DocumentCode :
2704782
Title :
Mixed In/Fe oxide thin films for ppb-level ozone sensing
Author :
Baratto, C. ; Ferroni, M. ; Benedetti, A. ; Faglia, G. ; Sberveglieri, G.
Author_Institution :
Dept. of Chem. & Phys., Brescia Univ., Italy
Volume :
2
fYear :
2003
fDate :
22-24 Oct. 2003
Firstpage :
932
Abstract :
For the purpose of ozone detection, thin-film gas-sensor based on mixed In/Fe oxides were developed by sputtering and thermal treatment according to the RGTO technique. Preparation of the film was optimized by varying the In-Fe ratio in the sputtering target and electron microscopy analyses were carried out in order to correlate the microstructural features of the nanosized layers with the electrical properties. The nanostructured films exhibit homogeneous morphology and high degree of porosity. Annealing resulted in higher stoichiometry but did not promoted exaggerated coarsening for the grains. A mixed In2O3 and Fe2O3 composition was determined by electron diffraction. The effect of iron is to decrease working temperature for optimal ozone detection down to 250°C. The sensing layers with higher iron content are capable to detect 30 ppb of O3 with a relative response ΔG/G of 3.5. Response towards CO, NO2, ethanol and methanol was also investigated. A good response towards 0.1 ppm of NO2 was observed at 250°C. Also in this case the best performances are observed for the film with higher iron content.
Keywords :
carbon compounds; gas sensors; indium compounds; iron compounds; nanostructured materials; nitrogen compounds; organic compounds; ozone; porosity; sputtered coatings; transmission electron microscopy; 250 degC; CO; In2O3-Fe2O3; NO2; O3; O3 detection; annealing; electrical properties; electron diffraction; electron microscopy analyses; ethanol; high degree of porosity; homogeneous morphology; methanol; mixed In/Fe oxide thin films; nanosized layers; ppb-level ozone sensing; sputtering; thermal treatment; thin-film gas-sensor; Annealing; Diffraction; Electron microscopy; Ethanol; Iron; Methanol; Morphology; Sputtering; Temperature sensors; Transistors;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Sensors, 2003. Proceedings of IEEE
Print_ISBN :
0-7803-8133-5
Type :
conf
DOI :
10.1109/ICSENS.2003.1279079
Filename :
1279079
Link To Document :
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