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在高冲击力下解压缩碳纳米管。

Unzipping carbon nanotubes at high impact.

机构信息

Department of Material Science and NanoEngineering, Rice University , Houston, Texas 77005, United States.

出版信息

Nano Lett. 2014 Jul 9;14(7):4131-7. doi: 10.1021/nl501753n. Epub 2014 Jun 16.

Abstract

The way nanostructures behave and mechanically respond to high impact collision is a topic of intrigue. For anisotropic nanostructures, such as carbon nanotubes, this response will be complicated based on the impact geometry. Here we report the result of hypervelocity impact of nanotubes against solid targets and show that impact produces a large number of defects in the nanotubes, as well as rapid atom evaporation, leading to their unzipping along the nanotube axis. Fully atomistic reactive molecular dynamics simulations are used to gain further insights of the pathways and deformation and fracture mechanisms of nanotubes under high energy mechanical impact. Carbon nanotubes have been unzipped into graphene nanoribbons before using chemical treatments but here the instability of nanotubes against defect formation, fracture, and unzipping is revealed purely through mechanical impact.

摘要

纳米结构在高速碰撞下的行为和机械响应方式是一个引人入胜的研究课题。对于各向异性的纳米结构,如碳纳米管,其响应将根据冲击几何形状而变得复杂。在这里,我们报告了纳米管对固体靶材的超高速冲击的结果,并表明冲击会在纳米管中产生大量缺陷,以及迅速的原子蒸发,导致它们沿着纳米管轴展开。我们使用全原子反应分子动力学模拟进一步深入了解了纳米管在高能机械冲击下的路径、变形和断裂机制。虽然之前已经使用化学处理将碳纳米管展开成石墨烯纳米带,但这里揭示了纳米管在形成缺陷、断裂和展开方面的不稳定性,完全是通过机械冲击实现的。

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