Ultrathin transition metal oxide films exhibit unique physical and chemical properties not observed for the corresponding bulk oxides. These properties, originating mainly from the limited thickness and the interaction with the support, make those films similar to other supported 2D materials with bulk counterparts, such as transition metal dichalcogenides. Ultrathin iron oxide (FeO) films, for example, were shown to exhibit unique electronic, catalytic and magnetic properties that depend on the type of the used support. Ag(111) has always been considered a promising substrate for FeO growth, as it has the same surface symmetry, only ~5% lattice mismatch, is considered to be weakly-interacting and relatively resistant to oxidation. The repo...
One layer thick iron oxide films are attractive from both applied and fundamental science perspectiv...
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...
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...
Bruns D, Kiesel I, Jentsch S, et al. Structural analysis of FeO(111)/Ag(001): undulation of hexagona...
This work investigates the initial growth of iron and iron oxides on Ag(001). Surface structure and ...
International audienceWe have investigated the magnetic and electronic properties of a FeO film grow...
Monolayer thin FeO(111) films were grown on Pd(111) and oxidized by atomic oxygen (O). The stoichiom...
We have investigated the structure of an ultrathin iron oxide phase grown on Ag(100) using surface x...
We have investigated the structure of an ultrathin iron oxide phase grown on Ag(100) using surface X...
We have investigated the structure of an ultrathin iron oxide phase grown on Ag(100) using surface X...
We have investigated the structure of an ultrathin iron oxide phase grown on Ag(100) using surface x...
One layer thick iron oxide films are attractive from both applied and fundamental science perspectiv...
One layer thick iron oxide films are attractive from both applied and fundamental science perspectiv...
One layer thick iron oxide films are attractive from both applied and fundamental science perspectiv...
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...
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...
Bruns D, Kiesel I, Jentsch S, et al. Structural analysis of FeO(111)/Ag(001): undulation of hexagona...
This work investigates the initial growth of iron and iron oxides on Ag(001). Surface structure and ...
International audienceWe have investigated the magnetic and electronic properties of a FeO film grow...
Monolayer thin FeO(111) films were grown on Pd(111) and oxidized by atomic oxygen (O). The stoichiom...
We have investigated the structure of an ultrathin iron oxide phase grown on Ag(100) using surface x...
We have investigated the structure of an ultrathin iron oxide phase grown on Ag(100) using surface X...
We have investigated the structure of an ultrathin iron oxide phase grown on Ag(100) using surface X...
We have investigated the structure of an ultrathin iron oxide phase grown on Ag(100) using surface x...
One layer thick iron oxide films are attractive from both applied and fundamental science perspectiv...
One layer thick iron oxide films are attractive from both applied and fundamental science perspectiv...
One layer thick iron oxide films are attractive from both applied and fundamental science perspectiv...
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...