| Literature DB >> 26286407 |
Sanjaya D Senanayake, Jerzy T Sadowski, Jaime Evans1, Shankhamala Kundu, Stefano Agnoli, Fan Yang, Dario Stacchiola, Jan I Flege2, Jan Hrbek, Jose A Rodriguez.
Abstract
Our results indicate that small amounts of an oxide deposited on a stable metal surface can trigger a massive surface reconstruction under reaction conditions. In low-energy electron microscopy (LEEM) experiments, no reconstruction of Cu(111) is observed after chemisorbing oxygen or after reducing O/Cu(111) in a CO atmosphere. On the other hand, LEEM images taken in situ during the reduction of CeO2/CuO1-x/Cu(111) show a complex nonuniform transformation of the surface morphology. Ceria particles act as nucleation sites for the growth of copper microterraces once CuO1-x is reduced. Can this reconstructed surface be used to enhance the catalytic activity of inverse oxide/metal catalysts? Indeed, CeOx on reconstructed Cu(111) is an extremely active catalyst for the water-gas shift process (CO + H2O → H2 + CO2), with the Cu microterraces providing very efficient sites for the dissociation of water and subsequent reaction with CO.Entities:
Keywords: catalytic activity; copper surfaces; hydrogen production; surface reconstruction; water−gas shift reaction.
Year: 2012 PMID: 26286407 DOI: 10.1021/jz300159p
Source DB: PubMed Journal: J Phys Chem Lett ISSN: 1948-7185 Impact factor: 6.475