Effect of fluorine patterns on electronic transport in fluorinated graphene
Materials Science
2020-03-06 v1
Abstract
Within the framework of stochastic reactive molecular dynamics simulations we develop a statistical method for generating fluorinated graphene structures with desirable fluorine distribution. Electronic transport properties of fluorinated graphene in a wide range of functionalization degree and system ordering are investigated. We have found a strong correlation between irregularities in fluorine distribution and electronic properties. In particular, proposed consideration allows us to reproduce both the experimentally observed electron-hole asymmetry in transport properties of fluorinated graphene and a recently revealed conductivity peak at 10 % fluoride content.
Keywords
Cite
@article{arxiv.1909.11331,
title = {Effect of fluorine patterns on electronic transport in fluorinated graphene},
author = {Ruslan D. Yamaletdinov and Vsevolod L. Katkov and Yaroslav A. Nikiforov and Alexander V. Okotrub and Vladimir A. Osipov},
journal= {arXiv preprint arXiv:1909.11331},
year = {2020}
}