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Structures and elastic properties of OsN_2 investigated via first-principles density functional calculations

机译:通过第一性原理密度泛函计算研究OsN_2的结构和弹性性质

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摘要

The structure, elastic, and electronic properties of OsN_2 at various space groups: cubic Fm-3m, Pa-3, and orthorhombic Pnnm were studied by first-principles calculations based on density functional theory. Our calculation indicates that the structure in orthorhombic Pnnm phase is energetically more stable compared with cubic systems. It is metallic, mechanically stable and contains diatomic N-N units with the bond distance 1.418 A. These characters are consistent with experimental facts that OsN_2 is orthorhombic and metallic. The calculated bulk modulus 394 GPa is also the highest among the considered space groups, slightly larger than previous value 358 GPa. The calculated elastic anisotropic factors and directional bulk modulus showed that OsN_2 possess high elastic anisotropy.
机译:通过基于密度泛函理论的第一性原理计算研究了OsN_2在立方Fm-3m,Pa-3和正交Pnnm等不同空间群上的结构,弹性和电子性质。我们的计算表明,与立方体系相比,正交Pnnm相的结构在能量上更稳定。它是金属的,机械稳定的并且包含键距为1.418 A的双原子N-N单元。这些特征与OsN_2是正交晶且金属的实验事实一致。计算出的体积模量394 GPa也是所考虑的空间组中最高的,略大于先前的值358 GPa。计算得出的弹性各向异性因子和方向体积模量表明,OsN_2具有较高的弹性各向异性。

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