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19962008
most citedSlippage of water past superhydrophobic carbon nanotube forests in microchannels

465 citations · 1.1k across the 10 of their papers we have counts for

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20 papers · 1 filter

cond-mat.soft200796 cited

Ion specificity and anomalous electrokinetic effects in hydrophobic nanochannels

David M. Huang, Cecile Cottin-Bizonne, Christophe Ybert +1

We demonstrate with computer simulations that anomalous electrokinetic effects, such as ion specificity and non-zero zeta potentials for uncharged surfaces, are generic features of…

cond-mat.soft200648 cited

Comment on ``Large Slip of Aqueous Liquid Flow over a Nanoengineered Superhydrophobic Surface'' by C-H Choi and C Kim

Lyderic Bocquet, Patrick Tabeling, Sebastien Manneville

In a recent Letter (Phys. Rev. Lett. vol 96, 066001 (2006), ref [1]), Choi and Kim reported slip lengths of a few tens of microns for water on nanoengineered superhydrophobic surfa…

cond-mat.soft2006465 cited

Slippage of water past superhydrophobic carbon nanotube forests in microchannels

P. Joseph, C. Cottin-Bizonne, J. -M. Benoit +4

We present in this letter an experimental characterization of liquid flow slippage over superhydrophobic surfaces made of carbon nanotube forests, incorporated in microchannels. We…

cond-mat.soft2006222 cited

Liquid friction on charged surfaces: from hydrodynamic slippage to electrokinetics

Laurent Joly, Christophe Ybert, Emmanuel Trizac +1

Hydrodynamic behavior at the vicinity of a confining wall is closely related to the friction properties of the liquid/solid interface. Here we consider, using Molecular Dynamics si…

cond-mat.soft2006247 cited

Giant amplification of interfacially driven transport by hydrodynamic slip: diffusio-osmosis and beyond

Armand Ajdari, Lyderic Bocquet

We demonstrate that "moderate" departures from the no-slip hydrodynamic boundary condition (hydrodynamic slip lengths in the nanometer range) can result in a very large enhancement…

cond-mat.soft2005

Contact angle measurements on superhydrophobic Carbon Nanotube Forests : effect of fluid pressure

Catherine Journet, Sebastien Moulinet, Christophe Ybert +2

In this paper the effect of pressure on the contact angle of a water drop on superhydrophobic Carbon Nanotube (CNT) forests is studied. Superhydrophobic CNT forests are obtained fr…