arXiv · 1512.07032
Quantitative Morphological Optimization of Bicontinuous Pickering Emulsions via Interfacial Curvatures
Abstract
Bicontinuous Pickering emulsions (bijels) are a physically interesting class of soft materials with many potential applications including catalysis, microfluidics and tissue engineering. They are created by arresting the spinodal decomposition of a partially-miscible liquid with a (jammed) layer of interfacial colloids. Porosity $L$ (average interfacial separation) of the bijel is controlled by varying the radius ($r$) and volume fraction ($ϕ$) of the colloids ($L \propto r/ϕ$). However, to optimize the bijel structure with respect to other parameters, e.g. quench rate, characterizing by $L$ alone is insufficient. Hence, we have used confocal microscopy and X-ray CT to characterize a range of bijels in terms of local and area-averaged interfacial curvatures. In addition, the curvatures of bijels have been monitored as a function of time, which has revealed an intriguing evolution up to 60 minutes after bijel formation, contrary to previous understanding.
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M. Reeves, J. H. J. Thijssen. 2015-12-22. Quantitative Morphological Optimization of Bicontinuous Pickering Emulsions via Interfacial Curvatures. https://arxiv.org/abs/1512.07032
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