arXiv · 1412.6229
Quantum vacuum photon-modes and superhydrophobicity
Abstract
Nanostructures are commonly used for developing superhydrophobic surfaces. However, available wetting theoretical models ignore the effect of vacuum photon-modes alteration on van der Waals forces and thus on hydrophobicity. Using first-principle calculations, we show that superhydrophibicity of nanostructured surfaces is dramatically enhanced by vacuum photon-modes tuning. As a case study, wetting contact angles of a water droplet above a polyethylene nanostructured surface are obtained from the interaction potential energy calculated as function of the droplet-surface separation distance. This new approach could pave the way for the design of novel superhydrophobic coatings.
Explore related subjects
Keep this discovery
Louis Dellieu, Olivier Deparis, Jerome Muller, Michael Sarrazin. 2015-01-14. Quantum vacuum photon-modes and superhydrophobicity. https://doi.org/10.1103/physrevlett.114.024501
Cite the original work for its findings. Save a collection to share your selection of sources.