The electronic structure of highly under-coordinated Rh atoms, namely adatoms and ad-dimers, on homo- metallic surfaces has been probed by combining high-energy resolution core level photoelectron spectroscopy and density functional theory calculations. The Rh3d(5/2) core level shifts are shown to be proportional to the number of Rh nearest-neighbours ( n = 3, 4 and 5). A more refined analysis shows that the energy position of the different core level components is correlated with the calculated changes of the individual inter-atomic bond length and to the energy changes of the d-band centre, which is known to be a reliable descriptor of local chemical reactivity
The electronic structure of clean and oxygen-covered Re(0001) was investigated by combining high ene...
The interaction of hydrogen with the Rh(1 1 1) surface was studied by means of high-resolution real-...
We present potential energy surfaces for Rh-CO obtained from d. functional theory for two electronic...
The electronic structure and chemical reactivity changes of highly under-coordinated Rh atoms on a P...
The electronic structure and chemical reactivity changes of highly under-coordinated Rh atoms on a P...
The local changes of the Rh(100) electronic structure induced by sulfur adsorption at different cove...
The nitrogen interaction with Rh(100) was studied by combining high-energy resolution core level pho...
Oxygen-induced Rh3d(5/2) surface core level shifts were used to probe the local electronic structure...
We present extensive density-functional theory (DFT) based calculations of the clean Rh(111) surface...
A shift in the core electron binding energy detected with X-ray photoelectron spec- troscopy (XPS) g...
Photoelectron core level spectroscopy is commonly used to monitor atomic and molecular adsorption on...
In previous work on adsorbate-induced surface core level shifts (SCLSs), the e ffects caused by O at...
The tremendous importance of dirhodium paddlewheel com-plexes for asymmetric catalysis is largely th...
We present the results of high-energy resolution core level photoelectron spectroscopy experiments p...
Vicinal Rh(111) surfaces are studied with high resolution core level photoemission. We demonstrate t...
The electronic structure of clean and oxygen-covered Re(0001) was investigated by combining high ene...
The interaction of hydrogen with the Rh(1 1 1) surface was studied by means of high-resolution real-...
We present potential energy surfaces for Rh-CO obtained from d. functional theory for two electronic...
The electronic structure and chemical reactivity changes of highly under-coordinated Rh atoms on a P...
The electronic structure and chemical reactivity changes of highly under-coordinated Rh atoms on a P...
The local changes of the Rh(100) electronic structure induced by sulfur adsorption at different cove...
The nitrogen interaction with Rh(100) was studied by combining high-energy resolution core level pho...
Oxygen-induced Rh3d(5/2) surface core level shifts were used to probe the local electronic structure...
We present extensive density-functional theory (DFT) based calculations of the clean Rh(111) surface...
A shift in the core electron binding energy detected with X-ray photoelectron spec- troscopy (XPS) g...
Photoelectron core level spectroscopy is commonly used to monitor atomic and molecular adsorption on...
In previous work on adsorbate-induced surface core level shifts (SCLSs), the e ffects caused by O at...
The tremendous importance of dirhodium paddlewheel com-plexes for asymmetric catalysis is largely th...
We present the results of high-energy resolution core level photoelectron spectroscopy experiments p...
Vicinal Rh(111) surfaces are studied with high resolution core level photoemission. We demonstrate t...
The electronic structure of clean and oxygen-covered Re(0001) was investigated by combining high ene...
The interaction of hydrogen with the Rh(1 1 1) surface was studied by means of high-resolution real-...
We present potential energy surfaces for Rh-CO obtained from d. functional theory for two electronic...