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IVANOV, P., LLOBET, E., VILANOVA, X., STANKOVA, M., BREZMES, J., CORREIG, X., HUBÁLEK, J., MALYSZ, K., GRACIA, I., CANÉ, C.
Original Title
Screen-printed nano-grain WO3 films for micro hotplate gas sensors
Type
conference paper
Language
English
Original Abstract
By means of an adapted screen-printing technique, sensitive layers of nanopowder tungsten trioxide were deposited on silicon micromachined substrates. The thickness of the sensing layers was 5 um and particle size was around 50 nm. Each chip contains four thin silicon nitride membranes, in the center of which a polysilicon heating resistor, insulating layers, platinum electrodes and sensitive layer are stacked. Unlike in previously reported works, the technological procedure reported here allows for depositing the sensing layers before the membranes have been etched. This avoids damaging the membranes during film deposition, which leads to gas sensor microsystems with an excellent fabrication yield [1]. The deposition method overcomes disadvantages such as low porosity and low surface area, generally associated to chemical vapor deposition or sputtering methods, and keeps power consumption low (80 mW for a working temperature of 480oC). As an example, the sensor response to ammonia, NO2, ethanol, CO and methane was studied. The sensors were very sensitive to NO2 vapors. The influences of the sensor operating temperature and electrode geometry were also investigated.
Keywords
micromachined gas sensor, screen-printing, nanopowder,tungsten trioxide.
Authors
RIV year
2003
Released
24. 10. 2003
Publisher
The Printing House, Stoughton, USA
Location
Toronto
ISBN
0-7803-8134-3
Book
IEEE Sensors 2003,Second IEEE International Conference on Sensors
Pages from
358
Pages to
363
Pages count
6
BibTex
@inproceedings{BUT13190, author="Peter {Ivanov} and Eduard {Llobet} and Xavier {Vilanova} and Mariana {Stankova} and Jesús {Brezmes} and Xavier {Correig} and Jaromír {Hubálek} and Karel {Malysz} and I. {Gracia} and Carlas {Cané}", title="Screen-printed nano-grain WO3 films for micro hotplate gas sensors", booktitle="IEEE Sensors 2003,Second IEEE International Conference on Sensors", year="2003", pages="6", publisher="The Printing House, Stoughton, USA", address="Toronto", isbn="0-7803-8134-3" }