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用于稳定和控制双重乳液中水传输的混合表面活性剂。

Mixed surfactants for stabilizing and controlling water transport in double emulsions.

作者信息

Kim Eunseo, Yoon Jongsun, Jang Jong Dae, Oh Heemuk, Lee Hyomin

机构信息

Department of Chemical Engineering, Pohang University of Science and Technology (POSTECH), Pohang 37673, Republic of Korea.

Neutron Science Division, Korea Atomic Energy Research Institute, 1045 Daedeok-daero, Yuseong-gu, Daejeon 34057, Republic of Korea.

出版信息

Sci Adv. 2025 Jun 27;11(26):eadv7043. doi: 10.1126/sciadv.adv7043.

Abstract

Double emulsions, comprising an aqueous droplet enclosed within an oil shell, hold great potential as versatile microcompartments for a variety of applications. However, their widespread utility is often limited by inherent instability and uncontrolled water transport. In this study, we use droplet microfluidics to prepare double emulsions with uniform thin oil shells stabilized by mixed surfactant systems. By combining monomeric and polymeric surfactants, we demonstrate that polymeric surfactants enhance stability by preventing oil shell drainage, while monomeric surfactants substantially increase water transport above a critical concentration, albeit reducing the emulsion lifespan. Swelling kinetics experiments, coupled with small-angle neutron scattering analysis, reveal that interface-controlled water transport occurs via mixed reverse micelle solubilization. This study provides valuable insights into designing double emulsions with optimized surfactant compositions, enabling enhanced stability and tunable water transport, with potential applications across food, cosmetics, and drug delivery systems.

摘要

双重乳液由包裹在油壳内的水滴组成,作为用于各种应用的多功能微隔室具有巨大潜力。然而,它们的广泛应用常常受到固有不稳定性和不受控制的水传输的限制。在本研究中,我们使用微滴微流控技术制备具有由混合表面活性剂体系稳定的均匀薄油壳的双重乳液。通过结合单体表面活性剂和聚合物表面活性剂,我们证明聚合物表面活性剂通过防止油壳排水来提高稳定性,而单体表面活性剂在临界浓度以上会大幅增加水传输,尽管会缩短乳液寿命。溶胀动力学实验与小角中子散射分析相结合,揭示界面控制的水传输通过混合反胶束增溶发生。本研究为设计具有优化表面活性剂组成的双重乳液提供了有价值的见解,能够提高稳定性和实现可调水传输,在食品、化妆品和药物递送系统等领域具有潜在应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b99b/12204168/60052a012394/sciadv.adv7043-f1.jpg

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