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Nucleation and growth of single wall carbon nanotubes

机译:单壁碳纳米管的成核与生长

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The nucleation and growth of single wall carbon nanotubes from a carbon-saturated catalytic particle surrounded by a single sheet of graphene is described qualitatively by using a very restricted number of elementary processes, namely Stone-Wales defects and carbon bi-interstitials. Energies of the different configurations are estimated by using a Tersoff energy minimization scheme. Such a description is compatible with a broad variety of size or helicity of the tubes. Several mechanisms of growth of the embryos are considered: one of them is made more favourable when the tubes embryos are arranged in a hexagonal network in the graphene plane. All the proposed mechanisms can be indefinitely repeated for the growth of the nanotubes.
机译:通过使用数量非常有限的基本过程,即Stone-Wales缺陷和碳双间隙,定性描述了被单片石墨烯包围的碳饱和催化颗粒中单壁碳纳米管的形核和生长。通过使用Tersoff能量最小化方案来估算不同配置的能量。这样的描述与管的各种尺寸或螺旋度兼容。考虑了几种胚的生长机制:当管胚在石墨烯平面上以六边形网络排列时,其中一种更为有利。对于纳米管的生长,可以无限期重复所有提出的机制。

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