International audienceTungsten oxide WO3 thin films are prepared by DC reactive sputtering. The GLancing Angle Deposition method (GLAD) is implemented to produce inclined columnar structures. The incident angle α between the particle flux and the normal to the substrate is systematically changed from 0 to 80°. For incident angles higher than 50°, a typical inclined columnar architecture is clearly produced with column angles β well correlated with the incident angle α according to conventional relationships determined from geometrical models. For each film, the refractive index and extinction coefficient are calculated from optical transmittance spectra of the films measured in the visible region. The refractive index at 589 nm drops from n...
Transition metal oxides represent a novel class of compounds which have attracted a considerable int...
Nanostructured tungsten trioxide films were prepared by reactive dc magnetron sputteringat different...
Though tungsten trioxide (WO3) in bulk, nanosphere, and thin film samples has been extensively studi...
International audienceOptical properties (refractive index and birefringence) of WO3 thin films exhi...
Cette thèse participe à l'étude générale et à la compréhension des relations structure- propriétés o...
In this paper we report the synthesis of WO$_{3}$ thin films and investigate the effect of the str...
International audienceTungsten oxide WO3 thin films were prepared by dc reactive magnetron sputterin...
Using a chemical spray technique, an n-type WO3 polycrystalline thin film was prepared with optimizi...
We have grown epitaxial WO3 films on various single-crystal substrates using radio frequency magnetr...
AbstractTungsten oxide films (WO3) were deposited on ITO/glass substrates with tungsten target in UH...
Highly ordered ZnO-doped WO3 thin films with good crystalline quality are prepared using radio frequ...
Among transition metal oxides, tungsten trioxide is one of the most interesting materials exhibiting...
AbstractThin films of WO3 were deposited on quartz substrates by the RF magnetron sputtering. Differ...
Tungsten trioxide (WO3) is one of the best transparent metal oxides for advanced technological appli...
AbstractNanostructured WO3 films are prepared on p-Si substrate by facing target sputtering (FTS) me...
Transition metal oxides represent a novel class of compounds which have attracted a considerable int...
Nanostructured tungsten trioxide films were prepared by reactive dc magnetron sputteringat different...
Though tungsten trioxide (WO3) in bulk, nanosphere, and thin film samples has been extensively studi...
International audienceOptical properties (refractive index and birefringence) of WO3 thin films exhi...
Cette thèse participe à l'étude générale et à la compréhension des relations structure- propriétés o...
In this paper we report the synthesis of WO$_{3}$ thin films and investigate the effect of the str...
International audienceTungsten oxide WO3 thin films were prepared by dc reactive magnetron sputterin...
Using a chemical spray technique, an n-type WO3 polycrystalline thin film was prepared with optimizi...
We have grown epitaxial WO3 films on various single-crystal substrates using radio frequency magnetr...
AbstractTungsten oxide films (WO3) were deposited on ITO/glass substrates with tungsten target in UH...
Highly ordered ZnO-doped WO3 thin films with good crystalline quality are prepared using radio frequ...
Among transition metal oxides, tungsten trioxide is one of the most interesting materials exhibiting...
AbstractThin films of WO3 were deposited on quartz substrates by the RF magnetron sputtering. Differ...
Tungsten trioxide (WO3) is one of the best transparent metal oxides for advanced technological appli...
AbstractNanostructured WO3 films are prepared on p-Si substrate by facing target sputtering (FTS) me...
Transition metal oxides represent a novel class of compounds which have attracted a considerable int...
Nanostructured tungsten trioxide films were prepared by reactive dc magnetron sputteringat different...
Though tungsten trioxide (WO3) in bulk, nanosphere, and thin film samples has been extensively studi...