Nielsen Steve O, Srinivas Goundla, Lopez Carlos F, Klein Michael L
Center for Molecular Modeling and Department of Chemistry, University of Pennsylvania, Philadelphia, PA 19104-6323, USA.
Phys Rev Lett. 2005 Jun 10;94(22):228301. doi: 10.1103/PhysRevLett.94.228301. Epub 2005 Jun 8.
Surfactant adsorption on hydrophobic surfaces is of current interest in attempts to solubilize single-wall carbon nanotubes and to render quantum dots biocompatible. A coarse grained method is presented for incorporating a hydrophobic surface into existing liquid force fields by appealing to statistical mechanics and probability theory. The dimensionality problem which arises is overcome with an approximate treatment and the entire procedure is applied to aqueous n-alkyl poly(ethylene oxide) adsorbing onto a graphite surface. The simulations are in excellent agreement with atomic force microscopy data. The mechanism of micelle adsorption onto a partially coated surface is reported for the first time and has implications for the construction of nanotemplates.
表面活性剂在疏水表面上的吸附是目前人们感兴趣的课题,旨在尝试溶解单壁碳纳米管并使量子点具有生物相容性。本文提出了一种粗粒化方法,通过运用统计力学和概率论,将疏水表面纳入现有的液体力场。通过近似处理克服了出现的维度问题,并将整个过程应用于吸附在石墨表面的正烷基聚环氧乙烷水溶液。模拟结果与原子力显微镜数据高度吻合。首次报道了胶束在部分涂层表面上的吸附机制,这对纳米模板的构建具有重要意义。