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新型低能量法制备纳米乳:基于脂肪酸/胺复合物的 pH 调控。

New Low-Energy Method for Nanoemulsion Formation: pH Regulation Based on Fatty Acid/Amine Complexes.

机构信息

College of Chemistry and Chemical Engineering, Southwest Petroleum University, Chengdu 610500, P. R. China.

Oil & Gas Field Applied Chemistry Key Laboratory of Sichuan Province, Chengdu 610500, P. R. China.

出版信息

Langmuir. 2020 Sep 1;36(34):10082-10090. doi: 10.1021/acs.langmuir.0c01233. Epub 2020 Aug 20.

Abstract

Phase inversion composition methods and phase inversion temperature methods are the common methods for nanoemulsion formation. The mechanisms governing both PIC and PIT are the same: composition or temperature can trigger a change in the surfactant spontaneous curvature during the emulsification process. It is anticipated that pH may also induce a change in the spontaneous curvature of pH-responsive surfactants to prepare nanoemulsions. Therefore, fatty acid/amine complexes were synthesized through electrostatic interactions. Based on these complexes, nanoemulsions were successfully prepared by pH regulation. Electrical conductivity and pH measurements were employed to determine the phase inversion process. Dynamic light scattering, digital fluorescence microscopy, and transmission electron microscopy were employed to characterize the droplet size and morphology of the nanoemulsion. The effects of complex concentration, NaCl concentration, and pH of the system were investigated. The developed method, phase inversion pH (PIpH) method, is a moderate and easy-control method. Using this method, the size distributions of nanoemulsion are monomodal and narrow. Nanoemulsion prepared by PIpH has a unique pH-responsive behavior that can be controllably regulated among nanoemulsions, emulsions, and phase separation systems.

摘要

相转变组成法和相转变温度法是制备纳米乳液的常用方法。 PIC 和 PIT 的机制相同:组成或温度可以在乳化过程中触发表面活性剂自发曲率的变化。预计 pH 值也可能引起 pH 响应性表面活性剂的自发曲率发生变化,从而制备纳米乳液。因此,通过静电相互作用合成了脂肪酸/胺复合物。基于这些复合物,通过 pH 调节成功制备了纳米乳液。电导率和 pH 值测量用于确定相转变过程。动态光散射、数字荧光显微镜和透射电子显微镜用于表征纳米乳液的液滴尺寸和形态。考察了复合物浓度、NaCl 浓度和体系 pH 值的影响。所开发的方法,即相转变 pH(PIpH)法,是一种温和且易于控制的方法。使用该方法,纳米乳液的粒径分布呈单峰且较窄。通过 PIpH 制备的纳米乳液具有独特的 pH 响应行为,可以在纳米乳液、乳液和相分离体系之间进行可控调节。

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