Epitaxial iron oxide films are grown on Ag(1 1 1) by two methods. The oxide films are characterized using low-energy electron diffraction, X-ray photoelectron spectroscopy, and X-ray photoelectron diffraction. The first growth method is deposition of Fe films with thickness ranging from 1-10 monolayers on Ag(1 1 1) and oxidizing these films. The Fe film structure prior to oxidation is identified as poorly ordered bcc-Fe(1 1 0), and oxidation leads to the growth of poorly ordered FeO(1 1 1) films. The second method is sequential deposition of sub-monolayer Fe films (typically less-than-or-equals, slant0.5 ML) followed by oxidation. This procedure is repeated until the desired oxide film thickness is achieved. Iron oxide films grown by sequen...
The surface and interface structure as well as the electronic properties of thin epitaxial Fe3O4(111...
In this thesis the influence of deposition conditions and post-deposition annealing on the structure...
The growth and atomic structures of epitaxial iron-oxide films on Pt(111) were studied with scanning...
This work investigates the initial growth of iron and iron oxides on Ag(001). Surface structure and ...
In an attempt to introduce steps in oxide surfaces in a controlled way, different iron oxide phases ...
In an attempt to introduce steps in oxide surfaces in a controlled way, different iron oxide phases ...
Thesis (Ph. D.)--University of Hawaii at Manoa, 1995.Includes bibliographical references.Microfiche....
Epitaxial Fe3O4(111) films were grown onto a Pt(111) substrate by repeated cycles of iron deposition...
In this study, attempts were made to grow well-ordered chromium- and iron-oxide films on Ag(111) and...
Ultrathin transition metal oxide films exhibit unique physical and chemical properties not observed ...
Ultrathin transition metal oxide films exhibit unique physical and chemical properties not observed ...
Epitaxial Fe3O4(111) films were grown onto a Pt(111) substrate by repeated cycles of iron deposition...
International audienceEpitaxial iron oxide layers with different orientations were grown on Ag(001) ...
International audienceEpitaxial iron oxide layers with different orientations were grown on Ag(001) ...
International audienceEpitaxial iron oxide layers with different orientations were grown on Ag(001) ...
The surface and interface structure as well as the electronic properties of thin epitaxial Fe3O4(111...
In this thesis the influence of deposition conditions and post-deposition annealing on the structure...
The growth and atomic structures of epitaxial iron-oxide films on Pt(111) were studied with scanning...
This work investigates the initial growth of iron and iron oxides on Ag(001). Surface structure and ...
In an attempt to introduce steps in oxide surfaces in a controlled way, different iron oxide phases ...
In an attempt to introduce steps in oxide surfaces in a controlled way, different iron oxide phases ...
Thesis (Ph. D.)--University of Hawaii at Manoa, 1995.Includes bibliographical references.Microfiche....
Epitaxial Fe3O4(111) films were grown onto a Pt(111) substrate by repeated cycles of iron deposition...
In this study, attempts were made to grow well-ordered chromium- and iron-oxide films on Ag(111) and...
Ultrathin transition metal oxide films exhibit unique physical and chemical properties not observed ...
Ultrathin transition metal oxide films exhibit unique physical and chemical properties not observed ...
Epitaxial Fe3O4(111) films were grown onto a Pt(111) substrate by repeated cycles of iron deposition...
International audienceEpitaxial iron oxide layers with different orientations were grown on Ag(001) ...
International audienceEpitaxial iron oxide layers with different orientations were grown on Ag(001) ...
International audienceEpitaxial iron oxide layers with different orientations were grown on Ag(001) ...
The surface and interface structure as well as the electronic properties of thin epitaxial Fe3O4(111...
In this thesis the influence of deposition conditions and post-deposition annealing on the structure...
The growth and atomic structures of epitaxial iron-oxide films on Pt(111) were studied with scanning...