English

Probing the electron-phonon coupling in ozone-doped graphene by Raman spectroscopy

Mesoscale and Nanoscale Physics 2015-05-19 v1

Abstract

We have investigated the effects of ozone treatment on graphene by Raman scattering. Sequential ozone short-exposure cycles resulted in increasing the pp doping levels as inferred from the blue shift of the 2DD and GG peak frequencies, without introducing significant disorder. The two-phonon 2DD and 2DD' Raman peak intensities show a significant decrease, while, on the contrary, the one-phonon G Raman peak intensity remains constant for the whole exposure process. The former reflects the dynamics of the photoexcited electrons (holes) and, specifically, the increase of the electron-electron scattering rate with doping. From the ratio of 2DD to 2DD intensities, which remains constant with doping, we could extract the ratio of electron-phonon coupling parameters. This ratio is found independent on the number of layers up to ten layers. Moreover, the rate of decrease of 2DD and 2DD' intensities with doping was found to slowdown inversely proportional to the number of graphene layers, revealing the increase of the electron-electron collision probability.

Keywords

Cite

@article{arxiv.1005.2293,
  title  = {Probing the electron-phonon coupling in ozone-doped graphene by Raman spectroscopy},
  author = {F. Alzina and H. Tao and J. Moser and Y. Garcia and A. Bachtold and C. M. Sotomayor-Torres},
  journal= {arXiv preprint arXiv:1005.2293},
  year   = {2015}
}