Correlated diffusion of colloidal particles near a liquid-liquid interface
Abstract
Optical microscopy and multi-particle tracking are used to investigate the cross-correlated diffusion of quasi two-dimensional (2D) colloidal particles near an oil-water interface. It is shown that the effect of the interface on correlated diffusion is asymmetric. Along the line joining the centers of particles, the amplitude of correlated diffusion coefficient is enhanced by the interface, while the decay rate of is hardly affected. At the direction perpendicular to the line, the decay rate of is enhanced at short inter-particle separation . This enhancing effect fades at the long . In addition, both and are independent of the colloidal area fraction at long , which indicates that the hydrodynamic interactions (HIs) among the particles are dominated by that through the surrounding fluid at this region. However, at short , is dependent on , which suggests the HIs are more contributed from the 2D particle monolayer self.
Cite
@article{arxiv.1304.3916,
title = {Correlated diffusion of colloidal particles near a liquid-liquid interface},
author = {Wei Zhang and Song Chen and Na Li and Jiazheng Zhang and Wei Chen},
journal= {arXiv preprint arXiv:1304.3916},
year = {2015}
}
Comments
5 figures