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A one-dimensional extremely covalent material: monatomic carbon linear chain

机译:一维极共价材料:单原子碳线性链

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摘要

Polyyne and cumulene of infinite length as the typical covalent one-dimensional (1D) monatomic linear chains of carbon have been demonstrated to be metallic and semiconductor (Eg = 1.859 eV), respectively, by first-principles calculations. Comparing with single-walled carbon nanotubes, the densities are evidently low and the thermodynamic properties are similar below room temperature but much different at the high temperature range. Polyyne possesses a Young's modulus as high as 1.304 TPa, which means it is even much stiffer than carbon nanotubes and to be the superlative strong 1D material along the axial direction. The Young's modulus of cumulene is estimated to be 760.78 GPa. In addition, polyyne is predicted to be as a one-dimensional electronic material with very high mobility.
机译:通过第一性原理计算,无限长的聚炔和异丙苯作为碳的典型共价一维(1D)单原子线性链分别是金属的和半导体的(Eg = 1.859 eV)。与单壁碳纳米管相比,密度明显较低,并且在室温以下其热力学性质相似,但在高温范围内相差很大。 Polyyne具有高达1.304 TPa的杨氏模量,这意味着它甚至比碳纳米管更坚硬,并且是沿轴向的最高级一维材料。异丙苯的杨氏模量估计为760.78 GPa。另外,预计聚炔是具有很高迁移率的一维电子材料。

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