A thin Al2O3 layer grown on NiAl(110) has been studied by scanning tunneling microscopy at about 4 K. The film exhibited monocrystalline ordering compatible with the (111) face of -alumina with a slightly extended surface unit cell. Although the topographical images change substantially with bias voltage we show that the autocorrelation transform of the images clearly reveals the unit cell of the alumina lattice. By using particular tunneling conditions we have identified almost all oxygen atom positions within the unit cell. The parameters applied lead to a considerable interaction between tip and top atoms of the substrate reflected in the image as local perturbations denoted as scratching
We present an extensive atomic resolution frequency modulation dynamic force microscopy study of ult...
The surface electronic structure of NiAl(110) is examined by means of scanning tunneling microscopy ...
Noncontact atomic force microscopy (NC-AFM) has been performed on an aluminum oxide film grown on Ni...
A thin Al2O3 layer grown on NiAl(110) has been studied by scanning tunneling microscopy at about 4 K...
AbstractVia oxidation a well ordered Al2O3 film may be grown on an ordered NiAl(110) surface. Its st...
International audienceIn situ room temperature scanning tunneling microscopy STM observations combin...
We have prepared under ultrahigh vacuum conditions a NiAl(110) wedge which was oxidized such that, a...
Atomically ordered Al2O3 obtained by thermal oxidation of the Ni3Al(001) surface was studied using s...
Thin ordered layers of Al2O3 grown on a metallic Ni3Al(0 0 1) substrate were studied using UHV STM a...
The oxidation of the Ni3Al(1 0 0) surface at 1100 K with 2000 1 was investigated by Auger electron s...
The surface morphology and atomic structure of clean and oxidized FeAl(1 1 0) surfaces have been inv...
The surface morphology and atomic structure of clean and oxidized FeAl(1 1 0) surfaces have been inv...
AbstractWe have investigated the electronic and geometric structure of a thin oxide film grown by ox...
International audienceA well-ordered ultrathin alumina film on top of Ni(1 1 1) has been obtained by...
Die heterogene Katalyse spielt in der industriellen chemischen Synthese sowie in umwelttechnischen P...
We present an extensive atomic resolution frequency modulation dynamic force microscopy study of ult...
The surface electronic structure of NiAl(110) is examined by means of scanning tunneling microscopy ...
Noncontact atomic force microscopy (NC-AFM) has been performed on an aluminum oxide film grown on Ni...
A thin Al2O3 layer grown on NiAl(110) has been studied by scanning tunneling microscopy at about 4 K...
AbstractVia oxidation a well ordered Al2O3 film may be grown on an ordered NiAl(110) surface. Its st...
International audienceIn situ room temperature scanning tunneling microscopy STM observations combin...
We have prepared under ultrahigh vacuum conditions a NiAl(110) wedge which was oxidized such that, a...
Atomically ordered Al2O3 obtained by thermal oxidation of the Ni3Al(001) surface was studied using s...
Thin ordered layers of Al2O3 grown on a metallic Ni3Al(0 0 1) substrate were studied using UHV STM a...
The oxidation of the Ni3Al(1 0 0) surface at 1100 K with 2000 1 was investigated by Auger electron s...
The surface morphology and atomic structure of clean and oxidized FeAl(1 1 0) surfaces have been inv...
The surface morphology and atomic structure of clean and oxidized FeAl(1 1 0) surfaces have been inv...
AbstractWe have investigated the electronic and geometric structure of a thin oxide film grown by ox...
International audienceA well-ordered ultrathin alumina film on top of Ni(1 1 1) has been obtained by...
Die heterogene Katalyse spielt in der industriellen chemischen Synthese sowie in umwelttechnischen P...
We present an extensive atomic resolution frequency modulation dynamic force microscopy study of ult...
The surface electronic structure of NiAl(110) is examined by means of scanning tunneling microscopy ...
Noncontact atomic force microscopy (NC-AFM) has been performed on an aluminum oxide film grown on Ni...