Palladium enriched tungsten trioxide thin films were prepared by spraying solution of ammonium tungstate as a precursor on glass substrates using spray pyrolysis deposition technique. Palladium chloride as a precursor for palladium was introduced in the precursor solution during refluxing process before deposition. The catalyst Pd with different concentrations was introduced on series of WO3 films. X-ray diffractometry (XRD), scanning electron microscopy (SEM), transmission electron microscopy (TEM) and Raman spectroscopy were applied to analyze structure and morphology of the deposited thin films. The effect of Pd enrichment on the microstructure, electrical and gas sensing properties of the as-synthesized WO3 thin films was studied. Varia...
This paper presents the electrostatic spray deposition of tungsten oxide (WO3) films for the detecti...
Pure and Iron incorporated nanostructured Tungsten Oxide (WO3) thin films were investigated for gas ...
Semiconducting metal oxide based gas sensors usually operate in the temperature range 200-500 °C. In...
The work investigated in this paper focused on the fabrication of WO3 films by the spray pyrolysis t...
The work investigated in this paper focused on the fabrication of WO3 films by the spray pyrolysis t...
Tungsten trioxide is a material with a variety of application areas. For example, the material is us...
Layered nanostructures of tungsten trioxide WO3-x about 62 nm thick, with a very thin film of pallad...
AbstractWO3, activated by 1% Pt or 1% Pd, was deposited by radio frequency co-sputtering process. Th...
The gasochromic performance of tungsten oxide (W03) films coated with 25 A catalytic palladium (Pd) ...
Abstract. A simple and inexpensive ultrasonic spray pyrolysis (USP) technique has been employed to d...
Tungsten oxide (WO3) thin films for gas sensing have been successfully deposited using reactive dire...
This study investigates the sensitivity of a gas sensor to volatile organic compounds (VOCs) at vari...
Tungsten trioxide (WO3) thin films were grown by pulsed laser deposition (PLD) with the aim to be ap...
Tungsten oxide (WO3) thin films for gas sensing have been successfully deposited using reactive dire...
Tungsten oxides thin films were obtained by electron beam deposition and annealed in the temperature...
This paper presents the electrostatic spray deposition of tungsten oxide (WO3) films for the detecti...
Pure and Iron incorporated nanostructured Tungsten Oxide (WO3) thin films were investigated for gas ...
Semiconducting metal oxide based gas sensors usually operate in the temperature range 200-500 °C. In...
The work investigated in this paper focused on the fabrication of WO3 films by the spray pyrolysis t...
The work investigated in this paper focused on the fabrication of WO3 films by the spray pyrolysis t...
Tungsten trioxide is a material with a variety of application areas. For example, the material is us...
Layered nanostructures of tungsten trioxide WO3-x about 62 nm thick, with a very thin film of pallad...
AbstractWO3, activated by 1% Pt or 1% Pd, was deposited by radio frequency co-sputtering process. Th...
The gasochromic performance of tungsten oxide (W03) films coated with 25 A catalytic palladium (Pd) ...
Abstract. A simple and inexpensive ultrasonic spray pyrolysis (USP) technique has been employed to d...
Tungsten oxide (WO3) thin films for gas sensing have been successfully deposited using reactive dire...
This study investigates the sensitivity of a gas sensor to volatile organic compounds (VOCs) at vari...
Tungsten trioxide (WO3) thin films were grown by pulsed laser deposition (PLD) with the aim to be ap...
Tungsten oxide (WO3) thin films for gas sensing have been successfully deposited using reactive dire...
Tungsten oxides thin films were obtained by electron beam deposition and annealed in the temperature...
This paper presents the electrostatic spray deposition of tungsten oxide (WO3) films for the detecti...
Pure and Iron incorporated nanostructured Tungsten Oxide (WO3) thin films were investigated for gas ...
Semiconducting metal oxide based gas sensors usually operate in the temperature range 200-500 °C. In...