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A New Superhard Phase and Physical Properties of ZrB3 from First-Principles Calculations

机译:ZrB3的新超硬相和物理性质从第一性原理计算

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摘要

Using the first-principles particle swarm optimization algorithm for crystal structural prediction, we have predicted a novel monoclinic C2/m structure for ZrB3, which is more energetically favorable than the previously proposed FeB3-, TcP3-, MoB3-, WB3-, and OsB3-type structures in the considered pressure range. The new phase is mechanically and dynamically stable, as confirmed by the calculations of its elastic constants and phonon dispersion curve. The calculated large shear modulus (227 GPa) and high hardness (42.2 GPa) show that ZrB3 within the monoclinic phase is a potentially superhard material. The analyses of the electronic density of states and chemical bonding reveal that the strong B–B and B–Zr covalent bonds are attributed to its high hardness. By the quasi-harmonic Debye model, the heat capacity, thermal expansion coefficient and Grüneisen parameter of ZrB3 are also systemically investigated.
机译:使用第一原理粒子群优化算法进行晶体结构预测,我们已经预测了ZrB3的新型单斜C2 / m结构,它比先前提出的FeB3-,TcP3-,MoB3-,WB3-和OsB3在能量上更有利压力范围内的三类结构。通过计算其弹性常数和声子色散曲线,可以确认该新相具有机械和动态稳定性。计算得出的大剪切模量(227 GPa)和高硬度(42.2 GPa)表明,单斜晶相中的ZrB3是潜在的超硬材料。对状态电子密度和化学键的分析表明,强的B-B和B-Zr共价键是由于其高硬度而引起的。通过准谐波德拜模型,还系统地研究了ZrB3的热容,热膨胀系数和Grüneisen参数。

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