Transport of ions in hydrophobic nanotubes
Abstract
The theory of electrokinetic ion transport in cylindrical channels of a fixed surface charge density is revisited. Attention is focused on impact of the hydrophobic slippage and mobility of adsorbed surface charges. We formulate generalised Onsager relations for a cylinder of an arbitrary radius and then derive exact expressions for the mean electro-osmotic mobility and conductivity. To employ these expressions we perform additional electrostatic calculations, with the special focus on the non-linear electrostatic effects. Our theory provides a simple explanation of a giant enhancement of the electrokinetic mobility and conductivity of hydrophobic nanotubes by highlighting the role of appropriate electrostatic and hydrodynamic length scales and their ratios. We also propose a novel interpretation of zeta potentials of cylindrical channels.
Keywords
Cite
@article{arxiv.2211.00927,
title = {Transport of ions in hydrophobic nanotubes},
author = {Olga I. Vinogradova and Elena F. Silkina and Evgeny S. Asmolov},
journal= {arXiv preprint arXiv:2211.00927},
year = {2022}
}
Comments
12 pages, 10 figures