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Direct Observation of Gas Meniscus Formation on a Superhydrophobic Surface

Authors :
Eriksson, Mimmi
Tuominen, Mikko
Jarn, Mikael
Claesson, Per M.
Wallqvist, Viveca
Butt, Hans Juergen
Vollmer, Doris
Kappl, Michael
Schoelkopf, Joachim
Gane, Patrick A. C.
Teisala, Hannu
Swerin, Agne
Eriksson, Mimmi
Tuominen, Mikko
Jarn, Mikael
Claesson, Per M.
Wallqvist, Viveca
Butt, Hans Juergen
Vollmer, Doris
Kappl, Michael
Schoelkopf, Joachim
Gane, Patrick A. C.
Teisala, Hannu
Swerin, Agne
Publication Year :
2019

Abstract

The formation of a bridging gas meniscus via cavitation or nanobubbles is considered the most likely origin of the submicrometer long-range attractive forces measured between hydrophobic surfaces in aqueous solution. However, the dynamics of the formation and evolution of the gas meniscus is still under debate, in particular, in the presence of a thin air layer on a superhydrophobic surface. On superhydrophobic surfaces the range can even exceed 10 mu m. Here, we report microscopic images of the formation and growth of a gas meniscus during force measurements between a superhydrophobic surface and a hydrophobic microsphere immersed in water. This is achieved by combining laser scanning confocal microscopy and colloidal probe atomic force microscopy. The configuration allows determination of the volume and shape of the meniscus, together with direct calculation of the Young-Laplace capillary pressure. The long-range attractive interactions acting on separation are due to meniscus formation and volume growth as air is transported from the surface layer.<br />QC 20190326

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1235082240
Document Type :
Electronic Resource
Full Text :
https://doi.org/10.1021.acsnano.8b08922