Long-range attraction between colloidal spheres at the air-water interface: The consequence of an irregular meniscus

Dimitris Stamou, Claus Duschl, and Diethelm Johannsmann
Phys. Rev. E 62, 5263 – Published 1 October 2000
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Abstract

Recent observations of charged colloidal particles trapped at the air-water interface revealed long-range interparticle attractive forces, not accounted for by the standard theories of colloidal interactions. We propose a mechanism for attraction which is based on nonuniform wetting causing an irregular shape of the particle meniscus. The excess water surface area created by these distortions can be minimized when two adjacent particles assume an optimum relative orientation and distance. Typically, for spheres with diameter of 1 μm at an interparticle distance of 2 μm, deviations from the ideal contact line by as little as 50 nm result in an interaction energy of the order of 104kT. Roughness-induced capillarity explains the experimental findings, including the cluster dissolution caused by addition of detergent to the subphase and the formation of linear aggregates. This kind of interaction should also be of importance in particle-stabilized foams and emulsions.

  • Received 23 December 1999

DOI:https://doi.org/10.1103/PhysRevE.62.5263

©2000 American Physical Society

Authors & Affiliations

Dimitris Stamou and Claus Duschl

  • Laboratoire de Chimie Physique des Polymères et Membranes, Swiss Federal Institute of Technology, CH-1015 Lausanne, Switzerland

Diethelm Johannsmann*

  • Max-Planck-Institute for Polymer Research, Ackermannweg 10, 55128 Mainz, Germany

  • *Corresponding author. Email address: johannsmann@mpip-mainz.mpg.de

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Vol. 62, Iss. 4 — October 2000

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