Micro-rheology near fluid interfaces

Date

2011

Authors

Wang, Genmiao
Prabhakar, R
Gao, Yongxiang
Sevick, Edith M

Journal Title

Journal ISSN

Volume Title

Publisher

Institute of Physics Publishing

Abstract

Using optical trapping, we have measured anisotropic and distance-dependent mobility of a colloidal particle near high surface tension fluid-fluid interfaces. These experimental results show that the parallel mobility is enhanced near a high surface tension liquid-gas surface, which is consistent with hydrodynamic predictions for a surface that does not support a stress, and that the parallel mobility is suppressed near a high surface tension liquid-liquid surface, consistent with a no-slip solid boundary. We demonstrate the potential for this optical technique to be applied to soft interfaces by predicting the normalized PSD using recent hydrodynamic predictions on particle mobility near soft surfaces.

Description

Keywords

Keywords: Colloidal particle; Fluid fluid interfaces; Fluid interface; Liquid-liquids; Optical technique; optical trapping; Particle mobility; Soft surface; soft surfaces; Solid boundaries; Colloid chemistry; Colloids; Fluid dynamics; Fluidity; Forecasting; Frictio colloid mobility; friction; optical trapping; soft surfaces

Citation

Source

Journal of Optics

Type

Journal article

Book Title

Entity type

Access Statement

License Rights

Restricted until

2037-12-31