Adsorption and diffusion of water on graphene from first principles
Physical Review B 84(3)
Article 2011 English
Authors
JM
Jie Ma
AM
Angelos Michaelides
DA
Dario Alfè
Abstract
1 min read
Water monomer adsorption on graphene is examined with state-of-the-art electronic structure approaches. The adsorption energy determinations on this system from quantum Monte Carlo and the random-phase approximation yield small values of 100 meV. These benchmarks provide a deeper understanding of the reactivity of graphene that may underpin the development of improved more approximate methods enabling the accurate treatment of more complex processes at wet-carbon interfaces. As an example, we show how dispersion-corrected density functional theory, which we show gives a satisfactory description of this adsorption system, predicts that water undergoes ultra-fast diffusion on graphene at low temperatures.
Jan Gerit Brandenburg, Andrea Zen, Martin Fitzner, Benjamin Ramberger, Kresse Georg, Theodoros Tsatsoulis, Andreas Grüneis, Angelos Michaelides, Dario Alfè
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