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Ab initio structure determination of n-diamond

机译:正金刚石的从头算结构确定

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摘要

A systematic computational study on the crystal structure of n-diamond has been performed using first-principle methods. A novel carbon allotrope with hexagonal symmetry R32 space group has been predicted. We name it as HR-carbon. HR-carbon composed of lonsdaleite layers and unique C3 isosceles triangle rings, is stable over graphite phase above 14.2 GPa. The simulated x-ray diffraction pattern, Raman, and energy-loss near-edge spectrum can match the experimental results very well, indicating that HR-carbon is a likely candidate structure for n-diamond. HR-carbon has an incompressible atomic arrangement because of unique C3 isosceles triangle rings. The hardness and bulk modulus of HR-carbon are calculated to be 80 GPa and 427 GPa, respectively, which are comparable to those of diamond. C3 isosceles triangle rings are very important for the stability and hardness of HR-carbon.
机译:使用第一原理方法对n金刚石的晶体结构进行了系统的计算研究。已经预测了具有六边形对称的R32空间群的新型碳同素异形体。我们将其命名为HR-carbon。由lonsdaleite层和独特的C3等腰三角形环组成的HR碳在高于14.2 GPa的石墨相上稳定。模拟的X射线衍射图,拉曼光谱和能量损失近边缘光谱可以很好地匹配实验结果,表明HR碳可能是n金刚石的候选结构。由于独特的C3等腰三角形环,HR-碳具有不可压缩的原子排列。 HR-碳的硬度和体积模量经计算分别为80 GPa和427 GPa,与金刚石相当。 C3等腰三角形环对于HR碳的稳定性和硬度非常重要。

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