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Article Dans Une Revue Sensors Année : 2017

Co3O4 as p-Type Material for CO Sensing in Humid Air

Résumé

Nanocrystalline cobalt oxide Co3O4 has been prepared by precipitation and subsequent thermal decomposition of a carbonate precursor, and has been characterized in detail using XRD, transmission electron microscopy, and FTIR spectroscopy. The sensory characteristics of the material towards carbon monoxide in the concentration range 6.7-20 ppm have been examined in both dry and humid air. A sensor signal is achieved in dry air at sufficiently low temperatures T = 80-120 degrees C, but the increase in relative humidity results in the disappearance of sensor signal in this temperature range. At temperatures above 200 degrees C the inversion of the sensor signal in dry air was observed. In the temperature interval 180-200 degrees C the sensor signal toward CO is nearly the same at 0, 20 and 60% r.h. The obtained results are discussed in relation with the specific features of the adsorption of CO, oxygen, and water molecules on the surface of Co3O4. The independence of the sensor signal from the air humidity combined with a sufficiently short response time at a moderate operating temperature makes Co3O4 a very promising material for CO detection in conditions of variable humidity.

Dates et versions

hal-02175396 , version 1 (05-07-2019)

Identifiants

Citer

Svetlana Vladimirova, Valeriy Krivetskiy, Marina Rumyantseva, Alexander Gaskov, Natalia Mordvinova, et al.. Co3O4 as p-Type Material for CO Sensing in Humid Air. Sensors, 2017, 17 (10), pp.2216. ⟨10.3390/s17102216⟩. ⟨hal-02175396⟩
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