DocumentCode :
68795
Title :
Physical-Based Characterization of Noise Responses in Metal-Oxide Gas Sensors
Author :
Contaret, T. ; Seguin, Johanne ; Menini, P. ; Aguir, K.
Author_Institution :
Inst. Mater. Microelectron. Nanosci. de Provence, Univ. d´Aix-Marseille, Marseille, France
Volume :
13
Issue :
3
fYear :
2013
fDate :
Mar-13
Firstpage :
980
Lastpage :
986
Abstract :
The noise level in the gas microsensors is a tool for characterizing the electrical conduction under various gases and a means to improve selectivity. Metal-oxide gas microsensors with WO3 sensitive thin film are characterized using a low-frequency noise technique. The spectral form of the noise responses measured using our specific systems is similar for tested gases (ozone and nitrogen dioxide). We observe a clear Lorentzian behavior according to adsorption-desorption (A-D) noise theory. To identify the detected gas, a physical-based characterization model of A-D noise source is proposed and compared with the empirical flicker noise model. We show that the excess noise is due to the A-D processes on the surface of the sensors sensitive film. The Lorentzian parameters depend on the nature of the gases and the noise-level dependence with gas concentration is clearly demonstrated. This confirms the interest on noise spectroscopy to improve the selectivity of gas sensors.
Keywords :
adsorption; desorption; electrical conductivity; gas sensors; microsensors; noise measurement; thin film sensors; tungsten compounds; A-D noise theory; Lorentzian parameter; WO3; adsorption-desorption noise theory; electrical conduction; gas concentration; metal-oxide gas microsensor; noise responses spectral measurement; noise spectroscopy; physical-based characterization model; sensitive sensor thin film; Current measurement; Fluctuations; Gas detectors; Gases; Noise; Noise measurement; Adsorption-desorption noise; low-frequency noise; metal-oxide gas sensors; noise spectroscopy;
fLanguage :
English
Journal_Title :
Sensors Journal, IEEE
Publisher :
ieee
ISSN :
1530-437X
Type :
jour
DOI :
10.1109/JSEN.2012.2227707
Filename :
6353875
Link To Document :
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