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多壳层碳纳米管的结构模型和生长机制。

A structure model and growth mechanism for multishell carbon nanotubes.

出版信息

Science. 1995 Mar 3;267(5202):1334-8. doi: 10.1126/science.267.5202.1334.

Abstract

A model that postulates a mixture of scroll-shaped and concentric, cylindrical graphene sheets is proposed to explain the microstructure of graphite multishell nanotubes grown by arc discharge. The model is consistent with the observed occurrence of a relatively small number of different chiral angles within the same tubule. The model explains clustering in a natural way and is consistent with the observation of asymmetric (0002) lattice fringe patterns and with the occurrence of singular fringe spacings larger than c/2 (c is the c parameter of graphite) in such patterns. Anisotropic thermal contraction accounts for the 2 to 3 percent increase in the c parameter of nanotubes, compared with bulk graphite, but is too small to explain the singular fringe spacings. The model also explains the formation of multishell closure domes. Nucleation is attributed to the initial formation of a fullerene "dome."

摘要

提出了一种模型,假设有螺旋形和同心圆柱形石墨烯片的混合物,以解释通过电弧放电生长的石墨多壳层纳米管的微观结构。该模型与同一管内出现相对较少的不同手性角的观察结果一致。该模型自然地解释了团聚现象,并且与观察到的不对称(0002)晶格条纹图案以及在这种图案中出现的奇异条纹间距大于 c/2(c 是石墨的 c 参数)的情况一致。各向异性热收缩导致纳米管的 c 参数相对于块状石墨增加了 2%至 3%,但不足以解释奇异条纹间距。该模型还解释了多壳层闭合穹顶的形成。成核归因于富勒烯“穹顶”的初始形成。

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