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Mixed-potential type NO2 sensor using CuCr2O4-CuO composites
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College of Chemical Engineering,North China University of Science and Technology,,College of Chemical Engineering,North China University of Science and Technology,College of Chemical Engineering,North China University of Science and Technology,College of Chemical Engineering,North China University of Science and Technology

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TP212.2

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    Abstract:

    A novel amperometric-type NO2 sensor based on 6 wt%Y2O3- La10Si6O27 (LSO) and CuCr2O4-CuO composites sensing electrode was fabricated. CuCr2O4-CuO composites were prepared by ammonium hydrocarbonate precipitation method. And then these particles were dispersed in LSO porous layer by Screen printing method to preparation the sensor. X-ray diffraction (XRD) and scanning electron microscope (SEM) were used to characterize the phase composition and morphology of the samples. The phase composition of CuCr2O4-CuO composites characterized by XRD were CuCr2O4 and CuO, and the morphology characterized by SEM were irregular sheets with 200-300 nm. These particles is evenly distributed in the porous layer with a thickness of about 20 μm. The polarization curves and the AC impedance results showed that the sensor is a mixed-potential type. The sensor exhibited well response-recovery characteristics to NO2. The response signal was almost linear to NO2 concentration in the range between 25 ppm and 300 ppm at 600- 700 °C. The sensitivity increased and reached 19.3 mV/dec. at 600°C. The response potential of the sensor is slightly affected by co-existant NH3, CH4, H2 and CO2. However, within the concentration range of 5-21%, the potential value of the sensor decreases linearly with the increase of oxygen concentration. The actual application can be calibrated with another O2 sensor.

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[Li Yuehua, Hou huanhuan, Han Wen, Dai Lei, Wang Ling. Mixed-potential type NO2 sensor using CuCr2O4-CuO composites[J]. Rare Metal Materials and Engineering,2018,47(S1):435~439.]
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History
  • Received:July 19,2017
  • Revised:February 13,2018
  • Adopted:February 22,2018
  • Online: October 22,2018
  • Published: