Related Experiment Video
Updated: Feb 2, 2026

Fabricating High-viscosity Droplets using Microfluidic Capillary Device with Phase-inversion Co-flow Structure
Published on: April 17, 2018
Description of Micellar Radii for Phase Behavior and Viscosity Modeling of Aqueous Surfactant Solutions and
V A Torrealba1, H Hoteit1, R T Johns2
1King Abdullah University of Science and Technology , 3216 Building 5 , Thuwal 23955 , Saudi Arabia.
Abstract:
The study of surfactant solutions and microemulsions is relevant for many industrial applications that include oil recovery, environmental remediation, and detergency. Understanding the coupled nature of microstructure, phase behavior, and rheology can help in the design of these applications. The microstructure of surfactant solutions and microemulsions determines their equilibrium properties, including phase composition and viscosity. Modeling microemulsion phase behavior by explicitly defining the shape and size of micelles allows for the consistent estimation of phase viscosity. We define a coupled microstructure-phase behavior-viscosity model by considering a two-dimensional lattice, where micelles are assumed to be elliptical. We also define equivalent three-dimensional models, where micelles are assumed to be oblate and prolate spheroids. The compositional dependence of the micellar radii is defined such that the oil-internal-bicontinuous-water-internal structural transitions are consistent with experimental observations. The model offers physical insights by modeling the transition between oil-internal-bicontinuous-water-internal regions in ternary diagrams as critical events, which are then tied to the unusual behavior observed in viscosity and scattering.
Related Concept Videos
Chemical Reactions in Aqueous Solutions
Aqueous Solutions and Heats of Hydration
When ionic compounds dissolve in water, the ions in the solid separate and disperse uniformly throughout the solution because water molecules surround and solvate the ions, reducing the strong electrostatic forces between them. This process...
Ionic Radii
Leveling Effect and Non-Aqueous Acid-Base Solutions
The Leveling Effect of a Solvent
A generic acid (HA) reacts with the generic base (B-) to yield the corresponding conjugate base (A-) and conjugate acid (HB):
Atomic Radii and Effective Nuclear Charge
Viscosity
The SI unit of viscosity is...

