Department of Chemistry, Surface Chemistry Research Laboratory, Iran University of Science and Technology, P.O. Box 16846-13114, Tehran, Iran.
J Mol Model. 2013 Oct;19(10):4319-35. doi: 10.1007/s00894-013-1948-z. Epub 2013 Aug 1.
The insolubility of carbon nanotubes (CNTs) in aqueous media has been a limitation for the practical application of this unique material. Recent studies have demonstrated that the suspend ability of CNT can be substantially improved by employing appropriate surfactants. Although various surfactants have been tested, the exact mechanism by which carbon nanotubes and the different surfactants interact is not fully understood. To deepen the understanding of molecular interaction between CNT and surfactants, as well as to investigate the influence of the surfactant tail length on the adsorption process, we report here the first detailed large-scale all-atomistic molecular dynamics simulation study of the adsorption and morphology of aggregates of the cationic surfactants containing trimethylammonium headgroups (C12TAB and C16TAB) on single-walled carbon nanotube (SWNT) surfaces. We find that the aggregation morphology of both C12TAB and C16TAB on the SWNT is dependent upon the number of the surfactants in the simulation box. As the number of the surfactants increases the random monolayer structure gradually changes to the cylinder-like monolayer structure. Moreover, we make a comparison between the C12TAB and C16TAB adsorption onto SWNTs to clarify the role of the surfactant tail length on the adsorption process. This comparison indicates that by increasing the number of surfactant molecules, the larger number of the C16TAB molecules tend to adsorb onto SWNTs. Further, our results show that a longer chain yields the higher packed aggregates in which the surfactant heads are extended far into the aqueous phase, which in turn may increase the SWNTs stabilization in aqueous suspensions.
碳纳米管(CNTs)在水介质中的不溶性一直是限制这种独特材料实际应用的一个因素。最近的研究表明,通过使用适当的表面活性剂可以大大提高 CNT 的悬浮能力。虽然已经测试了各种表面活性剂,但碳纳米管和不同表面活性剂相互作用的确切机制还不完全清楚。为了更深入地了解碳纳米管和表面活性剂之间的分子相互作用,并研究表面活性剂尾链长度对吸附过程的影响,我们在这里首次报道了详细的、基于全原子的、包含三甲铵头基的阳离子表面活性剂(C12TAB 和 C16TAB)在单壁碳纳米管(SWNT)表面吸附和聚集形态的大规模分子动力学模拟研究。我们发现,C12TAB 和 C16TAB 在 SWNT 上的聚集形态取决于模拟盒中表面活性剂的数量。随着表面活性剂数量的增加,随机单层结构逐渐转变为圆柱状单层结构。此外,我们还对 C12TAB 和 C16TAB 在 SWNTs 上的吸附进行了比较,以阐明表面活性剂尾链长度对吸附过程的作用。这一比较表明,随着表面活性剂分子数量的增加,更多的 C16TAB 分子倾向于吸附在 SWNTs 上。此外,我们的结果表明,较长的链产生更高的聚集物,其中表面活性剂头延伸到水相中很远的位置,这反过来又可能增加 SWNTs 在水悬浮液中的稳定性。