In this study we report on the adsorbate structures on an Ir(1 1 1) surface during the phase transition from the inactive to the active state during CO oxidation. The CO oxidation over Pt(1 1 1) is used as a reference case. Where Pt(1 1 1) either is inactive and CO covered or active and O covered, Ir(1 1 1) exhibits a transition state with co-existing chemisorbed O and CO. The observed structural differences are explained in terms of DFT-calculated adsorption energies. For Pt(1 1 1) the repulsive CO–O interaction makes co-existing chemisorbed CO and O unfavourable, while for Ir(1 1 1) the stronger O and CO adsorption allows for overcoming the repulsive interaction. At the onset of CO oxidation over Ir(1 1 1), a CO structure containing defec...
The study of CO oxidation on Pt(1 1 0) surface is revisited using ambient pressure x-ray photoemissi...
The oxidation of adsorbed CO is a key reaction in electrocatalysis. It has been studied extensively ...
The study of CO oxidation on Pt(110) surface is revisited using ambient pressure x-ray photoemission...
The co-adsorption of CO and O on the unreconstructed (1 x 1) phase of Ir {100} was examined by low e...
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...
Using different isotopologues of the reactant gases CO and O-2, infrared reflection absorption spect...
A large signal of gas-phase CO overlapping with those of adsorbates is often present when investigat...
LEED/Auger studies with Ir(110) revealed that the clean surface is reconstructed to a 1X2-structure,...
Clean and stable surface modifications of an iridium (100) single crystal, i.e., the (1 × 1) phase, ...
Optical IR-visible sum-frequency generation (SFG) surface vibrational spectroscopy was applied for i...
Formations of an ultrathin oxide layer on noble metal catalysts affect the characteristics of fundam...
The adsorption of O and CO on Iridium (100) surface with different coverages (Θ = 1.0, 0.5, 0.25 mo...
The CO coverage of a Pt{110} surface in both the high and low reaction rate branches of the bistable...
The CO coverage of a Pt{110} surface in both the high and low reaction rate branches of the bistable...
The study of CO oxidation on Pt(1 1 0) surface is revisited using ambient pressure x-ray photoemissi...
The oxidation of adsorbed CO is a key reaction in electrocatalysis. It has been studied extensively ...
The study of CO oxidation on Pt(110) surface is revisited using ambient pressure x-ray photoemission...
The co-adsorption of CO and O on the unreconstructed (1 x 1) phase of Ir {100} was examined by low e...
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...
Using different isotopologues of the reactant gases CO and O-2, infrared reflection absorption spect...
A large signal of gas-phase CO overlapping with those of adsorbates is often present when investigat...
LEED/Auger studies with Ir(110) revealed that the clean surface is reconstructed to a 1X2-structure,...
Clean and stable surface modifications of an iridium (100) single crystal, i.e., the (1 × 1) phase, ...
Optical IR-visible sum-frequency generation (SFG) surface vibrational spectroscopy was applied for i...
Formations of an ultrathin oxide layer on noble metal catalysts affect the characteristics of fundam...
The adsorption of O and CO on Iridium (100) surface with different coverages (Θ = 1.0, 0.5, 0.25 mo...
The CO coverage of a Pt{110} surface in both the high and low reaction rate branches of the bistable...
The CO coverage of a Pt{110} surface in both the high and low reaction rate branches of the bistable...
The study of CO oxidation on Pt(1 1 0) surface is revisited using ambient pressure x-ray photoemissi...
The oxidation of adsorbed CO is a key reaction in electrocatalysis. It has been studied extensively ...
The study of CO oxidation on Pt(110) surface is revisited using ambient pressure x-ray photoemission...