Interplay between adsorption and hydrodynamics in nanochannels: towards tunable membranes
Soft Condensed Matter
2017-01-11 v2 Fluid Dynamics
Abstract
We study how adsorption of a near-critical binary mixture in a nanopore is modified by flow inside the pore. We identify three types of steady states upon variation of the pore P\'{e}clet number (), which can be reversibly accessed by the application of an external pressure. Interestingly, for small the pore acts as a weakly selective membrane which separates the mixture. For intermediate , the flow effectively shifts the adsorption in the pore thereby opening possibilities for enhanced and tunable solute transport through the pore. For large , the adsorption is progressively reduced inside the pore, accompanied by a long ranged dispersion of the mixture far from the pore.
Cite
@article{arxiv.1609.00540,
title = {Interplay between adsorption and hydrodynamics in nanochannels: towards tunable membranes},
author = {Sela Samin and René van Roij},
journal= {arXiv preprint arXiv:1609.00540},
year = {2017}
}
Comments
5 pages, 4 figures