The <i>Salvinia</i> Paradox: Superhydrophobic Surfaces with Hydrophilic Pins for Air Retention Under WaterWilhelm Barthlott, Holger F. Bohn, M. Barczewski et al.|Advanced Materials|2010Cited by 547
Air Retention under Water by the Floating Fern <i>Salvinia</i>: The Crucial Role of a Trapped Air Layer as a Pneumatic SpringDaniel Gandyra, Thomas Schimmel, Stefan Walheim et al.|Small|2020Cited by 48
Elasticity of the hair cover in air-retaining Salvinia surfacesPetra Ditsche, Wilhelm Barthlott, Elena V. Gorb et al.|Applied Physics A|2015Cited by 34
Air–water interface of submerged superhydrophobic surfaces imaged by atomic force microscopyMarkus Moosmann, Matthias Mail, Thomas Schimmel et al.|Beilstein Journal of Nanotechnology|2017Cited by 23
The capillary adhesion technique: a versatile method for determining the liquid adhesion force and sample stiffnessDaniel Gandyra, Thomas Schimmel, Stefan Walheim et al.|Beilstein Journal of Nanotechnology|2015Cited by 19