AbstractWe have investigated the electronic and geometric structure of a thin oxide film grown by oxidation on NiAl(110) using electron spectroscopic techniques, i.e., LEED, EELS, XPS and ARUPS. This film is inert to adsorption of, respectively reaction with many molecules up to temperatures of about 800 K. It is well ordered as deduced from the LEED pattern and covers the whole surface. We find that the oxide film is about 5 Å thick, consisting of aluminium oxide as shown by EELS, XPS and ARUPS. It is most likely formed of two aluminium layers and two quasihexagonal oxygen layers with oxygen surface termination. Since the oxide film is rather thin it only shows a two-dimensional band structure which has been investigated using ARUPS. For t...
The structure of an ordered, ultrathin ı-Al2O3 film grown on a NiAl(100) single-crystal surface was ...
A model for the straight antiphase domain boundary of the ultrathin aluminum oxide film on the NiAl(...
International audienceThe formation of an ultra-thin aluminum oxide film at Fe0.85Al0.15(110) surfac...
AbstractWe have investigated the electronic and geometric structure of a thin oxide film grown by ox...
The oxidation of the Ni3Al(1 0 0) surface at 1100 K with 2000 1 was investigated by Auger electron s...
AbstractVia oxidation a well ordered Al2O3 film may be grown on an ordered NiAl(110) surface. Its st...
We have prepared under ultrahigh vacuum conditions a NiAl(110) wedge which was oxidized such that, a...
International audienceA well-ordered ultrathin alumina film on top of Ni(1 1 1) has been obtained by...
We have studied the ultrathin aluminum oxide film on NiAl(110) by a combination of high-resolution c...
The electronic structure of the ultrathin aluminum oxide grown on the FeAl(110) surface has been inv...
The growth and oxidation of a thin film of Ni3Al grown on Ni(1 0 0) were studied using Auger electro...
The growth of ultrathin films of Al2O3 on Cu(111) in the temperature range 300-1200 K was investigat...
The surface structure of ultra-thin Al2O3 films on NiAl(110) and Ru(0001) was investigated by using ...
This chapter will deal with the properties of ultrathin oxide layers on different substrates. We wil...
A thin Al2O3 layer grown on NiAl(110) has been studied by scanning tunneling microscopy at about 4 K...
The structure of an ordered, ultrathin ı-Al2O3 film grown on a NiAl(100) single-crystal surface was ...
A model for the straight antiphase domain boundary of the ultrathin aluminum oxide film on the NiAl(...
International audienceThe formation of an ultra-thin aluminum oxide film at Fe0.85Al0.15(110) surfac...
AbstractWe have investigated the electronic and geometric structure of a thin oxide film grown by ox...
The oxidation of the Ni3Al(1 0 0) surface at 1100 K with 2000 1 was investigated by Auger electron s...
AbstractVia oxidation a well ordered Al2O3 film may be grown on an ordered NiAl(110) surface. Its st...
We have prepared under ultrahigh vacuum conditions a NiAl(110) wedge which was oxidized such that, a...
International audienceA well-ordered ultrathin alumina film on top of Ni(1 1 1) has been obtained by...
We have studied the ultrathin aluminum oxide film on NiAl(110) by a combination of high-resolution c...
The electronic structure of the ultrathin aluminum oxide grown on the FeAl(110) surface has been inv...
The growth and oxidation of a thin film of Ni3Al grown on Ni(1 0 0) were studied using Auger electro...
The growth of ultrathin films of Al2O3 on Cu(111) in the temperature range 300-1200 K was investigat...
The surface structure of ultra-thin Al2O3 films on NiAl(110) and Ru(0001) was investigated by using ...
This chapter will deal with the properties of ultrathin oxide layers on different substrates. We wil...
A thin Al2O3 layer grown on NiAl(110) has been studied by scanning tunneling microscopy at about 4 K...
The structure of an ordered, ultrathin ı-Al2O3 film grown on a NiAl(100) single-crystal surface was ...
A model for the straight antiphase domain boundary of the ultrathin aluminum oxide film on the NiAl(...
International audienceThe formation of an ultra-thin aluminum oxide film at Fe0.85Al0.15(110) surfac...