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Electronic, dynamical, and thermal properties of ultra-incompressible superhard rhenium diboride: A combined first-principles and neutron scattering study

机译:超不可压缩超硬二硼化rh的电子,动力学和热学性质:第一性原理和中子散射研究

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摘要

Rhenium diboride is a recently recognized ultra-incompressible superhard material. Here we report the electronic (e), phonon (p), e-p coupling, and thermal properties of ReB2 from first-principles density-functional theory calculations and neutron scattering measurements. Our calculated elastic constants (c11 =641 GPa, c12=159 GPa, c13=128 GPa, c33=1037 GPa, and c44=271 GPa), bulk modulus (B≈350 GPa) and hardness (H≈46 GPa) are in good agreement with the reported experimental data. The calculated phonon density of states agrees very well with our neutron vibrational spectroscopy result. Electronic and phonon analysis indicates that the strong covalent B-B and Re-B bonding is the main reason for the super incompressibility and hardness of ReB2. The thermal expansion coefficients, calculated within the quasiharmonic approximation and measured by neutron powder diffraction, are found to be nearly isotropic in a and c directions and only slightly larger than that of diamond in terms of magnitude. The excellent agreement found between calculations and experimental measurements indicate that first-principles calculations capture the main interactions in this class of superhard materials, and thus can be used to search, predict, and design new materials with desired properties.
机译:二硼化is是最近公认的超不可压缩的超硬材料。在这里,我们从第一原理密度泛函理论计算和中子散射测量中报告了ReB2的电子(e),声子(p),e-p耦合和热性质。我们计算出的弹性常数(c11 = 641 GPa,c12 = 159 GPa,c13 = 128 GPa,c33 = 1037 GPa和c44 = 271 GPa),体积模量(B≈350GPa)和硬度(H≈46GPa)在与报道的实验数据吻合良好。计算得到的声子密度与我们的中子振动光谱结果非常吻合。电子和声子分析表明,强共价的B-B和Re-B键是ReB2超强压缩性和硬度的主要原因。发现在准谐波近似中计算出并通过中子粉末衍射测量的热膨胀系数在a和c方向上几乎各向同性,并且在大小上仅略大于金刚石。计算与实验测量之间的出色一致性表明,第一性原理计算捕获了此类超硬材料中的主要相互作用,因此可用于搜索,预测和设计具有所需特性的新材料。

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