A metastable Fe(A) terminated Fe3O4(001) surface was prepared by tailoring the surface preparation conditions. STM. LEIS and LEED are utilized to demonstrate that annealing the Ar+ sputtered surface to 350 degrees C produces an Fe(A) terminated surface with a (root 2 x root 2)R45 degrees superstructure. Within the superstructure both single Fe atoms and Fe dimer species are observed. The surface is reoxidized upon annealing to higher temperatures, eventually leading to the recovery of the energetically favorable Jahn-Teller distorted surface at 700 degrees C. The ability to reproducibly prepare the Fe(A) termination in this simple manner will allow investigations into the structure-function relationship for this important technological mate...
The α-Fe2O3(0001)-biphase surface consists of an ordered arrangement of FeO(111) and α-Fe2O3(0001) s...
Nanocrystalline alloys are prepared by controlled annealing of metallic glass precursors. The latter...
The (110) surface of magnetite Fe3O4 single crystals was studied by scanning tunneling microscopy (S...
Reduced terminations of the Fe3O4(001) surface were studied using scanning tunneling microscopy, x-r...
Using ab initio thermodynamics we compile a phase diagram for the surface of Fe3O4(001) as a functio...
We studied the preparation of well-ordered thin Fe3O4(001) films on a metallic substrate, Pt(100), u...
Using ab initio thermodynamics we compile a phase diagram for the surface of Fe3O4(001) as a functio...
We have investigated the termination and the surface reconstruction of Fe3O4 prepared by oxygen-assi...
The initial oxidation of Fe(100) at 400 degrees C has been studied by X-ray photoelectron spectrosco...
Although the (111) surface of Fe<sub>3</sub>O<sub>4</sub> (magnetite) has been investigated for more...
THESIS 7885This work consists of surface studies of three systems; firstly, the (001) surface of a F...
Although the (111) surface of Fe<sub>3</sub>O<sub>4</sub> (magnetite) has been investigated for more...
The mobility of Fe in magnetite is a key ingredient towards a better understanding of its defect str...
Preliminary results of low-energy ion scattering (LEIS) and low-energy electron diffraction (LEED) s...
In situ prepared Fe3O4(100) thin films were studied by means of scanning tunneling microscopy (STM) ...
The α-Fe2O3(0001)-biphase surface consists of an ordered arrangement of FeO(111) and α-Fe2O3(0001) s...
Nanocrystalline alloys are prepared by controlled annealing of metallic glass precursors. The latter...
The (110) surface of magnetite Fe3O4 single crystals was studied by scanning tunneling microscopy (S...
Reduced terminations of the Fe3O4(001) surface were studied using scanning tunneling microscopy, x-r...
Using ab initio thermodynamics we compile a phase diagram for the surface of Fe3O4(001) as a functio...
We studied the preparation of well-ordered thin Fe3O4(001) films on a metallic substrate, Pt(100), u...
Using ab initio thermodynamics we compile a phase diagram for the surface of Fe3O4(001) as a functio...
We have investigated the termination and the surface reconstruction of Fe3O4 prepared by oxygen-assi...
The initial oxidation of Fe(100) at 400 degrees C has been studied by X-ray photoelectron spectrosco...
Although the (111) surface of Fe<sub>3</sub>O<sub>4</sub> (magnetite) has been investigated for more...
THESIS 7885This work consists of surface studies of three systems; firstly, the (001) surface of a F...
Although the (111) surface of Fe<sub>3</sub>O<sub>4</sub> (magnetite) has been investigated for more...
The mobility of Fe in magnetite is a key ingredient towards a better understanding of its defect str...
Preliminary results of low-energy ion scattering (LEIS) and low-energy electron diffraction (LEED) s...
In situ prepared Fe3O4(100) thin films were studied by means of scanning tunneling microscopy (STM) ...
The α-Fe2O3(0001)-biphase surface consists of an ordered arrangement of FeO(111) and α-Fe2O3(0001) s...
Nanocrystalline alloys are prepared by controlled annealing of metallic glass precursors. The latter...
The (110) surface of magnetite Fe3O4 single crystals was studied by scanning tunneling microscopy (S...