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反胶束中的界面氢键动力学:表面活性剂异质性的作用

Interfacial H-Bond Dynamics in Reverse Micelles: The Role of Surfactant Heterogeneity.

作者信息

Baryiames Christopher P, Teel Morgan, Baiz Carlos R

机构信息

University of Texas at Austin , Austin 78712 , Texas , United States.

出版信息

Langmuir. 2019 Sep 3;35(35):11463-11470. doi: 10.1021/acs.langmuir.9b01693. Epub 2019 Aug 23.

Abstract

Characterizing the hydrogen bond structure and dynamics at surfactant interfaces is essential for understanding how microscopic interactions translate to bulk microemulsion properties. Heterogeneous blends containing tens or hundreds of surfactants are common in the industry, but the most fundamental studies have been carried out on micelles composed of a single surfactant species. Therefore, the effect of surfactant heterogeneity on the interfacial structure and dynamics remains poorly understood. Here, we use ultrafast two-dimensional infrared spectroscopy and molecular dynamics simulations to characterize sub-picosecond solvation dynamics as a function of the surfactant composition in ∼120 nm water-in-oil reverse micelles. We probe the ester carbonyl vibrations of nonionic sorbitan surfactants, which are located precisely at the interface between the polar and nonpolar regions, and as such, report on the interfacial water dynamics. We show a 7% increase in hydrogen bond populations together with a 37% slowdown of interfacial hydrogen bond dynamics in heterogeneous mixtures containing hundreds of species, compared to more uniform compositions. Simulations, which are in semiquantitative agreement with experiments, indicate that structural diversity leads to decreased packing efficiency, which in turn drives water further into the otherwise hydrophobic region. Interestingly, this increase in hydration is accompanied by a slowdown of dynamics, indicating that water molecules solvating surfactants are conformationally constrained. These studies demonstrate that the composition and heterogeneity are key factors in determining interfacial properties.

摘要

表征表面活性剂界面处的氢键结构和动力学对于理解微观相互作用如何转化为宏观微乳液性质至关重要。含有数十种或数百种表面活性剂的非均相混合物在工业中很常见,但最基础的研究是在由单一表面活性剂种类组成的胶束上进行的。因此,表面活性剂非均质性对界面结构和动力学的影响仍然知之甚少。在这里,我们使用超快二维红外光谱和分子动力学模拟来表征亚皮秒级的溶剂化动力学,它是约120 nm油包水反胶束中表面活性剂组成的函数。我们探测非离子山梨醇酐表面活性剂的酯羰基振动,其精确位于极性和非极性区域之间的界面处,因此可以反映界面水的动力学。我们发现,与更均匀的组成相比,在含有数百种表面活性剂的非均相混合物中,氢键数量增加了7%,同时界面氢键动力学减慢了37%。与实验半定量一致的模拟表明,结构多样性导致堆积效率降低,进而驱使水进一步进入原本疏水的区域。有趣的是,这种水合作用的增加伴随着动力学的减慢,表明溶剂化表面活性剂的水分子在构象上受到限制。这些研究表明,组成和非均质性是决定界面性质的关键因素。

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