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表面活性剂在不同流体界面的吸附

Surfactant Adsorption to Different Fluid Interfaces.

作者信息

Bergfreund Jotam, Siegenthaler Sarina, Lutz-Bueno Viviane, Bertsch Pascal, Fischer Peter

机构信息

Institute of Food, Nutrition and Health, ETH Zürich, 8092 Zürich, Switzerland.

出版信息

Langmuir. 2021 Jun 8;37(22):6722-6727. doi: 10.1021/acs.langmuir.1c00668. Epub 2021 May 24.

Abstract

Surfactant adsorption to fluid interfaces is ubiquitous in biological systems, industrial applications, and scientific fields. Herein, we unravel the impact of the hydrophobic phase (air and oil) and the role of oil polarity on the adsorption of surfactants to fluid interfaces. We investigated the adsorption of anionic (sodium dodecyl sulfate), cationic (dodecyltrimethylammonium bromide), and non-ionic (polyoxyethylene-(23)-monododecyl ether) surfactants at different interfaces, including air and oils, with a wide range of polarities. The surfactant-induced interfacial tension decrease, called the interfacial pressure, correlates linearly with the initial interfacial tension of the clean oil-water interface and describes the experimental results of over 30 studies from the literature. The higher interfacial competition of surfactant and polar oil molecules caused the number of adsorbed molecules at the interface to drop. Further, we found that the critical micelle concentration of surfactants in water correlates to the solubility of the oil molecules in water. Hence, the nature of the oil affects the adsorption behavior and equilibrium state of the surfactant at fluid interfaces. These results broaden our understanding and enable better predictability of the interactions of surfactants with hydrophobic phases, which is essential for emulsion, foam, and capsule formation, pharmaceutical commodities, cosmetics, and many food products.

摘要

表面活性剂在流体界面上的吸附现象在生物系统、工业应用和科学领域中普遍存在。在此,我们揭示了疏水相(空气和油)的影响以及油的极性在表面活性剂吸附到流体界面过程中的作用。我们研究了阴离子型(十二烷基硫酸钠)、阳离子型(十二烷基三甲基溴化铵)和非离子型(聚氧乙烯-(23)-单十二烷基醚)表面活性剂在不同界面(包括具有广泛极性的空气和油)上的吸附情况。表面活性剂引起的界面张力降低,即界面压力,与清洁油水界面的初始界面张力呈线性相关,并描述了来自文献的30多项研究的实验结果。表面活性剂与极性油分子之间更高的界面竞争导致界面上吸附分子的数量下降。此外,我们发现表面活性剂在水中的临界胶束浓度与油分子在水中的溶解度相关。因此,油的性质会影响表面活性剂在流体界面上的吸附行为和平衡状态。这些结果拓宽了我们的理解,并使我们能够更好地预测表面活性剂与疏水相之间的相互作用,这对于乳液、泡沫和胶囊的形成、药品、化妆品以及许多食品来说至关重要。

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