Related Experiment Video
Updated: May 26, 2026

Phase Behavior of Charged Vesicles Under Symmetric and Asymmetric Solution Conditions Monitored with Fluorescence Microscopy
Published on: October 24, 2017
Theoretical calculation of the phase behavior of colloidal membranes
Yasheng Yang1, Michael F Hagan
1Department of Physics, Brandeis University, Waltham, Massachusetts 02454, USA.
Abstract:
We formulate a density functional theory that describes the phase behavior of hard rods and depleting polymers, as realized in recent experiments on suspensions of fd virus and nonadsorbing polymer. The theory predicts the relative stability of nematic droplets, stacked smectic columns, and a recently discovered phase of isolated monolayers of rods, or colloidal membranes. We find that a minimum rod aspect ratio is required for stability of colloidal membranes and that collective protrusion undulations are the dominant effect that stabilizes this phase. The theoretical predictions are shown to be qualitatively consistent with experimental and computational results.
Related Concept Videos
The Colloidal State
Electrochemical Systems
Colloidal precipitates
Fluid Mosaic Model
Membrane Fluidity
Phase Transitions: Sublimation and Deposition

