State Key Laboratory of Material-Orientated Chemical Engineering, College of Chemistry and Chemical Engineering, Nanjing University of Technology, Nanjing 210009, China.
Nano Lett. 2010 Mar 10;10(3):985-91. doi: 10.1021/nl9041005.
Here we report a larger-scale atomic-level molecular dynamics (MD) simulation for the self-assembly of sodium dodecyl sulfate (SDS) surfactant on single-walled carbon nanotube (SWNT) surfaces and the interaction between supramolecular SDS/SWNT aggregates. We make an effort to address several important problems in regard to carbon nanotube dispersion/separation. At first, the simulation provides comprehensive direct evidence for SDS self-assembly structures on carbon nanotube surfaces, which can help to clarify the relevant debate over the exact adsorption structure. We also, for the first time, simulated the potential of mean force (PMF) between two SWNTs embedded in SDS surfactant micelles. A novel unified PMF approach has been applied to reveal various cooperative interactions between the SDS/SWNT aggregates, which is different from the previous electrostatic repulsion explanation. The unique role of sodium ions revealed here provides a new microscopic understanding of the recent experiments in the electrolyte tuning of the interfacial forces on the selective fractionation of SDS surrounding SWNTs.
在这里,我们报告了一个更大规模的原子级分子动力学(MD)模拟,用于研究十二烷基硫酸钠(SDS)表面活性剂在单壁碳纳米管(SWNT)表面的自组装以及超分子 SDS/SWNT 聚集体之间的相互作用。我们努力解决与碳纳米管分散/分离有关的几个重要问题。首先,该模拟提供了 SDS 在碳纳米管表面自组装结构的全面直接证据,这有助于澄清关于确切吸附结构的相关争议。我们还首次模拟了嵌入 SDS 表面活性剂胶束中的两个 SWNT 之间的平均力势(PMF)。一种新颖的统一 PMF 方法已被应用于揭示 SDS/SWNT 聚集体之间的各种协同相互作用,这与之前的静电排斥解释不同。这里揭示的钠离子的独特作用为最近在电解质调节围绕 SWNT 的 SDS 界面力以选择性分馏的实验提供了新的微观理解。