Distinctive rheological properties of Pickering emulsions: from their origin to the applications

IF 2.2 4区 工程技术 Q2 MECHANICS Korea-Australia Rheology Journal Pub Date : 2022-03-08 DOI:10.1007/s13367-022-00018-x
EunSuk Lee, DongGwon Kim, KyuHan Kim
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引用次数: 4

Abstract

Pickering emulsion, which is stabilized by colloidal particles, has shown great promise in various fields due to its great stability and processibility. Depending on the type, size, number of colloidal particles, volume fraction of the dispersed phase, and emulsification method, various Pickering emulsions with different internal structures can easily be produced. Furthermore, according to the internal structure, the considerably different rheological properties can be achieved, from Newtonian viscous-like response to Hookean solid-like response. This strongly suggests that the rheological properties of Pickering emulsions can be tuned, especially for specific applications. In this paper, we summarize the progress in the measurement and understanding of the rheological properties of Pickering emulsions. We also categorize them into three different sections, depending on the volume fraction of the dispersed phase. Furthermore, we introduce the applications of Pickering emulsions that have recently become popular due to their distinctive rheological properties.

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皮克林乳剂的独特流变性能:从起源到应用
以胶体粒子为稳定剂的酸洗乳因其良好的稳定性和可加工性在各个领域显示出很大的应用前景。根据胶体颗粒的种类、大小、数量、分散相的体积分数和乳化方法的不同,可以很容易地生产出具有不同内部结构的各种皮克林乳液。此外,根据内部结构的不同,可以实现从牛顿黏性响应到胡克固体响应的明显不同的流变特性。这强烈表明,皮克林乳剂的流变性能是可以调整的,特别是对于特定的应用。本文综述了近年来国内外对皮克林乳剂流变性能的研究进展。根据分散相的体积分数,我们还将它们分为三个不同的部分。此外,我们还介绍了皮克林乳液的应用,由于其独特的流变特性,皮克林乳液最近变得流行。
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来源期刊
Korea-Australia Rheology Journal
Korea-Australia Rheology Journal 工程技术-高分子科学
CiteScore
2.80
自引率
0.00%
发文量
28
审稿时长
>12 weeks
期刊介绍: The Korea-Australia Rheology Journal is devoted to fundamental and applied research with immediate or potential value in rheology, covering the science of the deformation and flow of materials. Emphases are placed on experimental and numerical advances in the areas of complex fluids. The journal offers insight into characterization and understanding of technologically important materials with a wide range of practical applications.
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