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Direct observation of drops on slippery lubricant-infused surfaces

Soft Matter · 2015 · Vol. 11(38) · pp. 7617–7626
Frank SchellenbergerJing XieN. EncinasAlexandre HardyMarkus KlapperPeriklis PapadopoulosHans‐Jürgen ButtDoris Vollmer

Abstract

For a liquid droplet to slide down a solid planar surface, the surface usually has to be tilted above a critical angle of approximately 10°. By contrast, droplets of nearly any liquid "slip" on lubricant-infused textured surfaces - so termed slippery surfaces - when tilted by only a few degrees. The mechanism of how the lubricant alters the static and dynamic properties of the drop remains elusive because the drop-lubricant interface is hidden. Here, we image the shape of drops on lubricant-infused surfaces by laser scanning confocal microscopy. The contact angle of the drop-lubricant interface with the substrate exceeds 140°, although macroscopic contour images suggest angles as low as 60°. Confocal microscopy of moving drops reveals fundamentally different processes at the front and rear. Drops recede via discrete depinning events from surface protrusions at a defined receding contact angle, whereas the advancing contact angle is 180°. Drops slide easily, as the apparent contact angles with the substrate are high and the drop-lubricant interfacial tension is typically lower than the drop-air interfacial tension. Slippery surfaces resemble superhydrophobic surfaces with two main differences: drops on a slippery surface are surrounded by a wetting ridge of adjustable height and the air underneath the drop in the case of a superhydrophobic surface is replaced by lubricant in the case of a slippery surface.

Surface Modification and SuperhydrophobicityAdhesion, Friction, and Surface InteractionsFluid Dynamics and Heat TransferLubricantContact angleDrop (telecommunication)WettingMaterials scienceSurface tensionSlip (aerodynamics)Composite materialConfocal laser scanning microscopyOptics
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390
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References
Progess in superhydrophobic surface development
Soft Matter · 2007 · 1,595 citations
Super‐Hydrophobic Surfaces: From Natural to Artificial
Advanced Materials · 2002 · 4,339 citations
Slippery pre-suffused surfaces
Europhysics Letters (EPL) · 2011 · 513 citations
Droplet mobility on lubricant-impregnated surfaces
Soft Matter · 2012 · 970 citations
Wetting and spreading
Reviews of Modern Physics · 2009 · 2,736 citations
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