pp. 3213-3219
S&M2682 Letter https://doi.org/10.18494/SAM.2021.3446 Published: September 24, 2021 CO Sensing Properties of La-added MgFe2O4 Powders [PDF] Kenji Obata and Shigenori Matsushima (Received June 7, 2021; Accepted July 29, 2021) Keywords: MgFe2O4, La addition, malic acid complex, CO, semiconductor gas sensor
La-added MgFe2O4 (MgFe2−xLaxO4, 0.05 ≤ x ≤ 0.20) and pure MgFe2O4 powders were prepared using a malic acid complex, and their CO sensing properties were examined in dry air in the temperature range of 300–500 °C. It was observed that when the measurement atmosphere was changed from air to CO, the electrical resistance of the MgFe2O4 sensor decreased, whereas that of the MgFe2−xLaxO4 sensor increased, indicating that the MgFe2−xLaxO4 sensor is a p-type semiconductor. It was also observed that the addition of La significantly improved the CO sensitivity of the MgFe2O4 sensor. Among the MgFe2−xLaxO4 sensors examined, the MgFe1.85La0.15O4 sensor exhibited the highest response to CO at 300 °C, and its value was 11.2 times higher than that of the pure MgFe2O4 sensor. However, the MgFe1.85La0.15O4 sensor did not exhibit a rapid response or steady-state electrical resistance in a CO atmosphere at 300 °C. Conversely, at 400 °C, the MgFe1.90La0.10O4 sensor exhibited a higher response to CO than the MgFe1.85La0.15O4 sensor and showed a quick response and a steady-state resistance. Therefore, it can be concluded that the MgFe1.90La0.10O4 sensor exhibited the best CO detection characteristics among the sensors examined.
Corresponding author: Shigenori MatsushimaThis work is licensed under a Creative Commons Attribution 4.0 International License. Cite this article Kenji Obata and Shigenori Matsushima, CO Sensing Properties of La-added MgFe2O4 Powders, Sens. Mater., Vol. 33, No. 9, 2021, p. 3213-3219. |