Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
10672485 | Ultramicroscopy | 2015 | 15 Pages |
Abstract
Using laboratory X-ray photoelectron emission microscopy (XPEEM), we investigated the doping efficiency and thermal stability of iodine on as-grown graphene on Pt. After iodine adsorption of graphene in saturated vapor of I2, monolayer and bilayer graphene exhibited work function of 4.93 eV and 4.87 eV, respectively. Annealing of the doped monolayer graphene at 100 °C led to desorption of hydrocarbons, which increased the work function of monolayer graphene by ~0.2 eV. The composition of the polyiodide complexes evolved upon a step-by-step annealing at temperatures from 100 °C to 300 °C while the work-function non-monotonically changed with decreasing iodine content. The iodine dopant was stable at relatively high temperature as a significant amount of iodine remained up to the annealing temperature of 350 °C.
Related Topics
Physical Sciences and Engineering
Materials Science
Nanotechnology
Authors
HoKwon Kim, Olivier Renault, Anastasia Tyurnina, Jean-François Guillet, Jean-Pierre Simonato, Denis Rouchon, Denis Mariolle, Nicolas Chevalier, Jean Dijon,