Kaganyuk Max, Mohraz Ali
Department of Chemical and Biomolecular Engineering , University of California , Irvine , California 92697 , United States.
Langmuir. 2019 Oct 1;35(39):12807-12816. doi: 10.1021/acs.langmuir.9b02223. Epub 2019 Sep 13.
High internal phase emulsions (HIPEs) comprise highly faceted droplets separated by thin films of fluid. Though surfactants are traditionally used in formulating HIPEs, growing interest in solid-stabilized HIPEs calls for a better understanding of how particles may affect the coalescence of droplets at high volume fractions of the dispersed phase. In this study, we address the effect of particle size on this issue. Using confocal microscopy, we examine the microstructures of four different solid-stabilized emulsion series and quantify droplet coalescence in each. We show that, systematically, HIPEs stabilized with smaller particles show a greater propensity for film rupture and the presence of partially coalesced droplets, whereas the use of larger particles results in a higher fraction of bridged particle monolayers between neighboring droplets. This result is in contrast with the behavior of dilute emulsions, where the use of smaller particles has been shown to impart greater stability against droplet coalescence. Utilizing a simple model of film rupture, we rationalize our experimental findings in the context of the capillary pressure profile within a solid-stabilized liquid film, and show that bridged monolayer formation is directly linked to improved film stability at high volume fractions of the dispersed phase. Therefore, particle size can impact the stability of solid-stabilized HIPEs by influencing their propensity for monolayer formation.
高内相乳液(HIPEs)由被流体薄膜分隔的高度多面的液滴组成。尽管传统上在配制HIPEs时使用表面活性剂,但对固体稳定的HIPEs的兴趣日益增加,这就需要更好地理解在高分散相体积分数下颗粒如何影响液滴的聚结。在本研究中,我们探讨了粒径对这个问题的影响。使用共聚焦显微镜,我们检查了四个不同的固体稳定乳液系列的微观结构,并对每个系列中的液滴聚结进行了量化。我们发现,系统地,用较小颗粒稳定的HIPEs表现出更大的膜破裂倾向和部分聚结液滴的存在,而使用较大颗粒会导致相邻液滴之间桥接颗粒单层的比例更高。这一结果与稀乳液的行为相反,在稀乳液中,已表明使用较小颗粒可赋予液滴聚结更大的稳定性。利用一个简单的膜破裂模型,我们在固体稳定液膜内的毛细管压力分布的背景下对我们的实验结果进行了合理化解释,并表明桥接单层的形成与在高分散相体积分数下膜稳定性的提高直接相关。因此,粒径可以通过影响单层形成的倾向来影响固体稳定的HIPEs的稳定性。