DocumentCode :
2800581
Title :
Mesoporous ceria-zirconia solid solutions as oxygen gas sensing material using high temperature hot plates
Author :
Ghom, S.A. ; Andreu, T. ; Zamani, C. ; Morante, J.R.
Author_Institution :
IREC Catalonia Inst. for Energy Res., Sant Adrià del Besòs, Spain
Volume :
2
fYear :
2012
fDate :
15-17 Oct. 2012
Firstpage :
277
Lastpage :
280
Abstract :
Mesoporous ceria and ceria-zirconia solid solutions have been synthesized following a route based on the use of silica hard template. Two different structures have been selected, one based on a three dimensional gyroidal structure, named KIT6, and other based on a two dimensional layered structure named SBA15. The presence of zirconium in the ceria sub lattice enhances the capability to transform Ce+4 to Ce+3 such as it is proved from the thermogravimetry measurements that show a large increase of the oxygen storage capacity. Ce(1-x)ZrxO2 solid solutions prepared making replicas of previously synthesized mesoporous silica have been characterized and tested under different oxygen-containing atmospheres at sensing temperatures above 500oC with oxygen variation between 1% to 100% of oxygen. This binary compound oxide present a variation of its electrical conductivity with the oxygen partial pressure that follow a potential law R=Ro[O2]1/n with n = 4 corroborating that the sensing mechanism is dominated by electronic conductivity processes related to the contribution of the Ce+3. Therefore, these high stable mesoporous materials with high active surface become a promising candidate as oxygen sensing materials for gas sensing hotplate platforms.
Keywords :
cerium compounds; electrical conductivity; gas sensors; mesoporous materials; oxygen; solid solutions; thermal analysis; zirconium compounds; Ce(1-x)ZrxO2; KIT6 structure; O2; SBA15 structure; electrical conductivity; electronic conductivity; high-temperature hot plates; mesoporous ceria-zirconia solid solutions; oxygen gas sensing material; oxygen storage capacity; silica hard template; thermogravimetry; three-dimensional gyroidal structure; two-dimensional layered structure; Atmosphere; Mesoporous materials; Solids; Temperature sensors; Zirconium; Mesoporosous; Metal Oxide; Microhotplates; Oxygen sensor;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Semiconductor Conference (CAS), 2012 International
Conference_Location :
Sinaia
ISSN :
1545-857X
Print_ISBN :
978-1-4673-0737-6
Type :
conf
DOI :
10.1109/SMICND.2012.6400786
Filename :
6400786
Link To Document :
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