The surface morphology and atomic structure of clean and oxidized FeAl(1 1 0) surfaces have been investigated with scanning tunneling microscopy (STM). An incommensurate reconstructed structure, having FeAl2 stoichiometry confined to the outmost layer, is observed on the clean surface due to preferential Al segregation upon annealing to 1125 K. When the reconstructed clean surface is exposed to oxygen at elevated temperatures, an ordered ultra-thin aluminum oxide film is formed. Based on STM data, a structural model of the oxide film is proposed, which exhibits a quasi-hexagonal oxygen layer and accommodates an even mix of octahedral and tetrahedral occupancy of Al ions arranged in an alternating zigzag-stripe structure. STM imaging with tu...
The surface oxidation of aluminum is still poorly understood despite its vital role as an insulator ...
The oxidation of the Ni3Al(1 0 0) surface at 1100 K with 2000 1 was investigated by Auger electron s...
Ultrathin oxide films consist of a few monolayers of oxide material on a support and are generally n...
The surface morphology and atomic structure of clean and oxidized FeAl(1 1 0) surfaces have been inv...
The electronic structure of the ultrathin aluminum oxide grown on the FeAl(110) surface has been inv...
International audienceIn situ room temperature scanning tunneling microscopy STM observations combin...
International audienceThe formation of an ultra-thin aluminum oxide film at Fe0.85Al0.15(110) surfac...
Reproducible scanning tunneling microscopic (STM) images were obtained from ultrathin Al2O3 films ep...
Reproducible scanning tunneling microscopic (STM) images were obtained from ultrathin Al2O3 films ep...
A thin Al2O3 layer grown on NiAl(110) has been studied by scanning tunneling microscopy at about 4 K...
International audienceScanning tunneling microscopy (STM) and spectroscopy and electron energy loss ...
We have prepared under ultrahigh vacuum conditions a NiAl(110) wedge which was oxidized such that, a...
The surface geometric and electronic structure of the FeAl(110) intermetallic alloy has been investi...
AbstractVia oxidation a well ordered Al2O3 film may be grown on an ordered NiAl(110) surface. Its st...
A2 Fe0.85Al0.15 single crystals with low-index orientations (110), (100) and (111) have been chosen ...
The surface oxidation of aluminum is still poorly understood despite its vital role as an insulator ...
The oxidation of the Ni3Al(1 0 0) surface at 1100 K with 2000 1 was investigated by Auger electron s...
Ultrathin oxide films consist of a few monolayers of oxide material on a support and are generally n...
The surface morphology and atomic structure of clean and oxidized FeAl(1 1 0) surfaces have been inv...
The electronic structure of the ultrathin aluminum oxide grown on the FeAl(110) surface has been inv...
International audienceIn situ room temperature scanning tunneling microscopy STM observations combin...
International audienceThe formation of an ultra-thin aluminum oxide film at Fe0.85Al0.15(110) surfac...
Reproducible scanning tunneling microscopic (STM) images were obtained from ultrathin Al2O3 films ep...
Reproducible scanning tunneling microscopic (STM) images were obtained from ultrathin Al2O3 films ep...
A thin Al2O3 layer grown on NiAl(110) has been studied by scanning tunneling microscopy at about 4 K...
International audienceScanning tunneling microscopy (STM) and spectroscopy and electron energy loss ...
We have prepared under ultrahigh vacuum conditions a NiAl(110) wedge which was oxidized such that, a...
The surface geometric and electronic structure of the FeAl(110) intermetallic alloy has been investi...
AbstractVia oxidation a well ordered Al2O3 film may be grown on an ordered NiAl(110) surface. Its st...
A2 Fe0.85Al0.15 single crystals with low-index orientations (110), (100) and (111) have been chosen ...
The surface oxidation of aluminum is still poorly understood despite its vital role as an insulator ...
The oxidation of the Ni3Al(1 0 0) surface at 1100 K with 2000 1 was investigated by Auger electron s...
Ultrathin oxide films consist of a few monolayers of oxide material on a support and are generally n...