Wang Yuezhou, Semler Matthew R, Ostanin Igor, Hobbie Erik K, Dumitrică Traian
Department of Chemical Engineering and Materials Science, University of Minnesota, Twin Cities, MN, USA 55455.
Soft Matter. 2014 Nov 21;10(43):8635-40. doi: 10.1039/c4sm00865k.
We combine experiments and distinct element method simulations to understand the stability of rings and rackets formed by single-walled carbon nanotubes assembled into ropes. Bending remains a soft deformation mode in ropes because intra-rope sliding of the constituent nanotubes occurs with ease. Our simulations indicate that the formation of these aggregates can be attributed to the mesoscopic mechanics of entangled nanotubes and to the sliding at the contacts. Starting from the single-walled carbon nanotubes, the sizes of the rings and rackets' heads increase with the rope diameter, indicating that the stability of the experimental aggregates can be largely explained by the competition between bending and van der Waals adhesion energies. Our results and simulation method should be useful for understanding nanoscale fibers in general.
我们结合实验和离散元方法模拟,以了解由单壁碳纳米管组装成绳索形成的环和球拍的稳定性。弯曲在绳索中仍然是一种软变形模式,因为组成纳米管的绳索内滑动很容易发生。我们的模拟表明,这些聚集体的形成可归因于缠结纳米管的细观力学以及接触处的滑动。从单壁碳纳米管开始,环和球拍头部的尺寸随绳索直径增加,这表明实验聚集体的稳定性在很大程度上可以通过弯曲和范德华粘附能之间的竞争来解释。我们的结果和模拟方法对于一般理解纳米级纤维应该是有用的。