Publication | Closed Access
In Situ Fully Light‐Driven Switching of Superhydrophobic Adhesion
94
Citations
27
References
2011
Year
Materials ScienceHydrophobic Azo‐polymerEngineeringMicrofabricationSurface ScienceResponsive PolymersLight‐driven SwitchingWettingLab-on-a-chipSuper-hydrophobic SurfaceSuperhydrophobic AdhesionSurface NanotechnologyBiomedical EngineeringSilicon SubstrateMicrofluidicsHybrid Materials
Abstract An in situ fully light‐driven switching of superhydrophobic adhesion is demonstrated based on simply spin‐coating a hydrophobic azo‐polymer on an optimized micro‐nanopost arrayed silicon substrate. Furthermore, the detailed designing principles are discussed, which might shed light on efficient exploitation of superhydrophobic liquid/solid interfaces for smart microfluidic control.
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