Chanda Jnanojjal, Chakraborty Sudip, Bandyopadhyay Sanjoy
Molecular Modeling Laboratory, Department of Chemistry, Indian Institute of Technology, Kharagpur - 721302, India.
J Phys Chem B. 2005 Jan 13;109(1):471-9. doi: 10.1021/jp0482924.
An atomistic molecular dynamics (MD) simulation has been carried out to investigate the structural and dynamical properties of a monolayer of the anionic surfactant sodium bis(2-ethyl-1-hexyl) sulfosuccinate (aerosol-OT or AOT) adsorbed at the air/water interface. The simulation is performed at room temperature and at a surface coverage corresponding to that at its critical micelle concentration (78 A(2)/molecule). The estimated thickness of the adsorbed layer is in good agreement with neutron reflection data. The study shows that the surfactants exhibit diffusive motion in the plane of the interface. It is observed that the surfactant monolayer has a strong influence in restricting both the translational and reorientational motions of the water molecules close to the interface. A drastic difference in the dipolar reorientational motion of water molecules in the aqueous layer is observed with a small variation of the distance from the surfactant headgroups. It has been observed that the water molecules in the first hydration layer (region 1) form strong hydrogen bonds with surfactant headgoups. This results in the slower structural relaxation of water-water hydrogen bonds in the first hydration layer compared to that in the pure bulk water. Most interestingly, we notice that the water molecules present in the layer immediately after the first hydration layer form weaker hydrogen bonds and thus relax faster than even pure bulk water.
进行了原子分子动力学(MD)模拟,以研究吸附在空气/水界面的阴离子表面活性剂双(2-乙基-1-己基)磺基琥珀酸钠(气溶胶-OT或AOT)单层的结构和动力学性质。模拟在室温下进行,表面覆盖率对应于其临界胶束浓度(78 Ų/分子)时的覆盖率。吸附层的估计厚度与中子反射数据吻合良好。研究表明,表面活性剂在界面平面内表现出扩散运动。观察到表面活性剂单层对限制靠近界面的水分子的平动和重排运动有很大影响。随着距表面活性剂头基距离的微小变化,观察到水层中水分子的偶极重排运动有显著差异。已观察到第一水化层(区域1)中的水分子与表面活性剂头基形成强氢键。这导致第一水化层中水分子间氢键的结构弛豫比纯体相水中的慢。最有趣的是,我们注意到紧接在第一水化层之后的层中的水分子形成较弱的氢键,因此甚至比纯体相水弛豫得更快。