Title :
Gas sensors micro-array for air quality monitoring based on pure and doped SnO/sub 2/ thick sensing films
Author :
Ivanov, P. ; Llobet, E. ; Vilanova, X. ; Hubalek, J. ; Gracia, I. ; Cané, C. ; Correig, X.
Author_Institution :
Dept. Electron. Eng., Rovira & Virgili Univ., Tarragona, Spain
Abstract :
Among the many physical and chemical strategies used to make air pollution gas sensors for CO and NO 2 monitoring, those employing multisensor arrays offer excellent selectivity, long lifetimes, low drift and low costs of manufacture. Targeting the two gases CO and N O 2, new thick film sensor matrix was fabricated using the screen printing technology. With this purpose, undoped and noble metal-doped thick film SnO 2 sensing layers deposited by screen printing technique upon micromachined Si substrate have been characterised. The main objective in this study has been the challenging perspective to define a sensing layer type which allows a high quality monitoring and easy discrimination of low concentration of NO 2 by an interfering species like CO, both present in the outdoor air. The experimental results reported in this work have shown that combining the sensor technology with a suitable catalytic element in the present case, gold, palladium and platinum, low concentration of NO 2 can be revealed with a sufficient selectivity towards CO.
Keywords :
air pollution measurement; atmospheric measuring apparatus; carbon compounds; gas sensors; gold; microsensors; nitrogen compounds; palladium; platinum; silicon; thick film devices; tin compounds; Au; CO; NO/sub 2/; Pd; Pt; SnO/sub 2/; air pollution gas sensors; air quality monitoring; gas sensors microarray; gold; multisensor arrays; palladium; platinum; screen printing technology; sensor matrix; thick sensing films; Air pollution; Chemical sensors; Costs; Gas detectors; Gases; Manufacturing; Monitoring; Printing; Sensor arrays; Thick film sensors;
Conference_Titel :
Electron Devices, 2005 Spanish Conference on
Conference_Location :
Tarragona
Print_ISBN :
0-7803-8810-0
DOI :
10.1109/SCED.2005.1504510