A Low Temperature Potentiometric CO2 Sensor Combined with SIO2:B2O3:LI2O:BI2O3 Composite Metal Oxide

A low temperature lithium ion based potentiometric CO 2 sensor has been developed by adding 10 mol% of SiO 2 , B 2 O 3 , Li 2 O and Bi 2 O 3 composite metal oxide mixture to (Li 2 -Ba)CO 3 sensing bicarbonate. The sensors attached with different mol% of the above oxides were tested at different oper...

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Hauptverfasser: Satyanarayana, L., Whyo Sup Noh, Gwang Ho Kim, Woon Young Lee, Jin Seong Park
Format: Tagungsbericht
Sprache:eng
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Zusammenfassung:A low temperature lithium ion based potentiometric CO 2 sensor has been developed by adding 10 mol% of SiO 2 , B 2 O 3 , Li 2 O and Bi 2 O 3 composite metal oxide mixture to (Li 2 -Ba)CO 3 sensing bicarbonate. The sensors attached with different mol% of the above oxides were tested at different operating temperatures. It is observed that the addition of SiO 2 , Li 2 O and Bi 2 O 3 in 1:2:1 ratio to the sensing bicarbonate could effectively decrease the operating temperature to 250-300degC. Further, with the introduction of boron oxide, a glassy sensing electrode phase is obtained resulting improved response and recovery. The sensor attached with 1:2:1:1 mol% of the SiO 2 :B 2 O 3 :Li 2 O:Bi 2 O 3 composite metal oxide has shown a fair Nernstian correlation and the slope indicate n equal to 2 at 300degC, where n is the number of reaction electrons involved. Remarkably, the sensor is also found stable against humidity (30-70% RH) at all the CO 2 concentrations of the test range between 500-5000 ppm. Moreover, increasing Li 2 O or decreasing B 2 O 3 content has shown a deteriorated effect on the performance of the sensor.
ISSN:1930-0395
2168-9229
DOI:10.1109/ICSENS.2007.355568