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Role of the Counterions in the Surface Tension of Aqueous Surfactant Solutions. A Computer Simulation Study of Alkali Dodecyl Sulfate Systems

机译:抗衡离子在水性表面活性剂溶液表面张力的作用。碱性十二烷基硫酸盐体系的计算机模拟研究

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We have investigated the surface tension contributions of the counterions, surfactant headgroups and tails, and water molecules in aqueous alkali dodecyl sulfate (DS) solutions close to the saturated surface concentration by analyzing the lateral pressure profile contribution of these components using molecular dynamics simulations. For this purpose, we have used the combination of two popular force fields, namely KBFF for the counterions and GROMOS96 for the surfactant, which are both parameterized for the SPC/E water model. Except for the system containing Na+ counterions, the surface tension of the surfactant solutions has turned out to be larger rather than smaller than that of neat water, showing a severe shortcoming of the combination of the two force fields. We have traced back this failure of the potential model combination to the unphysically strong attraction of the KBFF counterions, except for Na+, to the anionic head of the surfactants. Despite this failure of the model, we have observed a clear relation between the soft/hard character (in the sense of the Hofmeister series) and the surface tension contribution of the counterions, which, given the above limitations of the model, can only be regarded as an indicative result. We emphasize that the obtained results, although in a twisted way, clearly stress the crucial role the counterions of ionic surfactants play in determining the surface tension of the aqueous surfactant solutions.
机译:通过使用分子动力学模拟分析这些组分的横向压力曲线贡献,我们研究了抗衡离子,表面活性剂头组和尾部的表面张力贡献,水分碱性碱水溶液中的水分碱金乳烷基硫酸盐(DS)溶液,靠近饱和表面浓度。为此目的,我们使用了两个流行的力场的组合,即用于表面活性剂的抗衡离子和Gromos96的Kbff,这两者都是用于SPC / E水模型的参数化。除了含有Na +抗衡离子的系统外,表面活性剂溶液的表面张力已经较大而不是小于纯净水的表面张力,显示出两个力场的组合的严重缺点。我们已经追溯到潜在模型组合的这种失败,除了Na +外,kbff抗衡离子的不受神经的强大吸引力,外部表面活性剂的阴离子头。尽管模型失败,我们已经观察到软/硬性之间的明确关系(在Hofmeister系列的意义上)和抗衡离子的表面张力贡献,这鉴于模型的上述限制,只能是被视为指明结果。我们强调所获得的结果,虽然以扭曲的方式,但显然强调离子表面活性剂的反逆反击在确定水性表面活性剂溶液的表面张力时的关键作用。

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