Hydrogen interaction with the anatase TiO2(101) surface
Abstract
The interaction of atomic hydrogen with the majority (101) surface of anatase TiO2 is studied using density functional theory calculations both with a standard semi-local functional and with the inclusion of on-site Coulomb repulsion terms. We investigate the energetics of different adsorption configurations at surface and subsurface sites and different coverages, from low to one monolayer, as well as diffusion pathways among the different sites and recombinative H2 desorption barriers. While H2 desorption is the energetically most favorable process, the diffusion of H into the subsurface is found to be at least equally favorable kinetically. It is further shown that subsurface oxygen vacancies on reduced anatase are favorable
- This article is part of the themed collection: Computational Catalysis and Materials for Energy Production, Storage and Utilization