Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
1415403 | Carbon | 2011 | 5 Pages |
Abstract
The diameter of a single-walled carbon nanotube shrunk at an increasingly faster rate under electron beam irradiation in a transmission electron microscope. The relationship between the radius of the single-walled carbon nanotube and the irradiation time demonstrates that the shrinkage is much faster than that predicted by current simulations. The results indicate that a curvature effect on the nanoscale and an energetic beam-induced soft mode and lattice instability effect, which were underestimated or neglected in the existing simulations are the primary driving force for the shrinkage.
Related Topics
Physical Sciences and Engineering
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Energy (General)
Authors
Xianfang Zhu, Lunxiong Li, Shengli Huang, Zhanguo Wang, Gao Qing (Max) Lu, Chenghua Sun, Lianzhou Wang,