Vanadium pentoxide (V2O5) thin films were prepared by sol-gel spin coating on Si and glass substrates. X-ray diffraction indicated that the annealed V2O5 film grown on Si substrate was a α-phase orthorhombic structure, while the annealed V2O5 film grown on glass substrates was a β-phase monoclinic structure. Raman spectroscopy revealed the formation of a V-O bond on both phase films. Scanning electron microscopy (SEM) showed that the annealed film on the Si substrate exhibited more uniform rod-like morphology compared with glass substrate film. Electrical measurements indicated the typical n-type semiconducting behavior of both annealed films coated on Si and glass substrates
Vanadium pentoxide thin films have been prepared by reactive d.c. magnetron sputtering from a vanadi...
Vanadium pentoxide thin films are prepared by the sol-gel route by dissolving V$_{2}$O$_{5}$ powder...
Vanadium pentoxide thin films have been deposited on quartz substrates via sol-gel synthesis and dip...
In this study, vanadium oxide coated thin films on the p-Si substrate were prepared by the sol-gel m...
In this study, the V8O15 derivative of vanadium oxide was produced on plain glass, indium tin oxide ...
In this work, the effect of substrate temperature on structural and optical properties of V2O5 thin ...
Microstructure, electrochemical and optical properties of sol-gel deposited vanadium pentoxide (V2O5...
In this work, the effect of substrate temperature on structural and optical properties of V2O5 thin ...
Thin V2O5 films have been prepared by thermal evaporation onto glass substrates at a pressure of abo...
In the present work V2O5 xerogel thin films are deposited on quartz substrate by using a cost effect...
Optical, structural and electronic properties of vanadium pentoxide (V2O5) thin films deposited with...
Vanadium pentoxide thin films are grown on glass and borosilicate substrates by PACVD using a vanady...
Vanadium pentoxide thin films are prepared by the sol–gel route by dissolving V2O5 powder (99.5% pu...
The effect of chemical substances is reported on the structure, surface morphology, and material pro...
ABSTRACT Vanadium oxide films amorphous, nonstoichiometric and highly absorbing in the optical regio...
Vanadium pentoxide thin films have been prepared by reactive d.c. magnetron sputtering from a vanadi...
Vanadium pentoxide thin films are prepared by the sol-gel route by dissolving V$_{2}$O$_{5}$ powder...
Vanadium pentoxide thin films have been deposited on quartz substrates via sol-gel synthesis and dip...
In this study, vanadium oxide coated thin films on the p-Si substrate were prepared by the sol-gel m...
In this study, the V8O15 derivative of vanadium oxide was produced on plain glass, indium tin oxide ...
In this work, the effect of substrate temperature on structural and optical properties of V2O5 thin ...
Microstructure, electrochemical and optical properties of sol-gel deposited vanadium pentoxide (V2O5...
In this work, the effect of substrate temperature on structural and optical properties of V2O5 thin ...
Thin V2O5 films have been prepared by thermal evaporation onto glass substrates at a pressure of abo...
In the present work V2O5 xerogel thin films are deposited on quartz substrate by using a cost effect...
Optical, structural and electronic properties of vanadium pentoxide (V2O5) thin films deposited with...
Vanadium pentoxide thin films are grown on glass and borosilicate substrates by PACVD using a vanady...
Vanadium pentoxide thin films are prepared by the sol–gel route by dissolving V2O5 powder (99.5% pu...
The effect of chemical substances is reported on the structure, surface morphology, and material pro...
ABSTRACT Vanadium oxide films amorphous, nonstoichiometric and highly absorbing in the optical regio...
Vanadium pentoxide thin films have been prepared by reactive d.c. magnetron sputtering from a vanadi...
Vanadium pentoxide thin films are prepared by the sol-gel route by dissolving V$_{2}$O$_{5}$ powder...
Vanadium pentoxide thin films have been deposited on quartz substrates via sol-gel synthesis and dip...