4.7 Article

High performance solid electrolyte-based NO2 sensor based on Co3V2O8 derived from metal-organic framework

期刊

SENSORS AND ACTUATORS B-CHEMICAL
卷 302, 期 -, 页码 -

出版社

ELSEVIER SCIENCE SA
DOI: 10.1016/j.snb.2019.127173

关键词

Metal-organic framework; Co3V2O8; La10Si5.5Al0.5O26.75; Solid electrolyte-based NO2 sensor

资金

  1. Natural Science Foundation of China [51772097]
  2. Hebei Natural Science Fund for Distinguished Young Scholar [E2017209079]
  3. Foundation of Education Department of Hebei Province [QN2019086]

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In this paper, a well-performing solid electrolyte-based NO2 sensor was initially assembled by using Co3V2O8 derived from Co-V-MOF as sensitive electrode material and La10Si5.5Al0.5O26.75 as solid electrolyte. The sensor displayed excellent sensing behaviors towards NO2 by comparison with the sensor using Co3V2O8 fabricated from classical solid state method as electrode material at 575 degrees C. The sensor exhibited good response-recovery characteristics to different NO2 concentrations, with a sensitivity of 78.2 mV/decade in the NO2 concentration range of 50-500 ppm. The sensor also showed good repeatability, strong anti-interference ability to CH4, CO2, O-2, NO and CO, as well as good long-term stability for 30 test days at 575 degrees C. In addition, the sensor had a low cross-sensitivity to water vapor in the relative humidity of 20%-98% at 575 degrees C. The good sensing behaviors could be attributed to the synergistic effect of highly disperse Co/V catalysis sites from Co-V-MOF as well as the larger three-phase boundary of Co3V2O8/La10Si5.5Al0.5O26.75/NO2 The sensing mechanism of the sensor was investigated and it followed the mixed-potential model.

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