Scanning tunnelling microscopy and X-ray photoelectron spectroscopy have been used to study the adsorption of Mg on 12 ML thick MgO films grown either on Ag(001) or Mo(001) supports. The initially arriving Mg atoms spontaneously oxidize on the MgO surface, whereas metallic aggregates only form at higher exposure. The total amount of cationic Mg is considerably larger on the Mo- compared to the Ag-supported oxide films. The charge transfer is suggested to be induced by Mg attachment to MgO line defects with high electron-trapping potential. The density of those defect lines and hence the oxidation power of the film is governed by the lattice mismatch with the underlying metal support
using metastable impact electron and ultraviolet photoelectron spectroscopies (MIES/UPS) and tempera...
We report a growth study of MgO thin films on an Au(111) support, performed with scanning tunneling ...
Ultrathin MgO films grown on Ag(001) have been investigated using X-ray and ultraviolet photoemissi...
Scanning tunnelling microscopy and X-ray photoelectron spectroscopy have been used to study the adso...
International audienceUltrathin MgO films grown on Ag(001) have been investigated using X-ray and ul...
We investigate electron tunneling between defects and mobile adsorbates on the surface of MgO and sh...
Localized electronic defects on the surface of a 4 monolayer (ML) thin MgO(001) film deposited on Ag...
We use Ca doping during growth of one-and two-monolayer-thick MgO films on Ag(100) to identify the a...
Oxides at the nanometric scale show a behavior markedly different from that of their bulk counterpar...
Magnesium has been recently becoming an increasingly popular material for various applications. Howe...
Using scanning tunnelling microscopy and photoelectron diffraction, we have analyzed the nucleation ...
The interest in thin and ultrathin oxide films is increasing rapidly due to the new properties and t...
The reactivity of MgO(0 0 1) films deposited on Ag(0 0 1) and Mo(0 0 1) in CO oxidation as a functio...
The interest in thin and ultrathin oxide films is increasing rapidly due to the new properties and t...
We report a growth study of MgO thin films on an Au(111) support, performed with scanning tunneling ...
using metastable impact electron and ultraviolet photoelectron spectroscopies (MIES/UPS) and tempera...
We report a growth study of MgO thin films on an Au(111) support, performed with scanning tunneling ...
Ultrathin MgO films grown on Ag(001) have been investigated using X-ray and ultraviolet photoemissi...
Scanning tunnelling microscopy and X-ray photoelectron spectroscopy have been used to study the adso...
International audienceUltrathin MgO films grown on Ag(001) have been investigated using X-ray and ul...
We investigate electron tunneling between defects and mobile adsorbates on the surface of MgO and sh...
Localized electronic defects on the surface of a 4 monolayer (ML) thin MgO(001) film deposited on Ag...
We use Ca doping during growth of one-and two-monolayer-thick MgO films on Ag(100) to identify the a...
Oxides at the nanometric scale show a behavior markedly different from that of their bulk counterpar...
Magnesium has been recently becoming an increasingly popular material for various applications. Howe...
Using scanning tunnelling microscopy and photoelectron diffraction, we have analyzed the nucleation ...
The interest in thin and ultrathin oxide films is increasing rapidly due to the new properties and t...
The reactivity of MgO(0 0 1) films deposited on Ag(0 0 1) and Mo(0 0 1) in CO oxidation as a functio...
The interest in thin and ultrathin oxide films is increasing rapidly due to the new properties and t...
We report a growth study of MgO thin films on an Au(111) support, performed with scanning tunneling ...
using metastable impact electron and ultraviolet photoelectron spectroscopies (MIES/UPS) and tempera...
We report a growth study of MgO thin films on an Au(111) support, performed with scanning tunneling ...
Ultrathin MgO films grown on Ag(001) have been investigated using X-ray and ultraviolet photoemissi...