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Bouncing or sticky droplets: Impalement transitions on superhydrophobic micropatterned surfaces

Europhysics Letters (EPL) · 2006 · Vol. 74(2) · pp. 299–305
Denis BartoloFarid BouamrireneEmilie VerneuilAxel BuguinPascal SilberzanSébastien Moulinet

Abstract

When a liquid drops impinges a hydrophobic rough surface it can either bounce off the surface (fakir droplets) or be impaled and strongly stuck on it (Wenzel droplets). The analysis of drop impact and quasi static ''loading'' experiments on model microfabricated surfaces allows to clearly identify the forces hindering the impalement transitions. A simple semi-quantitative model is proposed to account for the observed relation between the surface topography and the robustness of fakir non-wetting states. Motivated by potential applications in microfluidics and in the fabrication of self cleaning surfaces, we finally propose some guidelines to design robust superhydrophobic surfaces.

Surface Modification and SuperhydrophobicityFluid Dynamics and Heat TransferAdhesion, Friction, and Surface InteractionsMicrofluidicsWettingDrop impactDrop (telecommunication)FabricationNanotechnologyMechanicsSolid surfaceMaterials scienceRobustness (evolution)
Citations
654
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13.61
field-weighted impact
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20
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99%
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References
Bouncing water drops
Europhysics Letters (EPL) · 2000 · 491 citations
Self-cleaning surfaces — virtual realities
Nature Materials · 2003 · 2,293 citations
Bouncing transitions on microtextured materials
Europhysics Letters (EPL) · 2006 · 415 citations
Superhydrophobic Carbon Nanotube Forests
Nano Letters · 2003 · 1,530 citations
Superhydrophobic states
Nature Materials · 2003 · 3,229 citations
Soft Lithography
Angewandte Chemie International Edition · 1998 · 4,197 citations
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