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首页> 外文期刊>Advances in materials science and engineering >First-Principles Calculations of the Structure Stability and Mechanical Properties of LiFeAs and NaFeAs under Pressure
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First-Principles Calculations of the Structure Stability and Mechanical Properties of LiFeAs and NaFeAs under Pressure

机译:压力下LiFeAs和NaFeAs的结构稳定性和力学性能的第一性原理计算

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The lattice parameters and elastic constants of the tetragonal LiFeAs and NaFeAs under different pressures have been investigated by using the first-principles calculations. It is found that their lattice parameters at 0 GPa are in agreement with the available experimental data. By the elastic stability criteria under isotropic pressure, it is found that LiFeAs and NaFeAs with the tetragonal structure are not mechanically stable above 16 GPa and 18 GPa, respectively. Besides, Pugh’s modulus ratio, Poisson’s ratio, Vickers hardness, and elastic anisotropy factors of LiFeAs in the pressure range of 0–16 GPa and NaFeAs in the pressure range of 0–18 GPa are systematically investigated. It is shown that their ductilities increase with increasing pressure, and the ductility of NaFeAs is superior to that of LiFeAs under different pressures.
机译:通过第一性原理计算,研究了四方LiFeAs和NaFeAs在不同压力下的晶格参数和弹性常数。发现其在0 GPa处的晶格参数与现有实验数据一致。根据各向同性压力下的弹性稳定性判据,发现具有六方晶结构的LiFeAs和NaFeAs分别在16 GPa和18 aboveGPa以上机械不稳定。此外,系统地研究了在0–16 GPa压力范围内的LiFeAs和在0–18 modulusGPa压力范围内的NaFeAs的Pugh模量比,泊松比,维氏硬度和弹性各向异性因子。结果表明,在不同压力下,它们的延展性增加,而NaFeAs的延展性优于LiFeAs。

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