This paper reports on the deposition of a vanadium oxide ultra-thin film on TiO2(1 1 0) by means of e-beam evaporation in an atmosphere of water vapour at room temperature. Photoelectron, X-ray excited Auger and valence band spectra have shown features very similar to those reported in the literature for vanadia ultra-thin films on TiO2(1 1 0) identified as V2O3. An X-ray photoelectron diffraction analysis has been performed as a function of the overlayer thickness and after annealing treatments. It demonstrates that the overlayer grows ordered on the short range, pseudomorphic to the substrate, with a defective rutile crystal structure. The epitaxial relationship is maintained, with an approximately linear decrease in anisotropy, up to at ...
Vanadium oxide has been deposited on TiO2 (washed anatase, 10 m2g−1; Degussa P-25, 55 ±3 m2g−1; Euro...
In this study, VOx films were grown by atomic layer deposition (ALD) using V(NEtMe)4 as the vanadium...
Epitaxial ultra-thin oxide films can support large percent level strains well beyond their bulk coun...
Vanadium oxide has been deposited on TiO2 (1 1 0) by means of e-beam metal evaporation in an oxygen ...
The research activity of our group in the last few years has mainly been devoted to the study of ult...
The growth morphology of ultrathin (up to 5 ML) vanadium oxide films on TiO2(1 1 0) has been investi...
Periodic density functional calculations have been used to investigate the structure and stability o...
Epitaxial VO2 layers have been grown on the TiO2(110) rutile surface up to thicknesses of 5 ML. Thes...
The normal incidence X-ray standing wave (NIXSW) technique has been applied to investigate the struc...
In the present communication, we discuss the results of an angle resolved photoemission extended fin...
We have prepared VO2 thin films epitaxially grown on TiO2(001) substrates with thickness systematica...
This paper reports experimental evidence for an incipient epitaxial growth of vanadium oxide at the ...
The surface structure of a novel vanadium–titanium dioxide epitaxial film (Ti1−xVxO2, x ~ 0.2) has b...
This Letter reports an X-ray photoelectron diffraction study of 3c5 V monolayers deposited by elect...
This thesis aims to study the modifications induced by vanadium in titanium dioxide, an oxide semico...
Vanadium oxide has been deposited on TiO2 (washed anatase, 10 m2g−1; Degussa P-25, 55 ±3 m2g−1; Euro...
In this study, VOx films were grown by atomic layer deposition (ALD) using V(NEtMe)4 as the vanadium...
Epitaxial ultra-thin oxide films can support large percent level strains well beyond their bulk coun...
Vanadium oxide has been deposited on TiO2 (1 1 0) by means of e-beam metal evaporation in an oxygen ...
The research activity of our group in the last few years has mainly been devoted to the study of ult...
The growth morphology of ultrathin (up to 5 ML) vanadium oxide films on TiO2(1 1 0) has been investi...
Periodic density functional calculations have been used to investigate the structure and stability o...
Epitaxial VO2 layers have been grown on the TiO2(110) rutile surface up to thicknesses of 5 ML. Thes...
The normal incidence X-ray standing wave (NIXSW) technique has been applied to investigate the struc...
In the present communication, we discuss the results of an angle resolved photoemission extended fin...
We have prepared VO2 thin films epitaxially grown on TiO2(001) substrates with thickness systematica...
This paper reports experimental evidence for an incipient epitaxial growth of vanadium oxide at the ...
The surface structure of a novel vanadium–titanium dioxide epitaxial film (Ti1−xVxO2, x ~ 0.2) has b...
This Letter reports an X-ray photoelectron diffraction study of 3c5 V monolayers deposited by elect...
This thesis aims to study the modifications induced by vanadium in titanium dioxide, an oxide semico...
Vanadium oxide has been deposited on TiO2 (washed anatase, 10 m2g−1; Degussa P-25, 55 ±3 m2g−1; Euro...
In this study, VOx films were grown by atomic layer deposition (ALD) using V(NEtMe)4 as the vanadium...
Epitaxial ultra-thin oxide films can support large percent level strains well beyond their bulk coun...