Coexisting multiphase and interfacial behaviour of ouzo

Fuente: arXiv
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Main Authors: Sibley, David N., Goddard, Benjamin D., Ouali, Fouzia F., Fairhurst, David J., Archer, Andrew J.
Format: Preprint
Published: 2024
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author Sibley, David N.
Goddard, Benjamin D.
Ouali, Fouzia F.
Fairhurst, David J.
Archer, Andrew J.
author_facet Sibley, David N.
Goddard, Benjamin D.
Ouali, Fouzia F.
Fairhurst, David J.
Archer, Andrew J.
contents Multi-component liquid mixtures can be both complex and fascinating, with some systems being amenable to simple experimentation at home, giving valuable insight into fundamental aspects of bulk and interfacial phase behaviour. One particularly interesting mixture is the popular drink ouzo, which has charmed both the general public and scientists by virtue of its ability to display spontaneous emulsification when water is added. When these two clear (and potable) liquids are poured into each other, a single milky-coloured liquid is formed. In previous work [Archer et al., Soft Matter 20, 5889 (2024)], the equilibrium phase-diagram for the stable liquid phases of ouzo was captured via experiment and modelling. Here we consider the case when the two liquid phases also coexist with the vapour phase (i.e. along a line of triple points) and within our model uncover the complex bulk phase behaviour for this simple beverage. As a consequence, this leads to some interesting observations, that also apply more widely, about visualising phase diagrams in ternary systems of this type. We also examine the interfacial behaviour, connecting microscopic density functional theory results with macroscopic (Neumann) predictions for the shape of droplets at interfaces.
format Preprint
id arxiv_https___arxiv_org_abs_2412_14774
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Coexisting multiphase and interfacial behaviour of ouzo
Sibley, David N.
Goddard, Benjamin D.
Ouali, Fouzia F.
Fairhurst, David J.
Archer, Andrew J.
Soft Condensed Matter
Multi-component liquid mixtures can be both complex and fascinating, with some systems being amenable to simple experimentation at home, giving valuable insight into fundamental aspects of bulk and interfacial phase behaviour. One particularly interesting mixture is the popular drink ouzo, which has charmed both the general public and scientists by virtue of its ability to display spontaneous emulsification when water is added. When these two clear (and potable) liquids are poured into each other, a single milky-coloured liquid is formed. In previous work [Archer et al., Soft Matter 20, 5889 (2024)], the equilibrium phase-diagram for the stable liquid phases of ouzo was captured via experiment and modelling. Here we consider the case when the two liquid phases also coexist with the vapour phase (i.e. along a line of triple points) and within our model uncover the complex bulk phase behaviour for this simple beverage. As a consequence, this leads to some interesting observations, that also apply more widely, about visualising phase diagrams in ternary systems of this type. We also examine the interfacial behaviour, connecting microscopic density functional theory results with macroscopic (Neumann) predictions for the shape of droplets at interfaces.
title Coexisting multiphase and interfacial behaviour of ouzo
topic Soft Condensed Matter
url https://arxiv.org/abs/2412.14774