Infrared reflection absorption spectroscopy together with mass spectrometry has been used to investigate the interaction of NO and CO on Pt {100}, initially prepared in the reconstructed 'hex' phase, under ambient pressures of these gases, in the temperature range 300-500 K. The results allow the local and total coverages of adsorbed CO and NO to be related to the rate of reaction to produce gas phase CO2, and provide insight into the species present on the surface during the so-called low temperature oscillatory reaction regime of this process. At temperatures below that at which NO dissociation occurs (approximately 390-400 K) adsorption is controlled by the non-reactive displacement of NO by CO and results in a CO-poisoned surface. Above...
Author Institution:Infrared spectra of NO adsorbed on an annealed polycrystalline Pt surface have be...
Calorimetric heats of adsorption and sticking probabilities are reported for NO and CO on both the r...
The adsorption and reaction of CO and NO on Ir(111) have been studied by near-ambient pressure X-ray...
Infrared reflection absorption spectroscopy together with mass spectrometry has been used to investi...
A new experimental method for obtaining real-time in situ infrared reflection-absorption spectra of ...
At a partial pressure of 10-7 mbar, the reaction between NO and CO on Pt{100} exhibits oscillatory b...
Coadsorbed NO and CO on a Pt(100) surface react upon heating to form extremely narrow TPR product pe...
In order to assess the possibility to follow surface reactions in a quantitative way by vibrational ...
198 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 1985.Reaction of NO, CO, and H(,2)...
Using different isotopologues of the reactant gases CO and O-2, infrared reflection absorption spect...
Using different isotopologues of the reactant gases CO and O2, infrared reflection absorption spectr...
Using different isotopologues of the reactant gases CO and O2, infrared reflection absorption spectr...
The NO+CO reaction on Pt{100} has been studied using in-situ vibrational spectroscopy (IRAS) under l...
The CO/NO reaction on Platinum supported catalysts exhibits oscillatory behaviour at temperatures be...
Under constant flow conditions the reaction of NO and CO to the products N2 and CO2 on a Pt(100) sur...
Author Institution:Infrared spectra of NO adsorbed on an annealed polycrystalline Pt surface have be...
Calorimetric heats of adsorption and sticking probabilities are reported for NO and CO on both the r...
The adsorption and reaction of CO and NO on Ir(111) have been studied by near-ambient pressure X-ray...
Infrared reflection absorption spectroscopy together with mass spectrometry has been used to investi...
A new experimental method for obtaining real-time in situ infrared reflection-absorption spectra of ...
At a partial pressure of 10-7 mbar, the reaction between NO and CO on Pt{100} exhibits oscillatory b...
Coadsorbed NO and CO on a Pt(100) surface react upon heating to form extremely narrow TPR product pe...
In order to assess the possibility to follow surface reactions in a quantitative way by vibrational ...
198 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 1985.Reaction of NO, CO, and H(,2)...
Using different isotopologues of the reactant gases CO and O-2, infrared reflection absorption spect...
Using different isotopologues of the reactant gases CO and O2, infrared reflection absorption spectr...
Using different isotopologues of the reactant gases CO and O2, infrared reflection absorption spectr...
The NO+CO reaction on Pt{100} has been studied using in-situ vibrational spectroscopy (IRAS) under l...
The CO/NO reaction on Platinum supported catalysts exhibits oscillatory behaviour at temperatures be...
Under constant flow conditions the reaction of NO and CO to the products N2 and CO2 on a Pt(100) sur...
Author Institution:Infrared spectra of NO adsorbed on an annealed polycrystalline Pt surface have be...
Calorimetric heats of adsorption and sticking probabilities are reported for NO and CO on both the r...
The adsorption and reaction of CO and NO on Ir(111) have been studied by near-ambient pressure X-ray...