In this work, 0%, 0.5%, 1%, and 2% Cu-doped WO3 nanoparticles were synthesized via a polyol method. The as-synthesized materials were characterized by x-ray diffraction, scanning electron microscopy (SEM), electron paramagnetic resonance (EPR), x-ray photoelectron spectroscopy (XPS), and UV-Vis photochromic activity. A bond valence model was adopted to explain the relationship between the lattice parameter and Cu percentage. Additionally, two films (1% Cu-doped and un-doped samples) obtained by dip-coating from a well-dispersed suspension were optically investigated using ex situ and in situ UV-Vis spectrometry; coloring/bleaching kinetics were thoroughly studied. The Cu-doped WO3 film was found to have a high-quality bleaching mechanism (f...
Successful preparation of tungsten oxide thin films on paper substrate, using a novel room temperatu...
Electrochromic tungsten trioxide (WO3) thin films are attracting renewed attention as transmittance-...
Tungsten oxide (WO3) thin films were prepared by a simple, economical, chemical bath deposition meth...
WO3−x (oxygen deficient tungsten oxide) thin films and WO3−x/Ta2O5 (tantalum oxide) composite films ...
International audienceTungsten trioxide (WO3) is well-known as one of the most promising chromogenic...
AbstractTransparent WO3 films were successively prepared by sol–gel casting method. Their optical an...
Metal-doping is an effective method to adjust the physical and chemical properties of semiconductor ...
Tungsten oxide (WO3) is one of the most promising materials for electrochromic devices. WO3 thin fil...
Here we report the superiority of WO3 thin films prepared by successive dip coating in electrochromi...
Tungsten oxide (WO3) is an n-type semiconductor with a wide range of transparent electronic applicat...
WO3 thin films were grown onto the glass and fluorine-doped tin oxide-coated glass substrates using ...
Herein, vertically aligned Al:WO3 nanoplate arrays were directly grown on ITO glass by a facile elec...
Tungsten oxide (WO3) thin films with various thicknesses of approximately 36, 72, 108, and 180 nm we...
Undoped and In-doped nanocrystalline tungsten oxide (WO3) thin films were prepared by chemical spray...
Electrochromism is the phenomena of inducing a reversible optical change (colouring and bleaching) i...
Successful preparation of tungsten oxide thin films on paper substrate, using a novel room temperatu...
Electrochromic tungsten trioxide (WO3) thin films are attracting renewed attention as transmittance-...
Tungsten oxide (WO3) thin films were prepared by a simple, economical, chemical bath deposition meth...
WO3−x (oxygen deficient tungsten oxide) thin films and WO3−x/Ta2O5 (tantalum oxide) composite films ...
International audienceTungsten trioxide (WO3) is well-known as one of the most promising chromogenic...
AbstractTransparent WO3 films were successively prepared by sol–gel casting method. Their optical an...
Metal-doping is an effective method to adjust the physical and chemical properties of semiconductor ...
Tungsten oxide (WO3) is one of the most promising materials for electrochromic devices. WO3 thin fil...
Here we report the superiority of WO3 thin films prepared by successive dip coating in electrochromi...
Tungsten oxide (WO3) is an n-type semiconductor with a wide range of transparent electronic applicat...
WO3 thin films were grown onto the glass and fluorine-doped tin oxide-coated glass substrates using ...
Herein, vertically aligned Al:WO3 nanoplate arrays were directly grown on ITO glass by a facile elec...
Tungsten oxide (WO3) thin films with various thicknesses of approximately 36, 72, 108, and 180 nm we...
Undoped and In-doped nanocrystalline tungsten oxide (WO3) thin films were prepared by chemical spray...
Electrochromism is the phenomena of inducing a reversible optical change (colouring and bleaching) i...
Successful preparation of tungsten oxide thin films on paper substrate, using a novel room temperatu...
Electrochromic tungsten trioxide (WO3) thin films are attracting renewed attention as transmittance-...
Tungsten oxide (WO3) thin films were prepared by a simple, economical, chemical bath deposition meth...