The effect of co-adsorbed oxygen on the adsorption and diffusion of potassium on Rh(110): A first-principles study
Journal Article
·
· Journal of Physical Chemistry C
- ORNL
- Universitat Hannover, Germany
- Princeton University
- University of Wisconsin, Madison
The adsorption and diffusion of potassium and oxygen on Rh(110), as well as the co-adsorption of K and O and its effect on K diffusion, has been studied using periodic density functional theory (DFT) calculations (PW91-GGA). On both the non-reconstructed (1x1) and the missing-row (MR) reconstructed surfaces, O prefers the short bridge site at low coverage, with a binding energy of ca. -5.2 eV at 1/4 ML. At theta_O>1/2 ML O atoms occupy alternating threefold sites along the ridge and forms a zigzag pattern. Interaction with the ridge sites is enhanced by the MR reconstruction. K prefers to be in the trough, with a binding energy of -2.3 eV on the (1x1) surface and -2.9 eV on the MR surface at 1/8 ML. Thus the adsorption of both O and K at low to medium coverage promotes the MR reconstruction. The co-adsorption of K and O enhances the binding energy of K to a maximum of -3.6 eV at the highest oxygen coverage studied, 1-3/8 ML. Oxygen adsorption is also stabilized by K, though to a smaller extent on a per-O atom basis. On both surfaces, K prefers to diffuse in the [110] direction with a barrier of ca. 0.05 eV. O diffusion also prefers the [110] direction on the MR surface but is not clearly anisotropic on the (1x1) surface. The barrier to O diffusion ranges from 0.6~0.8 eV depending on the coverage and reconstruction. In the presence of co-adsorbed O, the diffusion barrier of K tops out at ca. 0.12 eV, much lower than earlier estimates based on mean-field models. Possible reasons for this apparent contradiction are discussed.
- Research Organization:
- Oak Ridge National Laboratory (ORNL); Center for Nanophase Materials Sciences
- Sponsoring Organization:
- SC USDOE - Office of Science (SC)
- DOE Contract Number:
- AC05-00OR22725
- OSTI ID:
- 942233
- Journal Information:
- Journal of Physical Chemistry C, Journal Name: Journal of Physical Chemistry C Journal Issue: 20 Vol. 111
- Country of Publication:
- United States
- Language:
- English
Similar Records
Structure and Dynamics of CO2 on Rutile TiO2 (110)-1×1
Atomic and molecular adsorption on Fe(110)
Formation of the c(1X1) Cu Monolayer on CaO(100): A Theoretical Study
Journal Article
·
Tue Oct 30 00:00:00 EDT 2012
· Journal of Physical Chemistry. C
·
OSTI ID:1059191
Atomic and molecular adsorption on Fe(110)
Journal Article
·
Mon Sep 11 20:00:00 EDT 2017
· Surface Science
·
OSTI ID:1398766
Formation of the c(1X1) Cu Monolayer on CaO(100): A Theoretical Study
Journal Article
·
Wed Oct 15 00:00:00 EDT 2003
· Physical Review. B, Condensed Matter, 6815(15):
·
OSTI ID:15006237