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首页> 外文期刊>The Journal of Chemical Physics >Diffusive growth of fullerenes and carbon nanotubes
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Diffusive growth of fullerenes and carbon nanotubes

机译:富勒烯和碳纳米管的扩散生长

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The video of a growing fullerene within a carbon nanotube, initiated by a tungsten catalyst, provides a dramatic realization of a complex nanoscale process. While there may be many detailed models which can account for this growth, we propose one of the simplest possible models which is consistent with the major observed features of the growth process. In particular, we assume that the fullerene is immersed in a carbon vapor environment, and that the growth occurs as a consequence of the diffusion of the carbon vapor into the fullerene. Moreover, we assume that the classical diffusion equation applies in the region exterior to the fullerene and that a standard Stefan condition applies at the moving fullerene surface. We assume that the gaseous medium through which the carbon atoms diffuse is represented through the value of the diffusion coefficient D appearing in the classical diffusion equation. We also assume that the influence of the catalyst is felt through the value of the constant α appearing in the Stefan condition. Based on these assumptions, we derive simple similarity solutions for both spherical and ellipsoidal fullerenes which are entirely consistent with the observations. A corresponding analysis is provided for the longitudinal growth of a carbon nanotube.
机译:由钨催化剂引发的碳纳米管中富勒烯生长的视频,生动地展示了复杂的纳米级工艺。尽管可能有许多详细的模型可以解释这种增长,但我们提出了最简单的可能模型之一,它与增长过程的主要观察特征相一致。特别地,我们假设富勒烯浸没在碳蒸气环境中,并且由于碳蒸气扩散到富勒烯中而发生生长。此外,我们假设经典扩散方程适用于富勒烯外部区域,并且标准Stefan条件适用于运动的富勒烯表面。我们假设碳原子扩散通过的气态介质是通过经典扩散方程中出现的扩散系数D的值表示的。我们还假设通过Stefan条件下出现的常数α的值可以感受到催化剂的影响。基于这些假设,我们得出球形和椭圆形富勒烯的简单相似性解,这些解与观察结果完全一致。为碳纳米管的纵向生长提供了相应的分析。

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