Issue 18, 2012

A simple microfluidic probe of nanoparticle suspension stability

Abstract

We describe a simple experimental tool that enables stability of multicomponent nanoparticle suspensions to be readily assessed by establishing a confinement-imposed chemical discontinuity at the interface between co-flowing laminar streams in a microchannel. When applied to examine Al2O3 nanoparticle suspensions, this method readily reveals compositions that are susceptible to aggregation even when conventional bulk measurements (zeta potential, dynamic light scattering, bulk viscosity) suggest only subtle differences between formulations. This microfluidic stability test enables simple and rapid assessment of quality and variability in complex multicomponent mixtures for which few, if any, comparable data exist. The paradoxical ease at which localized aggregation can be triggered in suspensions that would otherwise appear stable also serves as a caution to researchers undertaking tracer-based studies of nanomaterial suspensions.

Graphical abstract: A simple microfluidic probe of nanoparticle suspension stability

Supplementary files

Article information

Article type
Paper
Submitted
09 Dec 2011
Accepted
04 Jul 2012
First published
04 Jul 2012

Lab Chip, 2012,12, 3467-3473

A simple microfluidic probe of nanoparticle suspension stability

S. Ozturk, Y. A. Hassan and V. M. Ugaz, Lab Chip, 2012, 12, 3467 DOI: 10.1039/C2LC40618G

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