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Towards quantifying the role of hydrogen bonding within amphiphile self-association and resultant aggregate formation

机译:试图量化两亲分子自缔合中氢键的作用以及形成的聚集体

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摘要

Herein, we present a series of five tetrabutylammonium (TBA) sulfonate–urea amphiphilic salts. In solution these amphiphilic salts have been shown to form a variety of self-associated species. The proportion and type of which are both solvent and concentration dependent. In DMSO-d6 a variety of NMR experiments provide evidence towards the formation of mainly dimeric over larger aggregate species. Increasing the percentage of water was shown to increase the concentration of the larger aggregates over dimers in solution. A correlation was established between critical micelle concentration (CMC) values obtained in a 1 : 19 EtOH : H2O mixture, dimeric self-association constants obtained in a DMSO-d6 – 0.5% H2O and the results of simple semi-empirical PM6 computational modelling methods. This approach begins to quantify the role of hydrogen bonding in amphiphile self-association and the effects it imparts on surfactant properties. This consequently provides preliminary evidence that these properties maybe predicted by simple low level computational modelling techniques.
机译:本文中,我们介绍了一系列五种四丁基铵磺酸盐(TBA)磺酸盐-脲两亲盐。在溶液中,这些两亲盐已显示出形成多种自缔合的物种。其比例和类型均取决于溶剂和浓度。在DMSO-d6中,各种NMR实验提供了在较大的聚集体物种上形成主要为二聚体的证据。结果表明,增加水的百分比会增加溶液中二聚体上较大聚集体的浓度。在1 in:19 EtOH:H2O混合物中获得的临界胶束浓度(CMC)值,在DMSO-d6 – 0.5%H2O中获得的二聚体自缔合常数与简单的半经验PM6计算建模方法的结果之间建立了相关性。这种方法开始量化氢键在两亲物自缔合中的作用及其对表面活性剂性能的影响。因此,这提供了可以通过简单的低级计算建模技术预测这些属性的初步证据。

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