and thermodynamic properties of cubic monocarbides XC (X = Ti, V, Cr, Nb, Mo, Hf)

机译:静水压力对立方单碳化物XC(X = Ti,V,Cr,Nb,Mo,Hf)的结构,弹性和热力学性质的第一性原理计算

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摘要

Six transition metal monocarbides (TiC, VC, CrC, NbC, MoC, HfC) with the rock-salt structure were chosen for a detailed comparative ab initio study of their structural, electronic, elastic, and thermodynamic properties at ambient and elevated up to 50 GPa hydrostatic pressures. Special attention was paid to the relation between the elastic and bonding properties and the number of valence electrons in each compound. Elastic anisotropy of the considered carbides was analyzed; the directions in the crystal lattice corresponding to the greatest and smallest Young's moduli values were identified. The calculated values of the elastic constants were used for further estimations of the Debye temperatures, Grilneisen parameters, specific heat capacities and linear coefficients of thermal expansion. Comparison of the calculated results with available experimental and theoretical data for TiC, VC, NbC, HfC yielded good agreement. The specific heat capacities and thermal expansion coefficients for CrC and MoC were calculated for the first time, to the best of the authors' knowledge.
机译:选择了六种具有岩盐结构的过渡金属单碳化物(TiC,VC,CrC,NbC,MoC,HfC)进行详细的从头开始的比较研究,研究了它们在环境中的结构,电子,弹性和热力学性质,最高可升高至50 GPa静水压力。特别注意每种化合物的弹性和键合性质与价电子数之间的关系。分析了所考虑碳化物的弹性各向异性;确定了对应于最大和最小杨氏模量值的晶格方向。弹性常数的计算值用于进一步估算德拜温度,Grilneisen参数,比热容和线性热膨胀系数。将TiC,VC,NbC,HfC的计算结果与可用的实验和理论数据进行比较,得出了很好的一致性。据作者所知,首次计算了CrC和MoC的比热容和热膨胀系数。

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