Using a variational field theory, we show that an electrolyte confined to a neutral cylindrical nanopore traversing a low dielectric membrane exhibits a first-order ionic liquid-vapor pseudo-phase-transition from an ionic-penetration "liquid" phase to an ionic-exclusion "vapor" phase, controlled by nanopore-modified ionic correlations and dielectric repulsion. For weakly charged nanopores, this pseudotransition survives and may shed light on the mechanism behind the rapid switching of nanopore conductivity observed in experiments.
@article{arxiv.1004.1816,
title = {Ionic Capillary Evaporation in Weakly Charged Nanopores},
author = {Sahin Buyukdagli and Manoel Manghi and John Palmeri},
journal= {arXiv preprint arXiv:1004.1816},
year = {2015}
}