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Crystal Structures and Mechanical Properties of Ca2C at High Pressure

机译:Ca2C高压下的晶体结构和力学性能

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摘要

Recently, a new high-pressure semiconductor phase of Ca2C (space group Pnma) was successfully synthesized, it has a low-pressure metallic phase (space group C2/m). In this paper, a systematic investigation of the pressure-induced phase transition of Ca2C is studied on the basis of first-principles calculations. The calculated enthalpy reveals that the phase transition which transforms from C2/m-Ca2C to Pnma-Ca2C occurs at 7.8 GPa, and it is a first-order phase transition with a volume drop of 26.7%. The calculated elastic constants show that C2/m-Ca2C is mechanically unstable above 6.4 GPa, indicating that the structural phase transition is due to mechanical instability. Both of the two phases exhibit the elastic anisotropy. The semiconductivity of Pnma-Ca2C and the metallicity of C2/m-Ca2C have been demonstrated by the electronic band structure calculations. The quasi-direct band gap of Pnma-Ca2C at 0 GPa is 0.86 eV. Furthermore, the detailed analysis of the total and partial density of states is performed to show the specific contribution to the Fermi level.
机译:最近,成功合成了一种新的Ca2C高压半导体相(空间群Pnma),它具有低压金属相(空间群C2 / m)。本文在第一性原理计算的基础上,对Ca2C的压力诱导相变进行了系统研究。计算出的焓表明,从C2 / m-Ca2C转变为Pnma-Ca2C的相变发生在7.8 GPa,并且是一阶相变,体积下降了26.7%。计算出的弹性常数表明,在6.4 GPa以上,C2 / m-Ca2C在机械上是不稳定的,表明结构相变是由于机械不稳定性引起的。这两个相都表现出弹性各向异性。 Pnma-Ca2C的半导电性和C2 / m-Ca2C的金属性已通过电子能带结构计算得到证明。 Pnma-Ca2C在0 GPa处的准直接带隙为0.86 eV。此外,对状态的总密度和部分密度进行了详细分析,以显示对费米能级的特定贡献。

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