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Enhanced pi-pi interactions between a C-60 fullerene and a buckle bend on a double-walled carbon nanotube

机译:C-60富勒烯与双壁碳纳米管上的弯折之间增强的pi-pi相互作用

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摘要

In situ low-voltage aberration corrected transmission electron microscopy (TEM) observations of the dynamic entrapment of a C60 molecule in the saddle of a bent double-walled carbon nanotube is presented. The fullerene interaction is non-covalent, suggesting that enhanced π-π interactions (van der Waals forces) are responsible. Classical molecular dynamics calculations confirm that the increased interaction area associated with a buckle is sufficient to trap a fullerene. Moreover, they show hopping behavior in agreement with our experimental observations. Our findings further our understanding of carbon nanostructure interactions, which are important in the rapidly developing field of low-voltage aberration corrected TEM and nano-carbon device fabrication. © The Author(s) 2010.
机译:提出了原位低压像差校正透射电子显微镜(TEM)观察到的动态C60分子在弯曲的双壁碳纳米管的鞍座中的动态俘获。富勒烯相互作用是非共价的,表明增强的π-π相互作用(范德华力)是负责任的。经典的分子动力学计算证实,与带扣相关的增加的相互作用区域足以捕获富勒烯。而且,它们表现出与我们的实验观察一致的跳跃行为。我们的发现进一步加深了我们对碳纳米结构相互作用的理解,这在快速发展的低压像差校正TEM和纳米碳器件制造领域非常重要。 ©作者2010。

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