Issue 5, 2015

Snapshotted glass and gel transitions of stable colloidal dispersions after shear-driven aggregation in a microchannel

Abstract

Intense shear can lead to aggregation of colloids that are highly stable at rest. The aggregation process typically has an induction time, and then becomes explosive, leading to rapid phase transitions. We study the phase evolution during shear-driven aggregation in a short microchannel (MC) under intense shear for a colloid with a high interaction energy barrier that ensures high stability of particles and clusters before and after intense shear. The short residence time allows us to snapshot the phase evolution by repeatedly cycling the colloid in the MC. It is found that, depending on the particle concentration, in addition to a fluid of clusters and a solid-like gel, there is another solid-like state between them: Wigner glass of clusters. Their transitions occur over a large range of particle concentrations. We have proposed a phase diagram that describes how the transitions of the three phases evolve in the aggregation steady state in the colloidal interaction vs. particle concentration plane.

Graphical abstract: Snapshotted glass and gel transitions of stable colloidal dispersions after shear-driven aggregation in a microchannel

Article information

Article type
Paper
Submitted
20 Jun 2014
Accepted
01 Dec 2014
First published
03 Dec 2014

Soft Matter, 2015,11, 981-986

Author version available

Snapshotted glass and gel transitions of stable colloidal dispersions after shear-driven aggregation in a microchannel

X. Meng, H. Wu and M. Morbidelli, Soft Matter, 2015, 11, 981 DOI: 10.1039/C4SM01339E

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