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Reverse Water-Gas Shift or Sabatier Methanation on Ni(110)? Stable Surface Species at Near-Ambient Pressure

Roiaz, Matteo
•
Monachino, Enrico
•
DRI, CARLO
altro
VESSELLI, ERIK
2016
  • journal article

Periodico
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY
Abstract
The interaction of CO, CO2, CO + H2, CO2 + H2, and CO + CO2 + H2 with the nickel (110) single crystal termination has been investigated at 10(-1) mbar in situ as a function of the surface temperature in the 300-525 K range by means of infrared-visible sum frequency generation (IR-vis SFG) vibrational spectroscopy and by near-ambient pressure X-ray photoelectron spectroscopy (NAP-XPS). Several stable surface species have been observed and identified. Besides atomic carbon and precursors for graphenic C phases, five nonequivalent CO species have been distinguished, evidencing the role of coadsorption effects with H and C atoms, of H-induced activation of CO, and of surface reconstruction. At low temperature, carbonate species produced by the interaction of CO2 with atomic oxygen, which stems from the dissociation of CO2 into CO + O, are found on the surface. A metastable activated CO2(-) species is also detected, being at the same time a precursor state toward dissociation into CO and O in the reverse water-gas shift mechanism and a reactive species that undergoes direct conversion in the Sabatier methanation process. Finally, the stability of ethylidyne is deduced on the basis of our spectroscopic observations.
DOI
10.1021/jacs.5b13366
WOS
WOS:000373518800034
Archivio
http://hdl.handle.net/11368/2870777
info:eu-repo/semantics/altIdentifier/scopus/2-s2.0-84964389765
http://pubs.acs.org/doi/abs/10.1021/jacs.5b13366
Diritti
closed access
license:digital rights management non definito
license:digital rights management non definito
FVG url
https://arts.units.it/request-item?handle=11368/2870777
Soggetti
  • surface science

  • physic

  • methanation

  • Sabatier

  • nickel

Scopus© citazioni
87
Data di acquisizione
Jun 7, 2022
Vedi dettagli
Web of Science© citazioni
103
Data di acquisizione
Feb 8, 2024
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