Iron oxide films epitaxially grown on close-packed metal single crystal substrates exhibit nearly-perfect structural order, high catalytic activity (FeO) and room-temperature magnetism (Fe3O4). However, the morphology of the films, especially in the ultrathin regime, can be significantly influenced by the crystalline structure of the used support. This work reports an ultra-high vacuum (UHV) low energy electron/synchrotron light-based X-ray photoemission electron microscopy (LEEM/XPEEM) and electron diffraction (µLEED) study of the growth of FeO and Fe3O4 on two closed-packed metal single crystal surfaces: Pt(111) and Ru(0001). The results reveal the influence of the mutual orientation of adjacent substrate terraces on the morphology ...
Epitaxial Fe3O4(111) films were grown onto a Pt(111) substrate by repeated cycles of iron deposition...
Ultrathin transition metal oxide films exhibit unique physical and chemical properties not observed ...
The growth and atomic structures of epitaxial iron-oxide films on Pt(111) were studied with scanning...
Iron oxide films epitaxially grown on close-packed metal single crystal substrates exhibit nearly-pe...
Iron oxide films epitaxially grown on close-packed metal single crystal substrates exhibit nearly-pe...
Epitaxial Fe3O4(111) films were grown onto a Pt(111) substrate by repeated cycles of iron deposition...
Heteroepitaxial growth of thin iron oxide films on Ru(0001) is investigated by scanning tunneling mi...
Heteroepitaxial growth of thin iron oxide films on Ru(0001) is investigated by scanning tunneling mi...
The interface-dependence of heteroepitaxial growth of iron oxide films is investigated by scanning t...
Low energy electron diffraction and scanning tunneling microscopy studies of FeO(111) films on Ru(00...
The reversible transformations of thin magnetite (Fe3O4) and hematite (α-Fe2O3) films grown on Pt(11...
Ultrathin transition metal oxide films exhibit unique physical and chemical properties not observed ...
The surface and interface structure as well as the electronic properties of thin epitaxial Fe3O4(111...
Growth and surface termination of a Fe3O4(111) thin film on a Pt(111) surface were examined by a com...
The interface-dependence of heteroepitaxial growth of iron oxide films is investigated by scanning t...
Epitaxial Fe3O4(111) films were grown onto a Pt(111) substrate by repeated cycles of iron deposition...
Ultrathin transition metal oxide films exhibit unique physical and chemical properties not observed ...
The growth and atomic structures of epitaxial iron-oxide films on Pt(111) were studied with scanning...
Iron oxide films epitaxially grown on close-packed metal single crystal substrates exhibit nearly-pe...
Iron oxide films epitaxially grown on close-packed metal single crystal substrates exhibit nearly-pe...
Epitaxial Fe3O4(111) films were grown onto a Pt(111) substrate by repeated cycles of iron deposition...
Heteroepitaxial growth of thin iron oxide films on Ru(0001) is investigated by scanning tunneling mi...
Heteroepitaxial growth of thin iron oxide films on Ru(0001) is investigated by scanning tunneling mi...
The interface-dependence of heteroepitaxial growth of iron oxide films is investigated by scanning t...
Low energy electron diffraction and scanning tunneling microscopy studies of FeO(111) films on Ru(00...
The reversible transformations of thin magnetite (Fe3O4) and hematite (α-Fe2O3) films grown on Pt(11...
Ultrathin transition metal oxide films exhibit unique physical and chemical properties not observed ...
The surface and interface structure as well as the electronic properties of thin epitaxial Fe3O4(111...
Growth and surface termination of a Fe3O4(111) thin film on a Pt(111) surface were examined by a com...
The interface-dependence of heteroepitaxial growth of iron oxide films is investigated by scanning t...
Epitaxial Fe3O4(111) films were grown onto a Pt(111) substrate by repeated cycles of iron deposition...
Ultrathin transition metal oxide films exhibit unique physical and chemical properties not observed ...
The growth and atomic structures of epitaxial iron-oxide films on Pt(111) were studied with scanning...