The interaction of hydrogen with the Rh(1 1 1) surface was studied by means of high-resolution real-time X-ray core-level photoemission. The analysis of the intensity of the Rh3d(5/2) core-level components was used to determine the hydrogen adsorption sites as a function of the hydrogen dose. While at low coverage only three-fold adsorption sites are occupied, at higher hydrogen concentrations bridge species are also present. The temperature dependence of the core-level spectra indicates that during desorption, surface depopulation occurs in an almost reverse order with respect to the adsorption process
The co‐adsorption of CO and H_2 on Rh(111) at low temperature (∼ 100 K) has been studied using therm...
We have investigated the adsorption and decomposition of ethanol on the Rh(111) and Rh(5 5 3) surfac...
The adsorption of gas-phase atomic hydrogen on potassium-precovered Ir(111) surfaces was investigate...
The adsorption of hydrogen on Rh(110) has been studied by high resolution electron energy loss spect...
Co-adsorption of CO and H2 on a Rh(100) single crystal surface has been studied by a combination of ...
High-resolution core-level photoemission is used to study structural aspects for the molecular adsor...
The reduction of the surface oxide on Rh(111) by H-2 was observed in situ by scanning tunneling micr...
The adsorption sites of coadsorbed K and CO on the Rh(111) surface have been determined using high-r...
We analyzed atomic hydrogen chemisorption on GaAs(110) surfaces through synchrotron radiation photoe...
The adsorption of water and coadsorption with oxygen on Rh{111} under ultrahigh vacuum conditions wa...
A Rh(111) surface has been exposed to oxygen under conditions that favour the formation of a subsurf...
Oxygen-induced Rh3d(5/2) surface core level shifts were used to probe the local electronic structure...
Vicinal Rh(111) surfaces are studied with high resolution core level photoemission. We demonstrate t...
The local changes of the Rh(100) electronic structure induced by sulfur adsorption at different cove...
The chemisorption of H2O on the (111) surface of Rh has been studied by thermal desorption mass spec...
The co‐adsorption of CO and H_2 on Rh(111) at low temperature (∼ 100 K) has been studied using therm...
We have investigated the adsorption and decomposition of ethanol on the Rh(111) and Rh(5 5 3) surfac...
The adsorption of gas-phase atomic hydrogen on potassium-precovered Ir(111) surfaces was investigate...
The adsorption of hydrogen on Rh(110) has been studied by high resolution electron energy loss spect...
Co-adsorption of CO and H2 on a Rh(100) single crystal surface has been studied by a combination of ...
High-resolution core-level photoemission is used to study structural aspects for the molecular adsor...
The reduction of the surface oxide on Rh(111) by H-2 was observed in situ by scanning tunneling micr...
The adsorption sites of coadsorbed K and CO on the Rh(111) surface have been determined using high-r...
We analyzed atomic hydrogen chemisorption on GaAs(110) surfaces through synchrotron radiation photoe...
The adsorption of water and coadsorption with oxygen on Rh{111} under ultrahigh vacuum conditions wa...
A Rh(111) surface has been exposed to oxygen under conditions that favour the formation of a subsurf...
Oxygen-induced Rh3d(5/2) surface core level shifts were used to probe the local electronic structure...
Vicinal Rh(111) surfaces are studied with high resolution core level photoemission. We demonstrate t...
The local changes of the Rh(100) electronic structure induced by sulfur adsorption at different cove...
The chemisorption of H2O on the (111) surface of Rh has been studied by thermal desorption mass spec...
The co‐adsorption of CO and H_2 on Rh(111) at low temperature (∼ 100 K) has been studied using therm...
We have investigated the adsorption and decomposition of ethanol on the Rh(111) and Rh(5 5 3) surfac...
The adsorption of gas-phase atomic hydrogen on potassium-precovered Ir(111) surfaces was investigate...