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由液滴桥接形成的 Pickering 乳液凝胶的特性。

Characteristics of pickering emulsion gels formed by droplet bridging.

机构信息

Department of Chemical Engineering & Materials Science, University of California, Irvine, California 92697, United States.

出版信息

Langmuir. 2012 Feb 14;28(6):3085-91. doi: 10.1021/la203384f. Epub 2011 Nov 11.

Abstract

We experimentally characterize the microstructure and rheology of a carefully designed mixture of immiscible fluids and near-neutral-wetting colloidal particles. Particle bridging across two fluid interfaces provides a route to highly stable gel-like emulsions at volume fractions of the dispersed phase well below the random close-packing limit for spheres. We investigate the microstructural origins of this behavior by confocal microscopy and reveal a percolating network of colloidal particles that serves as a cohesive scaffold, bridging together droplets of the dispersed phase. Remarkably, the mixture's salient rheological characteristics are governed predominantly by the solids loading and can be tailored irrespective of the droplet volume fraction. The identification of this rheological hallmark could provide a means toward the improved design of modern products that utilize solid-stabilized interfaces.

摘要

我们通过实验对精心设计的不混溶流体混合物和近中性润湿胶体颗粒的微观结构和流变特性进行了表征。颗粒在两个流体界面之间架桥提供了一种途径,可以在分散相的体积分数远低于球体随机密堆积极限的情况下,形成高度稳定的类凝胶乳液。我们通过共焦显微镜研究了这种行为的微观结构起源,并揭示了胶体颗粒的渗透网络,该网络作为一种有凝聚力的支架,将分散相的液滴连接在一起。值得注意的是,混合物的显著流变特性主要由固体负载控制,并且可以根据需要进行调整,而与液滴体积分数无关。这种流变特征的确定可能为改进利用固体稳定界面的现代产品设计提供一种手段。

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