Imbibition triggered by capillary condensation in nanopores
Abstract
We study the spatio-temporal dynamics of water uptake by capillary condensation from unsaturated vapor in mesoporous silicon layers (pore radius nm), taking advantage of the local changes in optical reflectance as a function of water saturation. Our experiments elucidate two qualitatively different regimes as a function of the imposed external vapor pressure: for low saturations, equilibration occurs via a diffusion-like process; for high saturations, an imbibition-like wetting front results in fast equilibration towards a fully saturated sample. We show that the imbibition dynamics can be described by a modified Lucas-Washburn equation that takes into account the liquid stresses implied by Kelvin equation.
Cite
@article{arxiv.1612.06684,
title = {Imbibition triggered by capillary condensation in nanopores},
author = {Olivier Vincent and Bastien Marguet and Abraham Stroock},
journal= {arXiv preprint arXiv:1612.06684},
year = {2016}
}
Comments
11 pages, 5 figures, under review