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DFT and tight binding Monte Carlo calculations related to single-walled carbon nanotube nucleation and growth

机译:DFT和紧密结合蒙特卡洛计算与单壁碳纳米管成核和生长有关

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摘要

Density-functional theory (DFT) calculations for idealized nucleation processes of (5,5) and (10,0) single-walled carbon nanotubes (SWCNTs) on a 55 atom nickel cluster (Ni-55) showed that it requires a larger chemical potential to grow a carbon island (which is the simplest structure that can lead to formation of the SWCNTs) on the cluster than to extend the island into a SWCNT or to have the carbon atoms dispersed on the cluster surface. Hence, in the thermodynamic limit the island will only form once the (surface of the) cluster is saturated with carbon, and the island will spontaneously form a SWCNT at the chemical potentials required to create the island. The DFT (zero Kelvin) and tight binding Monte Carlo (1000 K) also show that there is a minimum cluster size required to support SWCNT growth, and that this cluster size can be used to control the diameter, but probably not the chirality, of the SWCNT at temperatures relevant to carbon nanotube growth. It also imposes a minimum size of clusters that are used for SWCNT regrowth. (C) 2009 Elsevier Ltd. All rights reserved.
机译:对于55原子镍簇(Ni-55)上的(5,5)和(10,0)单壁碳纳米管(SWCNT)的理想成核过程的密度泛函理论(DFT)计算表明,它需要更大的化学物质与将岛扩展成SWCNT或使碳原子分散在簇表面上相比,在簇上生长碳岛(这可能是导致SWCNT形成的最简单的结构)的潜力。因此,在热力学极限中,仅当簇(的表面)被碳饱和时才会形成岛,并且岛将在创建岛所需的化学势下自发形成SWCNT。 DFT(零开尔文)和紧密结合的Monte Carlo(1000 K)也表明,支持SWCNT生长需要最小的团簇大小,并且该团簇大小可用于控制直径,但可能不能控制其手性。 SWCNT在与碳纳米管生长相关的温度下。它还强加了用于SWCNT再生的群集的最小大小。 (C)2009 Elsevier Ltd.保留所有权利。

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