We show by vibrational and photoemission spectroscopy and by ab initio calculations that in ultrahigh vacuum oxygen adsorption at stepped Ag surfaces causes the formation of surface oxide phases with different stoichiometry, depending on the morphology of the steps involved in the nucleation process. On Ag(511), characterized by close-packed steps and (100) terraces, subsurface O occupies tetrahedral interstitials and an Ag(2)O-like phase forms; on Ag(210), showing open step edges, subsurface oxygen ends up off center in octahedral sites and an AgO-like structure nucleates
Many reactions like the ethylene epoxidation which work readily in industrial reactors can not be re...
The initial stages of oxide nucleation and surface oxide formation are hot topics at the moment due ...
To identify surface phases that could play a role for the epoxidation of ethylene on Ag catalysts we...
We report here on a combined experimental and computational investigation of oxygen interaction with...
With density functional theory, we have examined oxygen adsorption at surface and subsurface sites o...
A long-standing challenge in the study of heterogeneously catalyzed reactions on silver surfaces has...
The mechanism of oxygen incorporation in Ag is still poorly known. As recently demonstrated [Phys. R...
The adsorption of atomic oxygen and its inclusion into subsurface sites on Ag(2 1 0) and Ag(4 1 0) s...
The oxidized Ag(111) surface has been studied by a combination of experimental and theoretical metho...
Abstract The reconstruction and modification of metal surfaces upon O₂ adsorption plays an importan...
The structure and dynamics of atomic oxygen adsorbed on Ag(410) and Ag(210) surfaces have been inves...
The reconstruction and modification of metal surfaces upon O2 adsorption plays an important role in ...
Surface structures formed by exposing Ag(111) to atomic oxygen have been studied by X-ray photoelect...
The reconstruction and modification of metal surfaces upon O2 adsorption plays an important role in ...
We show that dissociative oxygen adsorption on Ag(001) induces below room temperature a missing row ...
Many reactions like the ethylene epoxidation which work readily in industrial reactors can not be re...
The initial stages of oxide nucleation and surface oxide formation are hot topics at the moment due ...
To identify surface phases that could play a role for the epoxidation of ethylene on Ag catalysts we...
We report here on a combined experimental and computational investigation of oxygen interaction with...
With density functional theory, we have examined oxygen adsorption at surface and subsurface sites o...
A long-standing challenge in the study of heterogeneously catalyzed reactions on silver surfaces has...
The mechanism of oxygen incorporation in Ag is still poorly known. As recently demonstrated [Phys. R...
The adsorption of atomic oxygen and its inclusion into subsurface sites on Ag(2 1 0) and Ag(4 1 0) s...
The oxidized Ag(111) surface has been studied by a combination of experimental and theoretical metho...
Abstract The reconstruction and modification of metal surfaces upon O₂ adsorption plays an importan...
The structure and dynamics of atomic oxygen adsorbed on Ag(410) and Ag(210) surfaces have been inves...
The reconstruction and modification of metal surfaces upon O2 adsorption plays an important role in ...
Surface structures formed by exposing Ag(111) to atomic oxygen have been studied by X-ray photoelect...
The reconstruction and modification of metal surfaces upon O2 adsorption plays an important role in ...
We show that dissociative oxygen adsorption on Ag(001) induces below room temperature a missing row ...
Many reactions like the ethylene epoxidation which work readily in industrial reactors can not be re...
The initial stages of oxide nucleation and surface oxide formation are hot topics at the moment due ...
To identify surface phases that could play a role for the epoxidation of ethylene on Ag catalysts we...