Using ab initio thermodynamics we compile a phase diagram for the surface of Fe3O4(001) as a function of temperature and oxygen pressures. A hitherto ignored polar termination with octahedral iron and oxygen forming a wavelike structure along the [110] direction is identified as the lowest energy configuration over a broad range of oxygen gas-phase conditions. This novel geometry is confirmed via x-ray diffraction analysis. The stabilization of the Fe3O4(001) surface goes together with dramatic changes in the electronic and magnetic properties, e.g., a half metal to metal transition
The determination of surface terminations in transition metal oxides is not trivial because many str...
The initial oxidation of Fe(100) at 400 degrees C has been studied by X-ray photoelectron spectrosco...
Using scanning tunneling microscopy and infrared reflection absorption spectroscopy we have observed...
Using ab initio thermodynamics we compile a phase diagram for the surface of Fe3O4(001) as a functio...
Reduced terminations of the Fe3O4(001) surface were studied using scanning tunneling microscopy, x-r...
Model catalysts, where the structure of single-crystal materials with well-defined surface terminati...
In situ prepared Fe3O4(100) thin films were studied by means of scanning tunneling microscopy (STM) ...
A metastable Fe(A) terminated Fe3O4(001) surface was prepared by tailoring the surface preparation c...
Magnetite (111) single-crystal surfaces prepared in situ under different reducing conditions and—as ...
Establishing the atomic-scale structure of metal-oxide surfaces during electrochemical reactions is ...
The renewed interest in magnetite (Fe3O4) as a major phase in different types of catalysts has led u...
A combination of density functional theory (DFT) calculations and low energy electron diffraction (L...
We have investigated the termination and the surface reconstruction of Fe3O4 prepared by oxygen-assi...
Establishing the atomic-scale structure of metal-oxide surfaces during electrochemical reactions is ...
The surface structure of magnetite Fe3O4(111) in contact with oxygen and water is investigated using...
The determination of surface terminations in transition metal oxides is not trivial because many str...
The initial oxidation of Fe(100) at 400 degrees C has been studied by X-ray photoelectron spectrosco...
Using scanning tunneling microscopy and infrared reflection absorption spectroscopy we have observed...
Using ab initio thermodynamics we compile a phase diagram for the surface of Fe3O4(001) as a functio...
Reduced terminations of the Fe3O4(001) surface were studied using scanning tunneling microscopy, x-r...
Model catalysts, where the structure of single-crystal materials with well-defined surface terminati...
In situ prepared Fe3O4(100) thin films were studied by means of scanning tunneling microscopy (STM) ...
A metastable Fe(A) terminated Fe3O4(001) surface was prepared by tailoring the surface preparation c...
Magnetite (111) single-crystal surfaces prepared in situ under different reducing conditions and—as ...
Establishing the atomic-scale structure of metal-oxide surfaces during electrochemical reactions is ...
The renewed interest in magnetite (Fe3O4) as a major phase in different types of catalysts has led u...
A combination of density functional theory (DFT) calculations and low energy electron diffraction (L...
We have investigated the termination and the surface reconstruction of Fe3O4 prepared by oxygen-assi...
Establishing the atomic-scale structure of metal-oxide surfaces during electrochemical reactions is ...
The surface structure of magnetite Fe3O4(111) in contact with oxygen and water is investigated using...
The determination of surface terminations in transition metal oxides is not trivial because many str...
The initial oxidation of Fe(100) at 400 degrees C has been studied by X-ray photoelectron spectrosco...
Using scanning tunneling microscopy and infrared reflection absorption spectroscopy we have observed...