Initial oxidation of the Rh(110) surface: Ordered adsorption and surface oxide structures
The Journal of Chemical Physics 125(9)
Article 2006 English
Authors
CD
Carlo Dri
CA
Cristina Africh
FE
Friedrich Esch
Abstract
1 min read
The initial oxidation of the Rh(110) surface was studied by scanning tunneling microscopy, core level spectroscopy, and density functional theory. The experiments were carried out exposing the Rh(110) surface to molecular or atomic oxygen at temperatures in the 500-700 K range. In molecular oxygen ambient, the oxidation terminates at oxygen coverage close to a monolayer with the formation of alternating islands of the (10x2) one-dimensional surface oxide and (2x1)p2mg adsorption phases. The use of atomic oxygen facilitates further oxidation until a structure with a c(2x4) periodicity develops. The experimental and theoretical results reveal that the c(2x4) structure is a "surface oxide" very similar to the hexagonal O-Rh-O trilayer structures formed on the Rh(111) and Rh(100) substrates. Some of the experimentally found adsorption phases appear unstable in the phase diagram predicted by thermodynamics, which might reflect kinetic hindrance. The structural details, core level spectra, and stability of the surface oxides formed on the three basal planes are compared with those of the bulk RhO2 and Rh2O3.
Johan Gustafson, Rasmus Westerström, Andrea Resta, Anders Mikkelsen, J. N. Andersen, Olivier Balmès, X. Torrelles, Michael Schmid, П. Варга, Bjørk Hammer, Kresse Georg, Christopher J. Baddeley, Edvin Lundgren
Johan Gustafson, Anders Mikkelsen, Mikael Borg, Edvin Lundgren, L. Köhler, Kresse Georg, Michael Schmid, П. Варга, Junji Yuhara, X. Torrelles, C. Quirós, J. N. Andersen
Rasmus Westerström, C. J. Weststrate, Johan Gustafson, Anders Mikkelsen, Joachim Schnadt, J. N. Andersen, Edvin Lundgren, Nicola Seriani, Florian Mittendorfer, Kresse Georg, Andreas Stierle
Discussion(0)
No comments yet. Be the first to comment.