Colloid-oil-water-interface interactions in the presence of multiple salts: charge regulation and dynamics

Publication date

2017-06-14

Authors

Everts, J.C.ISNI 0000000419522554
Samin, SelaISNI 0000000442846848
Elbers, N.A.ISNI 0000000506363782
van der Hoeven, JessiISNI 0000000493299290
van Blaaderen, AlfonsISNI 0000000388251965
Roij, René vanISNI 0000000392993654

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Article
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taverne

Abstract

We theoretically and experimentally investigate colloid–oil–water-interface interactions of charged, sterically stabilized, poly(methyl-methacrylate) colloidal particles dispersed in a low-polar oil (dielectric constant e = 5–10) that is in contact with an adjacent water phase. In this model system, the colloidal particles cannot penetrate the oil–water interface due to repulsive van der Waals forces with the interface whereas the multiple salts that are dissolved in the oil are free to partition into the water phase. The sign and magnitude of the Donnan potential and/or the particle charge is affected by these salt concentrations such that the effective interaction potential can be highly tuned. Both the equilibrium effective colloid–interface interactions and the ion dynamics are explored within a Poisson–Nernst–Planck theory, and compared to experimental observations.

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Citation

Everts, J C, Samin, S, Elbers, N A, van der Hoeven, J E S, Van Blaaderen, A & van Roij, R 2017, 'Colloid-oil-water-interface interactions in the presence of multiple salts : charge regulation and dynamics', Physical Chemistry Chemical Physics, vol. 19, no. 22, pp. 14345-14357. https://doi.org/10.1039/c7cp01935a