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Transition between Superhydrophobic States on Rough Surfaces

Langmuir · 2004 · Vol. 20(17) · pp. 7097–7102
Neelesh A. Patankar

Abstract

Surface roughness is known to amplify hydrophobicity. It is observed that, in general, two drop shapes are possible on a given rough surface. These two cases correspond to the Wenzel (liquid wets the grooves of the rough surface) and Cassie (the drop sits on top of the peaks of the rough surface) formulas. Depending on the geometric parameters of the substrate, one of these two cases has lower energy. It is not guaranteed, though, that a drop will always exist in the lower energy state; rather, the state in which a drop will settle depends typically on how the drop is formed. In this paper, we investigate the transition of a drop from one state to another. In particular, we are interested in the transition of a "Cassie drop" to a "Wenzel drop", since it has implications on the design of superhydrophobic rough surfaces. We propose a methodology, based on energy balance, to determine whether a transition from the Cassie to Wenzel case is possible.

Surface Modification and SuperhydrophobicityFluid Dynamics and Heat TransferAdhesion, Friction, and Surface InteractionsDrop (telecommunication)Rough surfaceSurface finishSurface roughnessSurface energyLiquid dropMechanicsContact angleMaterials scienceNanotechnology
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References
Super-Water-Repellent Fractal Surfaces
Langmuir · 1996 · 1,677 citations
Surface Roughness and Contact Angle.
The Journal of Physical Chemistry · 1949 · 2,258 citations
Superhydrophobic states
Nature Materials · 2003 · 3,229 citations
Pearl drops
Europhysics Letters (EPL) · 1999 · 942 citations
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