Dyer Tom, Thamwattana Ngamta, Cox Barry
School of Mathematics and Applied Statistics, University of Wollongong, Wollongong, NSW, 2500, Australia.
School of Mathematical and Physical Sciences, University of Newcastle, University Drive, Callaghan, NSW, 2308, Australia.
J Mol Model. 2018 Mar 22;24(4):99. doi: 10.1007/s00894-018-3630-y.
The low bending rigidity of graphene facilitates the formation of folds into the structure. This curvature change affects the reactivity and electron transport of the sheet. One novel extension of this is the intercalation of small molecules into these folds. We construct a model incorporating a single-walled carbon nanotube into a sheet of folded graphene. Variational calculus techniques are employed to determine the minimum energy structure and the resulting curves are shown to agree well with molecular dynamics study. Graphical Abstract Using calculus of variations, the elastic bending energy and van der Waals energy are minimised giving rise to Euler-Lagrange equation for which analytical solutions are derived to determine the optimal curved sturctures of graphene wrapped around carbon nanotubes . Overall agreement between the analytical solutions (with different values of bending rigidities) and results from molecular dynamics simulations (grey) is shown here for (6,6), (8,8) and (10,10) armchair nanotubes, respectively.
石墨烯的低弯曲刚度有利于在结构中形成褶皱。这种曲率变化会影响薄片的反应活性和电子传输。对此的一种新颖拓展是将小分子插入这些褶皱中。我们构建了一个将单壁碳纳米管纳入折叠石墨烯薄片的模型。采用变分法技术来确定最低能量结构,所得曲线与分子动力学研究结果吻合良好。图形摘要 使用变分法,使弹性弯曲能和范德华能最小化,从而得到欧拉 - 拉格朗日方程,通过推导该方程的解析解来确定包裹在碳纳米管周围的石墨烯的最优弯曲结构。此处分别展示了(6,6)、(8,8)和(10,10)扶手椅型纳米管的解析解(具有不同弯曲刚度值)与分子动力学模拟结果(灰色)之间的总体一致性。