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椭球体稳定乳液的相转变

Phase Inversion of Ellipsoid-Stabilized Emulsions.

作者信息

Kumar Hemant, Dugyala Venkateshwar Rao, Basavaraj Madivala G

机构信息

Polymer Engineering and Colloid Science(PECS) Laboratory, Department of Chemical Engineering, Indian Institute of Technology Madras, Chennai - 600036, Tamil Nadu, India.

Department of Chemical Engineering, Indian Institute of Science Education and Research Bhopal, Bhopal 462 066 Madhya Pradesh, India.

出版信息

Langmuir. 2021 Jun 22;37(24):7295-7304. doi: 10.1021/acs.langmuir.1c00456. Epub 2021 Jun 8.

Abstract

The efficacy of anisotropic particles in Pickering emulsion stabilization, attributed to shape-induced capillary interactions, is well-documented in the literature. In this contribution, we show that the surface of hematite ellipsoids can be modified in situ by the addition of oleic acid to effect transitional phase inversion of Pickering emulsions. Interestingly, incorporation of oleic acid results in the formation of nonspherical emulsion drops. The phase inversion of oil-in-water to water-in-oil and the transition in shape of emulsion drops from spherical to nonspherical is observed in two different particle systems, namely, nanoellipsoids and microellipsoids. The surface of spherical emulsion drops stabilized by particles or particles along with high concentration of oleic acid is found to consist of ellipsoids arranged in a close-packed configuration with their major axis parallel to the interface. In contrast, at intermediate oleic acid concentration, the surface of nonspherical emulsion drops is observed to be covered with loosely packed particle monolayer, with the ellipsoids at the oil/water interface taking up many different orientations. Using contact angle goniometry, the change in the wettability of hematite particles due to adsorption of oleic acid is established to be the mechanism responsible for the phase inversion of Pickering emulsions.

摘要

文献中充分证明了各向异性颗粒在皮克林乳液稳定化中的功效,这归因于形状诱导的毛细管相互作用。在本论文中,我们表明通过添加油酸可以原位修饰赤铁矿椭球体的表面,从而实现皮克林乳液的转相。有趣的是,油酸的加入导致形成非球形乳液滴。在两种不同的颗粒体系,即纳米椭球体和微米椭球体中,观察到了水包油到油包水的转相以及乳液滴形状从球形到非球形的转变。发现由颗粒或颗粒与高浓度油酸稳定的球形乳液滴表面由紧密堆积排列的椭球体组成,其长轴平行于界面。相反,在中等油酸浓度下,观察到非球形乳液滴的表面覆盖着松散堆积的颗粒单层,在油/水界面处的椭球体呈现许多不同的取向。通过接触角测角法,确定由于油酸吸附导致的赤铁矿颗粒润湿性变化是皮克林乳液转相的机制。

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