English

Density Functional Based Simulations of Proton Permeation of Graphene and Hexagonal Boron Nitride

Mesoscale and Nanoscale Physics 2017-02-14 v1

Abstract

Using density functional theory, we study proton permeation through graphene and hexagonal boron nitride. We consider several factors influencing the barriers for permeation, including structural optimization, the role of the solvent, surface curvature and proton transport through hydrogenated samples. Furthermore, we discuss the ground state charge transfer from the membrane to the proton and the strong tendency for bond formation. If the process is assumed to be slow we find that none of these effects lead to a satisfactory answer to the observed discrepancies between theory and experiment.

Keywords

Cite

@article{arxiv.1702.03813,
  title  = {Density Functional Based Simulations of Proton Permeation of Graphene and Hexagonal Boron Nitride},
  author = {J. M. H. Kroes and A. Fasolino and M. I. Katsnelson},
  journal= {arXiv preprint arXiv:1702.03813},
  year   = {2017}
}

Comments

Physical Chemistry Chemical Physics, 2017