Fluid-fluid demixing of off-critical colloid-polymer systems confined between parallel plates.

We investigate the off-critical demixing of colloid-polymer systems confined between two parallel plates, where the surface potential is short ranged. We study the case where the minority phase completely wets the surfaces. We find that initially the sample separates as in bulk, until the size of th...

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Main Authors: Jamie, E, Dullens, R, Aarts, D
Format: Journal article
Language:English
Published: 2012
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author Jamie, E
Dullens, R
Aarts, D
author_facet Jamie, E
Dullens, R
Aarts, D
author_sort Jamie, E
collection OXFORD
description We investigate the off-critical demixing of colloid-polymer systems confined between two parallel plates, where the surface potential is short ranged. We study the case where the minority phase completely wets the surfaces. We find that initially the sample separates as in bulk, until the size of the domains becomes sufficiently large such that further growth is restricted by the plate spacing. The behaviour of the droplets is then determined by the wettability of the walls. We furthermore explore a sample where the loss of wetting phase material to the surfaces causes a shift from a morphology associated with an unstable sample, showing spinodal decomposition, to that associated with a metastable sample. This underlines the importance of the rich interplay between the viscosity contrast and the local volume fraction on the observed morphologies.
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spelling oxford-uuid:f98ef581-e739-4dc7-a3d0-85fe96bc72412022-03-27T12:58:52ZFluid-fluid demixing of off-critical colloid-polymer systems confined between parallel plates.Journal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:f98ef581-e739-4dc7-a3d0-85fe96bc7241EnglishSymplectic Elements at Oxford2012Jamie, EDullens, RAarts, DWe investigate the off-critical demixing of colloid-polymer systems confined between two parallel plates, where the surface potential is short ranged. We study the case where the minority phase completely wets the surfaces. We find that initially the sample separates as in bulk, until the size of the domains becomes sufficiently large such that further growth is restricted by the plate spacing. The behaviour of the droplets is then determined by the wettability of the walls. We furthermore explore a sample where the loss of wetting phase material to the surfaces causes a shift from a morphology associated with an unstable sample, showing spinodal decomposition, to that associated with a metastable sample. This underlines the importance of the rich interplay between the viscosity contrast and the local volume fraction on the observed morphologies.
spellingShingle Jamie, E
Dullens, R
Aarts, D
Fluid-fluid demixing of off-critical colloid-polymer systems confined between parallel plates.
title Fluid-fluid demixing of off-critical colloid-polymer systems confined between parallel plates.
title_full Fluid-fluid demixing of off-critical colloid-polymer systems confined between parallel plates.
title_fullStr Fluid-fluid demixing of off-critical colloid-polymer systems confined between parallel plates.
title_full_unstemmed Fluid-fluid demixing of off-critical colloid-polymer systems confined between parallel plates.
title_short Fluid-fluid demixing of off-critical colloid-polymer systems confined between parallel plates.
title_sort fluid fluid demixing of off critical colloid polymer systems confined between parallel plates
work_keys_str_mv AT jamiee fluidfluiddemixingofoffcriticalcolloidpolymersystemsconfinedbetweenparallelplates
AT dullensr fluidfluiddemixingofoffcriticalcolloidpolymersystemsconfinedbetweenparallelplates
AT aartsd fluidfluiddemixingofoffcriticalcolloidpolymersystemsconfinedbetweenparallelplates