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arxiv: 1507.03451 · v3 · pith:MHPAF7QYnew · submitted 2015-07-13 · ❄️ cond-mat.soft · physics.flu-dyn

Slip-Mediated Dewetting of Polymer Microdroplets

classification ❄️ cond-mat.soft physics.flu-dyn
keywords contactlineslipboundarysolidconditionliquidmicrodroplets
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Classical hydrodynamic models predict that infinite work is required to move a three-phase contact line, defined here as the line where a liquid/vapor interface intersects a solid surface. Assuming a slip boundary condition, in which the liquid slides against the solid, such an unphysical prediction is avoided. In this article, we present the results of experiments in which a contact line moves and where slip is a dominating and controllable factor. Spherical cap shaped polystyrene microdroplets, with non-equilibrium contact angle, are placed on solid self-assembled monolayer coatings from which they dewet. The relaxation is monitored using \textit{in situ} atomic force microscopy. We find that slip has a strong influence on the droplet evolutions, both on the transient non-spherical shapes and contact line dynamics. The observations are in agreement with scaling analysis and boundary element numerical integration of the governing Stokes equations, including a Navier slip boundary condition.

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