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Osmotic flow through fully permeable nanochannels

  • C. Lee
  • , C. Cottin-Bizonne
  • , A. L. Biance
  • , P. Joseph
  • , L. Bocquet
  • , C. Ybert
  • IGFL, Université de Lyon, Université Lyon 1
  • Korea Aerospace University
  • LAAS-CNRS
  • Université de Toulouse

Résultats de recherche: Contribution à un journalArticleRevue par des pairs

Résumé

Osmosis across membranes is intrinsically associated with the concept of semipermeability. Here, however, we demonstrate that osmotic flow can be generated by solute gradients across nonselective, fully permeable nanochannels. Using a fluorescence imaging technique, we are able to measure the water flow rate inside single nanochannels to an unprecedented sensitivity of femtoliters per minute flow rates. Our results indicate the onset of a convective liquid motion under salinity gradients, from the higher to lower electrolyte concentration, which is attributed to diffusio-osmotic transport. To our knowledge, this is the first experimental evidence and quantitative investigation of this subtle interfacially driven transport, which need to be accounted for in nanoscale dynamics. Finally, diffusio-osmotic transport under a neutral polymer gradient is also demonstrated. The experiments highlight the entropic depletion of polymers that occurs at the nanochannel surface, resulting in convective flow in the opposite direction to that seen for electrolytes.

langue originaleAnglais
Numéro d'article244501
journalPhysical Review Letters
Volume112
Numéro de publication24
Les DOIs
étatPublié - 19 juin 2014
Modification externeOui

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