Using a combination of two surface-sensitive spectroscopy techniques, the chemical state of the Ag(111) surface and the nature of the adsorbed species in the presence of ethylene and oxygen gases are identified. In the 10 mbar pressure range and 25–200 °C studied here, Ag(111) remains largely metallic even in O2-rich conditions. The only adsorbed molecular species with a low but discernible coverage is surface carbonate, which forms due to further oxidation of produced CO2, in a similar manner to its formation in ambient air on Ag surfaces. Its formation is also pressure-dependent, for instance, it is not observed when the total pressure is in the 1 mbar pressure range. Production of carbonate, along with carbon dioxide and water vapor as t...
The Ag/Pt(110) model catalyst was prepared by evaporating silver on Pt(110). Adsorption and reaction...
We have investigated the interaction of oxygen with Ag(111) by using a supersonic molecular beam in ...
The coadsorption of NO and O2 on Ag(110) surface has been studied by X-ray photoelectron spectroscop...
To identify surface phases that could play a role for the epoxidation of ethylene on Ag catalysts we...
We report on a combined density functional theory and experimental study of the O1s binding energies...
X-ray photoelectron spectroscopy, ultraviolet photoelectron spectroscopy (UPS), and ion scattering s...
Oxidation of Cl-modified Ag(111) under UHV conditions was investigated using AES, ISS and HREELS. Th...
A long-standing challenge in the study of heterogeneously catalyzed reactions on silver surfaces has...
The electronic structure of the surface carbonate species adsorbed on Ag{110} has been studied with ...
The formation of a AgNO3 layer revealed by O 1s and N 1s spectra was observed after exposure of the ...
The formation of a AgNO3 layer revealed by O 1s and N 1s spectra was observed after exposure of the ...
We report here on a combined experimental and computational investigation of oxygen interaction with...
The oxidized Ag(111) surface has been studied by a combination of experimental and theoretical metho...
The molecular adsorption of oxygen on a Ag(110) surface was investigated by scanning tunneling micro...
The oxidation of CO with molecularly adsorbed oxygen has been investigated on the Ag(110) surface by...
The Ag/Pt(110) model catalyst was prepared by evaporating silver on Pt(110). Adsorption and reaction...
We have investigated the interaction of oxygen with Ag(111) by using a supersonic molecular beam in ...
The coadsorption of NO and O2 on Ag(110) surface has been studied by X-ray photoelectron spectroscop...
To identify surface phases that could play a role for the epoxidation of ethylene on Ag catalysts we...
We report on a combined density functional theory and experimental study of the O1s binding energies...
X-ray photoelectron spectroscopy, ultraviolet photoelectron spectroscopy (UPS), and ion scattering s...
Oxidation of Cl-modified Ag(111) under UHV conditions was investigated using AES, ISS and HREELS. Th...
A long-standing challenge in the study of heterogeneously catalyzed reactions on silver surfaces has...
The electronic structure of the surface carbonate species adsorbed on Ag{110} has been studied with ...
The formation of a AgNO3 layer revealed by O 1s and N 1s spectra was observed after exposure of the ...
The formation of a AgNO3 layer revealed by O 1s and N 1s spectra was observed after exposure of the ...
We report here on a combined experimental and computational investigation of oxygen interaction with...
The oxidized Ag(111) surface has been studied by a combination of experimental and theoretical metho...
The molecular adsorption of oxygen on a Ag(110) surface was investigated by scanning tunneling micro...
The oxidation of CO with molecularly adsorbed oxygen has been investigated on the Ag(110) surface by...
The Ag/Pt(110) model catalyst was prepared by evaporating silver on Pt(110). Adsorption and reaction...
We have investigated the interaction of oxygen with Ag(111) by using a supersonic molecular beam in ...
The coadsorption of NO and O2 on Ag(110) surface has been studied by X-ray photoelectron spectroscop...