Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
7140073 | Sensors and Actuators B: Chemical | 2018 | 40 Pages |
Abstract
Mixed-potential type (MPT) NO2 sensors equipped with CeO2-B2O3 (Bâ¯=â¯Fe, Cr) sensing electrode (SE) and yttria-stabilized-zirconia (YSZ-8Y) electrolyte are fabricated. The new ceria-based nanocomposites synthesized by sol-gel method improve the NO2 gas sensing properties significantly. The highest response to NO2 is found for the sensor using CeO2-Cr2O3 binary oxides with 1:1 Ce/Cr sintered at 800â¯Â°C, resulting in 100â¯mV to 100â¯ppm with relatively fast response and recovery times at the working temperature of 450â¯Â°C. A linear relation is obtained for the sensor with configuration of Pt/YSZ/CeO2-B2O3 (Bâ¯=â¯Fe, Cr) between potential difference (ÎV) and the logarithm of the concentration of NO2 from 5 to 200â¯ppm, which the sensitivities are 40.5 and 74.0â¯mV/decade, respectively. Additionally, the sensor's reproducibility, selectivity, cross-sensitivity and stability are investigated in details. Furthermore, the mixed potential sensing mechanism and catalytic activity to NO2 for ceria-based nanocomposites are also discussed.
Related Topics
Physical Sciences and Engineering
Chemistry
Analytical Chemistry
Authors
Rui You, Tianshuang Wang, Hongyan Yu, Jing Wang, Geyu Lu, Fangmeng Liu, Tianhong Cui,