DocumentCode :
3117467
Title :
Gas sensors based on nanoparticle WO3 thick films
Author :
Khatko, V. ; Ionescu, R. ; Llobet, E. ; Vilanova, X. ; Brezmes, J. ; Hubalek, J. ; Malysz, K. ; Correig, X.
Author_Institution :
Univ. Rovira i Virgili, Tarragona, Spain
fYear :
2004
fDate :
24-27 Oct. 2004
Firstpage :
188
Abstract :
The gas sensing properties of chemical sensors based on nanoparticle WO3 thick films, doped with indium and bismuth, are studied. Commercial WO3 nanopowder with spherical diameter up to 33.1 nm was mixed with either InCl3 or BiCl3. The sensing films of the sensors were prepared using three different concentrations of each doping metal (1.5 wt.%, 3.0 wt.% and 5.0 wt.%, respectively). The performance of the sensors was tested for different concentrations of ammonia, nitrogen dioxide and carbon monoxide diluted in synthetic dry air. The sensors were operated at 250°C, 300°C and 350°C in order to analyze the effect of the temperature on their responses. The score plot of a principal component analysis (PCA) showed a linear separation between the three investigated gases. The response characteristics of the produced sensors are discussed on the basis of the structural properties of screen-printed nanoparticle WO3 thick films. The results obtained show the possibility to classify and quantify between different gases with nanoparticle WO3-doped gas sensors.
Keywords :
ammonia; bismuth; carbon compounds; gas sensors; indium; nanoparticles; nitrogen compounds; principal component analysis; thick films; tungsten compounds; 250 degC; 300 degC; 33.1 nm; 350 degC; BiCl3; CO; InCl3; NH3; NO2; PCA score plot; WO3:Bi; WO3:In; chemical sensors; doping metal concentration; gas sensors; nanoparticle thick films; nanopowder spherical diameter; principal component analysis; screen-printed thick films; Bismuth; Chemical sensors; Doping; Gas detectors; Gases; Indium; Principal component analysis; Sensor phenomena and characterization; Temperature sensors; Thick films;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Sensors, 2004. Proceedings of IEEE
Print_ISBN :
0-7803-8692-2
Type :
conf
DOI :
10.1109/ICSENS.2004.1426132
Filename :
1426132
Link To Document :
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