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A Reinvestigation of a Superhard Tetragonal sp 3 Carbon Allotrope

机译:超硬四方sp 3碳同素异形体的再研究

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I 4 ˉ –carbon was first proposed by Zhang et al. , this paper will report regarding this phase of carbon. The present paper reports the structural and elastic properties of the three-dimensional carbon allotrope I 4 ˉ –carbon using first-principles density functional theory. The related enthalpy, elastic constants, and phonon spectra confirm that the newly-predicted I 4 ˉ –carbon is thermodynamically, mechanically, and dynamically stable. The calculated mechanical properties indicate that I 4 ˉ –carbon has a larger bulk modulus (393 GPa), shear modulus (421 GPa), Young’s modulus (931 GPa), and hardness (55.5 GPa), all of which are all slightly larger than those of c-BN. The present results indicate that I 4 ˉ –carbon is a superhard material and an indirect-band-gap semiconductor. Moreover, I 4 ˉ –carbon shows a smaller elastic anisotropy in its linear bulk modulus, shear anisotropic factors, universal anisotropic index, and Young’s modulus.
机译:I 4 carbon –carbon最初由Zhang等人提出。 ,本文将报告有关碳的这一阶段。本文利用第一性原理密度泛函理论报道了三维碳同素异形体I 4ˉ-C的结构和弹性性质。相关的焓,弹性常数和声子光谱证实,新预测的I 4ˉ-碳在热力学,机械和动态方面都是稳定的。计算出的机械性能表明,I 4ˉ-碳具有较大的体积模量(393 GPa),剪切模量(421 GPa),杨氏模量(931 GPa)和硬度(55.5 GPa),所有这些都略大于c-BN的那些。目前的结果表明,I 4ˉ-碳是一种超硬材料,是一种间接带隙半导体。此外,I 4ˉ-碳在线性体积模量,剪切各向异性因子,通用各向异性指数和杨氏模量方面显示出较小的弹性各向异性。

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