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通过阳离子表面活性剂和带正电的氢氧化镁纳米片制备的pH/离子双响应乳液

pH/Ion Dual-Responsive Emulsion Via a Cationic Surfactant and Positively Charged Magnesium Hydroxide Nanosheets.

作者信息

Zhu Pei, Chen Juan, Ding Yanfen, Liu Peng, Fan Haijun, Yang Mingshu

机构信息

Beijing National Laboratory for Molecular Science, Key Laboratory of Engineering Plastics, Institute of Chemistry Chinese Academy of Sciences, Beijing 100190, P. R. China.

University of Chinese Academy of Sciences, Beijing 100149, P. R. China.

出版信息

Langmuir. 2024 Mar 12;40(10):5360-5368. doi: 10.1021/acs.langmuir.3c03830. Epub 2024 Mar 1.

Abstract

Emulsions, formed by dispersing a liquid into another immiscible one by virtue of emulsifiers, have been widely applied in commercial applications like foods, pharmaceuticals, cosmetics, and personal care, which always confront environmental and/or toxic questions due to emulsifiers' high dosage. Recently, a study on Pickering emulsions points out a solution to stable emulsions based on the costabilizing effect of colloidal particles, which focused on surface-active particles cooperating with oppositely charged ionic surfactants. Costabilized emulsions adopting a charge-similar ionic surfactant and particles were less studied. In this article, a hexane-in-water emulsion was prepared in use of a cationic surfactant cetyltrimethylammonium bromide (CTAB) with positively charged magnesium hydroxide (MH) nanosheets at low concentrations (10 M and 10 wt %, respectively). The emulsion is stable due to the synergy by CTAB and MH nanosheets, which functions in virtue of the electric repulsion by similarly charged particles, the mechanical shielding by MH nanosheets, and restrained water drainage in lamellae between droplets due to the gelation of MH nanosheets. Moreover, the emulsion is doubly switchable within emulsification/demulsification via convenient pH or ion manipulation, a mechanism based on the breakdown and rebuilding of the costabilizing synergy. Such dual-responsive emulsions show high potential for the delicate control of drug delivery, release, and biphasic biocatalysis applications.

摘要

乳液是通过乳化剂将一种液体分散到另一种不混溶的液体中形成的,已广泛应用于食品、制药、化妆品和个人护理等商业领域,由于乳化剂用量大,这些领域一直面临环境和/或毒性问题。最近,一项关于皮克林乳液的研究指出了一种基于胶体颗粒协同稳定作用制备稳定乳液的方法,该方法侧重于表面活性颗粒与带相反电荷的离子表面活性剂的协同作用。而采用电荷相似的离子表面活性剂和颗粒的协同稳定乳液的研究较少。在本文中,使用阳离子表面活性剂十六烷基三甲基溴化铵(CTAB)和低浓度(分别为10 mM和10 wt%)带正电荷的氢氧化镁(MH)纳米片制备了水包己烷乳液。该乳液由于CTAB和MH纳米片的协同作用而稳定,其作用机制包括带相同电荷颗粒之间的电排斥、MH纳米片的机械屏蔽以及由于MH纳米片的凝胶化而抑制液滴间薄片中的排水。此外,通过方便的pH或离子操作,该乳液在乳化/破乳过程中具有双重可切换性,其机制基于协同稳定作用的破坏和重建。这种双响应乳液在药物递送、释放和双相生物催化应用的精细控制方面具有很高的潜力。

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