Investigating the Interface of Superhydrophobic Surfaces in Contact with Water
- 23 July 2005
- journal article
- research article
- Published by American Chemical Society (ACS) in Langmuir
- Vol. 21 (17) , 7805-7811
- https://doi.org/10.1021/la050750s
Abstract
Neutron reflectivity (NR) is used to probe the solid, liquid, vapor interface of a porous superhydrophobic (SH) surface submerged in water. A low-temperature, low-pressure technique was used to prepare a rough, highly porous organosilica aerogel-like film. UV/ozone treatments were used to control the surface coverage of hydrophobic organic ligands on the silica framework, allowing the contact angle with water to be continuously varied over the range of 160° (superhydrophobic) to <10° (hydrophilic). NR shows that the superhydrophobic nature of the surface prevents infiltration of water into the porous film. Atomic force microscopy and density functional theory simulations are used in combination to interpret the NR results and help establish the location, width, and nature of the SH film−water interface.Keywords
This publication has 48 references indexed in Scilit:
- Super-hydrophobic tin oxide nanoflowersChemical Communications, 2004
- Self assembly of epicuticular waxes on living plant surfaces imaged by atomic force microscopy (AFM)Journal of Experimental Botany, 2004
- Multiple Equilibrium Droplet Shapes and Design Criterion for Rough Hydrophobic SurfacesLangmuir, 2003
- Roughness-induced non-wettingEurophysics Letters, 2000
- Pearl dropsEurophysics Letters, 1999
- Characterization and Distribution of Water-repellent, Self-cleaning Plant SurfacesAnnals of Botany, 1997
- Purity of the sacred lotus, or escape from contamination in biological surfacesPlanta, 1997
- Contact anglesDiscussions of the Faraday Society, 1948
- Wettability of porous surfacesTransactions of the Faraday Society, 1944
- RESISTANCE OF SOLID SURFACES TO WETTING BY WATERIndustrial & Engineering Chemistry, 1936