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Phase stability, mechanical properties, hardness, and possible reactive routing of chromium triboride from first-principle investigations

机译:根据第一性原理研究,三硼化铬的相稳定性,力学性能,硬度和可能的反应路线

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摘要

The first-principles calculations are employed to provide a fundamental understanding of the structural features and relative stability, mechanical and electronic properties, and possible reactive route for chromium triboride. The predicted new phase of CrB_3 belongs to the rhombohedral phase with R-3m symmetry and it transforms into a hexagonal phase with P-6m2 symmetry at 64 GPa. The mechanical and thermodynamic stabilities of CrB_3 are verified by the calculated elastic constants and formation enthalpies. Also, the full phonon dispersion calculations confirm the dynamic stability of predicted CrB_3. Considering the role of metallic contributions, the calculated hardness values from our semiempirical method for rhombohedral and hexagonal phases are 23.8 GPa and 22.1 GPa, respectively. In addition, the large shear moduli, Young's moduli, low Poisson's ratios, and small B/G ratios indicate that they are potential hard materials. Relative enthalpy calculations with respect to possible constituents are also investigated to assess the prospects for phase formation and an attempt at high-pressure synthesis is suggested to obtain chromium triboride.
机译:第一性原理计算用于对结构特征和相对稳定性,机械和电子性能以及三硼化铬可能的反应路线提供基本的了解。 CrB_3的预测新相属于R-3m对称的菱面体相,在64 GPa时转变为P​​-6m2对称的六边形相。 CrB_3的机械和热力学稳定性通过计算的弹性常数和地层焓来验证。同样,完整的声子色散计算证实了预测的CrB_3的动态稳定性。考虑到金属元素的作用,根据我们的半经验方法,菱形和六角形相的硬度值分别为23.8 GPa和22.1 GPa。此外,大的剪切模量,杨氏模量,低的泊松比和小的B / G比表明它们是潜在的硬质材料。还研究了有关可能成分的相对焓计算,以评估相形成的前景,并建议尝试高压合成以获得三硼化铬。

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