WO3 thin films were grown onto the glass and fluorine-doped tin oxide-coated glass substrates using chemical spray pyrolysis technique. X-ray diffraction analyses reveal that all the films possess orthorhombic phase of WO3. Morphologies of the films have been found to vary with Mo-doping concentrations. Three-dimensional atomic force micrographs reveal that the 5 at% Mo-doped film has the maximum image surface area and is optimal for improved electrochromic performance. Cyclic voltammetry studies show that the cathodic and anodic peak current densities have the highest values for the 5 at% Mo-doped WO3 film. Relative to the undoped film, the change from coloured to bleached state is faster for the 5 at% Mo-doped WO3 film. Considering the re...
Thin films of MoO3 and mixed Mo/W oxides were obtained by atmospheric pressure CVD, implying pyrolyt...
Tungsten oxide (WO3) thin films were prepared by a simple, economical, chemical bath deposition meth...
Tungsten trioxide $\mathrm{WO}_3$ thin films have been deposited on glass substrates by spray pyroly...
Thin films of WO3 were prepared by surfactant assisted spray pyrolysis on F-doped SnO2 (FTO) conduct...
Metal-doping is an effective method to adjust the physical and chemical properties of semiconductor ...
The n-type tungsten oxide (WO3) polycrystalline thin films have been prepared at an optimized substr...
Electrochromic properties of transition metal oxides have extensively been investigated over the las...
International audienceIn this paper we compare the optical and electrical properties of the WO3 thin...
The precursor containing peroxotungstic acid (PTA) was prepared by the reaction of tungstic acid wit...
V20 s etc.) have recently received much attention owing to their interesting electrical, optical and...
Summarization: We present a study of electrochromic (EC) devices based on WO3 thin films with textur...
Herein, vertically aligned Al:WO3 nanoplate arrays were directly grown on ITO glass by a facile elec...
Tungsten oxide (WO3) thin films were prepared by a simple, economical, chemical bath deposition meth...
Electrochromic tungsten trioxide (WO3) thin films are attracting renewed attention as transmittance-...
Tungsten oxide (WO3) is an n-type semiconductor with a wide range of transparent electronic applicat...
Thin films of MoO3 and mixed Mo/W oxides were obtained by atmospheric pressure CVD, implying pyrolyt...
Tungsten oxide (WO3) thin films were prepared by a simple, economical, chemical bath deposition meth...
Tungsten trioxide $\mathrm{WO}_3$ thin films have been deposited on glass substrates by spray pyroly...
Thin films of WO3 were prepared by surfactant assisted spray pyrolysis on F-doped SnO2 (FTO) conduct...
Metal-doping is an effective method to adjust the physical and chemical properties of semiconductor ...
The n-type tungsten oxide (WO3) polycrystalline thin films have been prepared at an optimized substr...
Electrochromic properties of transition metal oxides have extensively been investigated over the las...
International audienceIn this paper we compare the optical and electrical properties of the WO3 thin...
The precursor containing peroxotungstic acid (PTA) was prepared by the reaction of tungstic acid wit...
V20 s etc.) have recently received much attention owing to their interesting electrical, optical and...
Summarization: We present a study of electrochromic (EC) devices based on WO3 thin films with textur...
Herein, vertically aligned Al:WO3 nanoplate arrays were directly grown on ITO glass by a facile elec...
Tungsten oxide (WO3) thin films were prepared by a simple, economical, chemical bath deposition meth...
Electrochromic tungsten trioxide (WO3) thin films are attracting renewed attention as transmittance-...
Tungsten oxide (WO3) is an n-type semiconductor with a wide range of transparent electronic applicat...
Thin films of MoO3 and mixed Mo/W oxides were obtained by atmospheric pressure CVD, implying pyrolyt...
Tungsten oxide (WO3) thin films were prepared by a simple, economical, chemical bath deposition meth...
Tungsten trioxide $\mathrm{WO}_3$ thin films have been deposited on glass substrates by spray pyroly...