| Literature DB >> 26278461 |
Rentao Mu1, David C Cantu1, Xiao Lin1, Vassiliki-Alexandra Glezakou1, Zhitao Wang1, Igor Lyubinetsky1, Roger Rousseau1, Zdenek Dohnálek1.
Abstract
RuO2 has proven to be indispensable as a co-catalyst in numerous systems designed for photocatalytic water splitting. In this study, we have carried out a detailed mechanistic study of water behavior on the most stable RuO2 face, RuO2(110), by employing variable-temperature scanning tunneling microscopy and density functional theory calculations. We show that water monomers adsorb molecularly on Ru sites, become mobile above 238 K, diffuse along the Ru rows, and form water dimers. The onset for dimer diffusion is observed at ∼277 K, indicating a significantly higher diffusion barrier than that for monomers. More importantly, we find that water dimers deprotonate readily to form Ru-bound H3O2 and bridging OH species. The observed behavior is compared and contrasted with that observed for water on isostructural rutile TiO2(110).Entities:
Keywords: adsorption; density functional theory; diffusion; scanning tunneling microscopy; water splitting
Year: 2014 PMID: 26278461 DOI: 10.1021/jz501810g
Source DB: PubMed Journal: J Phys Chem Lett ISSN: 1948-7185 Impact factor: 6.475