Publication | Closed Access
Orthogonal Control of Stability and Tunable Dry Adhesion by Tailoring the Shape of Tapered Nanopillar Arrays
40
Citations
36
References
2015
Year
EngineeringNanostructured SurfaceMechanical EngineeringAluminum Oxide TemplatesOrthogonal ControlStepwise Nano-pillarsNanomechanicsNanolithography MethodMaterials ScienceNanotechnologyTunable Dry AdhesionMicrofabricationNanomaterialsAdhesive MaterialApplied PhysicsTapered Nanopillar StructuresTapered Nanopillar ArraysMechanics Of MaterialsStructural Adhesive
Tapered nanopillar structures of different cross-sectional geometries including cone-, pencil-like, and stepwise are prepared from anodized aluminum oxide templates. The shape effect on the adhesion strength is investigated in experiments and simulation. Cone-shaped nanopillars are highly bendable under load and can recover after unloading, thus, warranting high adhesion strength, 34 N cm(-2) . The pencil-like and stepwise nano-pillars are, however, easily fractured and are not recoverable under the same conditions.
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