Please use this identifier to cite or link to this item: https://libjncir.jncasr.ac.in/xmlui/handle/10572/501
Title: Effective coordination as a predictor of adsorption energies: A model study of NO on Rh(100) and Rh/MgO(100) surfaces
Authors: Pushpa, Raghani
Ghosh, Prasenjit
Narasimhan, Shobhana
de Gironcoli, Stefano
Keywords: adsorption
catalysts
Fermi level
magnesium compounds
monolayers
nitrogen
nitrogen compounds
oxygen
reaction rate constants
reduction (chemical)
rhodium
surface chemistry
surface roughness
Rh(001) Surface
Metal-Surfaces
Rh
Ferromagnetism
Chemisorption
Relaxation
Overlayers
Reactivity
Palladium
Magnetism
Issue Date: Apr-2009
Publisher: American Physical Society
Citation: Physical Review B 79(16), 165406-(1-9) (2009)
Abstract: We have studied the adsorption of NO, and the coadsorption of N and O, on four physical and hypothetical systems: unstrained and strained Rh(100) surfaces and monolayers of Rh atoms on strained and unstrained MgO(100) surfaces. We find that as we go from Rh(100) to Rh/Mg0(100), via the other two hypothetical systems, the effective coordination progressively decreases, the d band narrows and its center shifts closer to the Fermi level, and the strength of adsorption and coadsorption increases. Both the strain and the presence of the oxide substrate contribute significantly to this. However, charge transfer is found to play a negligible role due to a canceling out between donation and back-donation processes. Our results suggest that lowering the effective coordination of Rh catalysts by strain, roughening, or the use of inert substrates might lower activation energies for the dissociation of NO.
URI: https://libjncir.jncasr.ac.in/xmlui/10572/501
Other Identifiers: 1098-0121
Appears in Collections:Research Articles (Shobhana Narasimhan)

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