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首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >Molecular dynamics studies on monolayer of cetyltrimethylammonium bromide surfactant formed at the air/water interface
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Molecular dynamics studies on monolayer of cetyltrimethylammonium bromide surfactant formed at the air/water interface

机译:空气/水界面处形成的十六烷基三甲基溴化铵表面活性剂单分子动力学研究

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An atomistic molecular dynamics (MD) simulation has been carried out to investigate the structural and dynamic properties of a monolayer of cationic surfactant cetyltrimethylammonium bromide (C(16)TAB) formed at the air/water interface. The simulation was performed at room temperature, and two systems I and II containing different surface areas 45 and 68 angstrom(2) per molecule, respectively, were selected. Through the radial distribution function (RDF) among the headgroups, water molecules and bromide ions, the thickness of the adsorbed layer was estimated. The hydrocarbon chain structure was analyzed by taking into account the length distributions between headgroups and different methyl(ene) groups in the chain, and it is shown that two systems have a big difference in the structures of the monolayer, especially for the last several methyl(ene) groups normal to the interface. The disordered monolayer for system I is proved by the orientation correlation function and the fractions of gauche conformations in the chain. It indicates that the structure of monolayers depends on the vertical position with respect to the interface. We found that water molecules around the headgroups at the interface have smaller diffusion coefficient than those in the hydrocarbon tails or in the bulky water. It is shown that the diffusion of water molecules mostly depends on the surroundings, and the electrostatic and H-bonding interactions are the reason that water molecule has small diffusion coefficient in the chains of the monolayer. (c) 2006 Elsevier B.V. All rights reserved.
机译:进行了原子分子动力学(MD)模拟,以研究在空气/水界面处形成的阳离子表面活性剂十六烷基三甲基溴化铵(C(16)TAB)单层的结构和动力学性质。模拟是在室温下进行的,分别选择了每个分子分别包含不同表面积45和68埃(2)的两个系统I和II。通过头基,水分子和溴离子之间的径向分布函数(RDF),估算了吸附层的厚度。考虑到头基与链中不同甲基(烯)基之间的长度分布,对烃链结构进行了分析,结果表明,两个系统的单层结构差异很大,特别是对于最后几个甲基(ene)垂直于界面的组。系统I的无序单分子层由取向相关函数和链中gauche构象的分数证明。这表明单层的结构取决于相对于界面的垂直位置。我们发现,界面处头基周围的水分子的扩散系数小于烃尾或大体积水中的扩散系数。结果表明,水分子的扩散主要取决于周围环境,静电和氢键相互作用是水分子在单层链中扩散系数较小的原因。 (c)2006 Elsevier B.V.保留所有权利。

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