Gas sensing properties of nanostructured pure and iron-doped WO3 thin films are discussed. Electron beam evaporation technique has been used to obtain nanostructured thin films of WO3 and WO3:Fe with small grain size and porosity. Atomic force microscopy has been employed to study the microstructure. High sensitivity of both films towards NO2 is observed. Doping of the tungsten oxide film with Fe decreased the material resistance by a factor of about 30 when exposed to 5 ppm NO2. The high sensitivity is attributed to an improved microstructure of the films obtained through e-beam evaporation technique, and subsequent annealing at 300oC for 1 hour
Tungsten oxides thin films were obtained by electron beam deposition and annealed in the temperature...
Thin films were obtained by r.f. reactive sputtering from a Ti0.1–W0.9 target followed by heating in...
Tungsten trioxide is a material with a variety of application areas. For example, the material is us...
Gas sensing properties of nanostructured pure and iron-doped WO(3) thin films are discussed. Electro...
This study reports on the gas sensing characteristics of Fe-doped (10 at.%) tungsten oxide thin film...
This study reports on the gas sensing characteristics of Fe-doped (10 at.%) tungsten oxide thin film...
Pure and Iron incorporated nanostructured Tungsten Oxide (WO3) thin films were investigated for gas ...
Pure and Iron incorporated nanostructured Tungsten Oxide (WO3) thin films were investigated for gas ...
Thin film nanostructured gas sensors typically operate at temperatures above 400°C, but lower temper...
Ethanol sensing performance of gas sensors made of Fe doped and Fe implanted nanostructured WO3 thin...
Ethanol sensing performance of gas sensors made of Fe doped and Fe implanted nanostructured WO3 thin...
Ethanol sensing performance of gas sensors made of Fe doped and Fe implanted nanostructured WO3 thin...
Fe-doped tungsten oxide thin films with different concentrations (0 to 2.6 at%) were synthesized on ...
Nanostructured tungsten oxide thin film based gas sensors have been developed by thermal evaporation...
Tungsten-oxide thin films are promising materials for use in highly effective gas-sensing devices fo...
Tungsten oxides thin films were obtained by electron beam deposition and annealed in the temperature...
Thin films were obtained by r.f. reactive sputtering from a Ti0.1–W0.9 target followed by heating in...
Tungsten trioxide is a material with a variety of application areas. For example, the material is us...
Gas sensing properties of nanostructured pure and iron-doped WO(3) thin films are discussed. Electro...
This study reports on the gas sensing characteristics of Fe-doped (10 at.%) tungsten oxide thin film...
This study reports on the gas sensing characteristics of Fe-doped (10 at.%) tungsten oxide thin film...
Pure and Iron incorporated nanostructured Tungsten Oxide (WO3) thin films were investigated for gas ...
Pure and Iron incorporated nanostructured Tungsten Oxide (WO3) thin films were investigated for gas ...
Thin film nanostructured gas sensors typically operate at temperatures above 400°C, but lower temper...
Ethanol sensing performance of gas sensors made of Fe doped and Fe implanted nanostructured WO3 thin...
Ethanol sensing performance of gas sensors made of Fe doped and Fe implanted nanostructured WO3 thin...
Ethanol sensing performance of gas sensors made of Fe doped and Fe implanted nanostructured WO3 thin...
Fe-doped tungsten oxide thin films with different concentrations (0 to 2.6 at%) were synthesized on ...
Nanostructured tungsten oxide thin film based gas sensors have been developed by thermal evaporation...
Tungsten-oxide thin films are promising materials for use in highly effective gas-sensing devices fo...
Tungsten oxides thin films were obtained by electron beam deposition and annealed in the temperature...
Thin films were obtained by r.f. reactive sputtering from a Ti0.1–W0.9 target followed by heating in...
Tungsten trioxide is a material with a variety of application areas. For example, the material is us...