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通过原位颗粒表面改性定制皮克林双乳液

Tailoring Pickering Double Emulsions by in Situ Particle Surface Modification.

作者信息

Tiwari Madhvi, Basavaraj Madivala G, Dugyala Venkateshwar Rao

机构信息

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

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

出版信息

Langmuir. 2023 Feb 28;39(8):2911-2921. doi: 10.1021/acs.langmuir.2c02266. Epub 2023 Feb 1.

Abstract

Fundamental studies on the formation and stability of Pickering double emulsions are crucial for their industrial applications. Available methods of double emulsion preparation involve multiple tedious steps and can formulate a particular type of double emulsion, that is, water-in-oil-in-water (w/o/w) or oil-in-water-in-oil (o/w/o). In this work, we proposed a simple single-step in situ surface modification method to stabilize different types of double emulsions using hematite and silica particle systems which involves the addition of oleic acid. In the emulsification studies, we use (i) a combination of hematite and oleic acid, which is termed the binary system, and (ii) a mixture of hematite and silica particles together with oleic acid, which is designated as the ternary system. The wettability of hematite particles is tuned by direct or sequential addition of oleic acid to the water-decane medium. The direct surface modification (which involves the addition of a known quantity of oleic acid to the oil-water mixtures at once) of hematite particles in both binary and ternary systems shows transitional phase inversion from oil-in-water (o/w) to water-in-oil (w/o) emulsions. However, sequential surface modification results in the transition of a single emulsion to double emulsions. In the case of the binary system, the sequential surface modification of the hematite-particle-stabilized o/w emulsion can be converted into double emulsions of o/w/o type. However, in the case of the ternary system, i.e., in the presence of silica particles, sequential surface modification of hematite particles stabilizes both single (o/w) and double (w/o/w and o/w/o) emulsions. The critical concentration of oleic acid required to form a double emulsion is observed to be dependent on the ratio of the surface area of the silica particle to the total surface area of particles () and mixing protocols. A study of the size distribution of oil and water droplets of double emulsions shows that droplet size can be controlled by oleic acid concentration and magnitude of . The arrangements of the particles at interfaces are visualized by SEM imaging. In this way, we developed an easy and novel single-step method of double emulsion preparation and provide a strategy to tailor the formation of different types of emulsions with a single/binary particle system by sequential in situ surface modification of the particles.

摘要

对Pickering双重乳液的形成和稳定性进行基础研究对其工业应用至关重要。现有的双重乳液制备方法涉及多个繁琐步骤,并且只能制备特定类型的双重乳液,即水包油包水(w/o/w)或油包水包油(o/w/o)。在本研究中,我们提出了一种简单的单步原位表面改性方法,使用赤铁矿和二氧化硅颗粒体系并添加油酸来稳定不同类型的双重乳液。在乳化研究中,我们使用(i)赤铁矿和油酸的组合,称为二元体系,以及(ii)赤铁矿和二氧化硅颗粒与油酸的混合物,指定为三元体系。通过向水 - 癸烷介质中直接或顺序添加油酸来调节赤铁矿颗粒的润湿性。在二元和三元体系中,赤铁矿颗粒的直接表面改性(即一次向油水混合物中添加已知量的油酸)显示出从水包油(o/w)乳液到油包水(w/o)乳液的转变相转变。然而,顺序表面改性导致单乳液向双重乳液的转变。在二元体系的情况下,赤铁矿颗粒稳定的o/w乳液的顺序表面改性可以转化为o/w/o型双重乳液。然而,在三元体系的情况下,即在存在二氧化硅颗粒的情况下,赤铁矿颗粒的顺序表面改性稳定了单乳液(o/w)和双重乳液(w/o/w和o/w/o)。观察到形成双重乳液所需的油酸临界浓度取决于二氧化硅颗粒表面积与颗粒总表面积的比率()和混合方案。对双重乳液的油滴和水滴尺寸分布的研究表明,液滴尺寸可以通过油酸浓度和的大小来控制。通过SEM成像观察颗粒在界面处的排列。通过这种方式,我们开发了一种简单新颖的单步双重乳液制备方法,并提供了一种通过对颗粒进行顺序原位表面改性来定制使用单/二元颗粒体系形成不同类型乳液的策略。

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