Anatase TiO2 films were synthesized on glass substrates using a plasma ion assisted deposition (PIAD) without external heating or subsequent annealing. The low temperature PIAD process produced crystalline anatase films with increased hardness and Young’s modulus, reduced film surface roughness and improved optical properties compared with those deposited without ion assistance, as well as a possibility to be applied to a wider range of substrates. Photocatalytic characterization showed that significant increases in photocatalytic stability and efficiency were achieved after using the PIAD process, although surface roughness and porosity of the films decreased slightly
Thin films of titanium oxide (TiO2) are synthesized at room temperature by the post-discharge of an ...
In this study, TiO2 films are easily deposited in a single-step process from titanium tetraisopropox...
International audienceTiO2 thin films were deposited under atmospheric pressure by MOCVD in the temp...
There are numerous technical applications of TiO2: it is used in paints, in printing inks, in paper ...
Titanium dioxide (TiO2) thin films were prepared on Galvanized Iron (Cl) substrate by plasma-enhance...
Pure and ion doped TiO(2) thin films were prepared by sol-gel dip coating process on metallic and no...
Titanium dioxide thin film was deposited on glass using in-house built Atmospheric Pressure Chemical...
International audienceThe nanostructure and photocatalytic properties of TiO2 thin films deposited b...
Anatase TiO2 films were successfully synthesized by a modified sol-gel method wherein peroxo titanic...
International audiencefilms with enhanced photocatalytic activity in both UV and visible wavelength ...
International audiencePhotocatalytic properties of semiconductor materials, studied now for decades,...
A novel CVD film of titanium(IV) oxide has been prepared on glass, via the reaction of titanium(IV) ...
TiO2 is a widely studied material due to its optical and photocatalytic properties and its hydrophil...
Titanium dioxide thin films were deposited by the reactive ion-assisted sputtering method from titan...
International audienceAn original low-temperature atmospheric pressure plasma-enhanced chemical vapo...
Thin films of titanium oxide (TiO2) are synthesized at room temperature by the post-discharge of an ...
In this study, TiO2 films are easily deposited in a single-step process from titanium tetraisopropox...
International audienceTiO2 thin films were deposited under atmospheric pressure by MOCVD in the temp...
There are numerous technical applications of TiO2: it is used in paints, in printing inks, in paper ...
Titanium dioxide (TiO2) thin films were prepared on Galvanized Iron (Cl) substrate by plasma-enhance...
Pure and ion doped TiO(2) thin films were prepared by sol-gel dip coating process on metallic and no...
Titanium dioxide thin film was deposited on glass using in-house built Atmospheric Pressure Chemical...
International audienceThe nanostructure and photocatalytic properties of TiO2 thin films deposited b...
Anatase TiO2 films were successfully synthesized by a modified sol-gel method wherein peroxo titanic...
International audiencefilms with enhanced photocatalytic activity in both UV and visible wavelength ...
International audiencePhotocatalytic properties of semiconductor materials, studied now for decades,...
A novel CVD film of titanium(IV) oxide has been prepared on glass, via the reaction of titanium(IV) ...
TiO2 is a widely studied material due to its optical and photocatalytic properties and its hydrophil...
Titanium dioxide thin films were deposited by the reactive ion-assisted sputtering method from titan...
International audienceAn original low-temperature atmospheric pressure plasma-enhanced chemical vapo...
Thin films of titanium oxide (TiO2) are synthesized at room temperature by the post-discharge of an ...
In this study, TiO2 films are easily deposited in a single-step process from titanium tetraisopropox...
International audienceTiO2 thin films were deposited under atmospheric pressure by MOCVD in the temp...