4.7 Article

Mixed potential type sensor based on Gd2Zr2O7 solid electrolyte and BiVO4 sensing electrode for effective detection of triethylamine

期刊

JOURNAL OF HAZARDOUS MATERIALS
卷 440, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.jhazmat.2022.129695

关键词

Triethylamine sensor; Pyrochlore-Gd2Zr2O7; BiVO4; Mixed potential; Hazardous gas detection

资金

  1. National Key Research and Development Program of China [2021YFB3201300]
  2. National Nature Science Foundation of China [62122030, 61831011, 61833006, 21902057]
  3. Program for Chang Jiang Scholars and Innovative Research Team in University [IRT-17R47]
  4. Application and Basic Research of Jilin Province [20130102010 JC]
  5. Program for JLU Science and Technology Innovative Research Team [JLUSTIRT 2017TD-07]
  6. Fundamental Research Funds for the Central Universities of JLU [JLUXKJC2021QZ05]
  7. Interdisciplinary Integration and Innovation Project of JLU [JLUXKJC2021QZ05]

向作者/读者索取更多资源

In this study, a mixed potential type TEA sensor based on a solid electrolyte and a sensing electrode was developed, demonstrating high responsiveness and good characteristics for TEA concentration detection. This sensor holds significant application value for sensitive detection of TEA in the environment.
Triethylamine (TEA), as a common and widely used industrial raw material, is extremely hazardous to the environment and human health. Therefore, the development of a portable gas-sensing technology for high-efficiency detection of TEA is of great worth for human health and environmental monitoring. In this work, a mixed potential type TEA sensor was initially developed based on pyrochlore Gd2Zr2O7 solid state electrolyte and BiVO4 sensing electrode. The sensor generates high response values of - 62.2 mV and - 134.4 mV to 5 ppm and 100 ppm TEA at 500 degrees C, respectively. The response value of the sensor displays a logarithmic linear relationship with the concentration of TEA in the range of 1-100 ppm with the sensitivity of - 50.8 mV/decade. Besides, the sensor shows good response and recovery characteristics, and the response and recovery time to 10 ppm TEA is 10 s and 89 s, respectively. Moreover, the sensor possesses good humidity resistance, reproducibility and stability. The sensing behavior of the sensor is explained by the mixed potential sensing mechanism, which is confirmed by the measurement of the polarization curves. This work provides a good supplement for TEA gas sensor, which holds important application value for the sensitive detection of TEA in the environment.

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