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Compressed carbon nanotubes: A family of new multifunctional carbon allotropes

机译:压缩碳纳米管:一系列新型多功能碳同素异形体

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摘要

The exploration of novel functional carbon polymorphs is an enduring topic of scientific investigations. In this paper, we present simulations demonstrating metastable carbon phases as the result of pressure induced carbon nanotube polymerization. The configuration, bonding, electronic, and mechanical characteristics of carbon polymers strongly depend on the imposed hydrostaticon-hydrostatic pressure, as well as on the geometry of the raw carbon nanotubes including diameter, chirality, stacking manner, and wall number. Especially, transition processes under hydrostaticon-hydrostatic pressure are investigated, revealing unexpectedly low transition barriers and demonstrating sp2→sp3 bonding changes as well as peculiar oscillations of electronic property (e.g., semiconducting→metallic→semiconducting transitions). These polymerized nanotubes show versatile and superior physical properties, such as superhardness, high tensile strength and ductility, and tunable electronic properties (semiconducting or metallic).
机译:新型功能性碳多晶型物的探索是科学研究的永恒课题。在本文中,我们提供了模拟,证明了压力诱导的碳纳米管聚合的结果是亚稳碳相。碳聚合物的构型,键合,电子和机械特性在很大程度上取决于施加的静水/非静水压力,以及生碳纳米管的几何形状,包括直径,手性,堆积方式和壁数。尤其是,研究了静水/非静水压力下的过渡过程,揭示了出乎意料的低过渡势垒,并证明了sp 2 →sp 3 键的变化以及电子特性的独特振荡。 (例如,半导体→金属→半导体过渡)。这些聚合的纳米管表现出多用途和优越的物理性能,例如超硬度,高拉伸强度和延展性以及可调节的电子性能(半导体或金属)。

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