English

Quantifying density fluctuations in water at a hydrophobic surface: evidence for critical drying

Statistical Mechanics 2015-07-08 v2

Abstract

Employing smart Monte Carlo sampling techniques within the grand canonical ensemble, we investigate the properties of water at a model hydrophobic substrate. By reducing the strength of substrate-water attraction we find that fluctuations in the local number density, quantified by a rigorous definition of the local compressibility χ(z)\chi(z), increase rapidly for distances zz within 11 or 22 molecular diameters from the substrate as the degree of hydrophobicity, measured by the macroscopic contact angle θ\theta, increases. Our simulations provide evidence for a continuous (critical) drying transition as the substrate-water interaction becomes very weak: cos(θ)1\cos(\theta)\to -1. We speculate that the existence of such a transition might account for earlier simulation observations of strongly enhanced density fluctuations.

Keywords

Cite

@article{arxiv.1504.03818,
  title  = {Quantifying density fluctuations in water at a hydrophobic surface: evidence for critical drying},
  author = {Robert Evans and Nigel B. Wilding},
  journal= {arXiv preprint arXiv:1504.03818},
  year   = {2015}
}