Related Experiment Video
Updated: May 31, 2026

Manufacture of Concentrated, Lipid-based Oxygen Microbubble Emulsions by High Shear Homogenization and Serial Concentration
Published on: May 26, 2014
Superswollen microemulsions stabilized by shear and trapped by a temperature quench
Kevin Roger1, Ulf Olsson, Malin Zackrisson-Oskolkova
1PMMH, CNRS UMR 7636, ESPCI, 10 rue Vauquelin, F 75231 Paris cedex 05, France. kevin.roger@espci.fr
Abstract:
We studied the solubilization of oil in the C(16)E(8)/hexadecane/H(2)O system. Close to the phase inversion temperature (PIT), the system, at equilibrium, can form either homogeneous states (i.e., microemulsions) at high surfactant concentrations or three-phase states at lower concentrations. We show that, under gentle shear, at a line we named the clearing boundary (CB), located a few degrees below the PIT, the system is homogeneous regardless of the surfactant concentration. We relate this shift of the microemulsion boundary to shear-induced disruption of the asymmetric bicontinuous structure. Although this state quickly relaxes to equilibrium when shear is stopped, we show that it is still possible to trap it into a metastable state through a temperature quench. This method is the sub-PIT emulsification that we described in a previous work (Roger Langmuir 2010, 26, 3860-3867).
Related Concept Videos
The Colloidal State
Colloidal precipitates
Colloids
Micelles

