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Anisotropic wetting on tunable micro-wrinkled surfaces

Soft Matter · 2007 · Vol. 3(9) · pp. 1163–1163
Jun Young ChungJeffrey P. YoungbloodChristopher M. Stafford

Abstract

We examine the wettability of rough surfaces through a measurement approach that harnesses a wrinkling instability to produce model substrate topographies. Specifically, we probe the wetting of liquids on anisotropic micro-wrinkled features that exhibit well-defined aspect ratios (amplitude wavelength of the wrinkles) that can be actively tuned. Our study provides new insight into the wetting behavior on rough surfaces and into the interpretation of related liquid contact-angle measurements. In particular, we find that droplet wetting anisotropy is governed primarily by the roughness aspect ratio. In addition, comparison of our measurements to theoretical models demonstrates that droplet distortions and observed contact angles on surfaces with a strongly anisotropic texture can be quantitatively attributed to the difference in the energetic barriers to wetting along and perpendicular to substrate features.

Surface Modification and SuperhydrophobicityAdhesion, Friction, and Surface InteractionsAdvanced Materials and MechanicsWettingAnisotropyMaterials scienceSurface finishContact angleWetting transitionSubstrate (aquarium)Texture (cosmology)Surface roughnessPerpendicular

Funding

  • National Institute of Standards and Technology
Citations
435
FWCI
11.35
field-weighted impact
References
63
Percentile
99%
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Citations per year
References
On water repellency
Soft Matter · 2005 · 750 citations
Design and Creation of Superwetting/Antiwetting Surfaces
Advanced Materials · 2006 · 2,011 citations
Roughness-induced non-wetting
Europhysics Letters (EPL) · 2000 · 842 citations
How Wenzel and Cassie Were Wrong
Langmuir · 2007 · 788 citations
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