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煆燒溫度對8YSZ-WO3氨傳感器性能的影響

Effect of Firing Temperature on Sensing Performance of 8YSZ-WO3 Ammonia Sensor

  • 摘要: 利用固體電解質物質的量濃度為8%的Y2O3摻雜的ZrO2(8YSZ)和敏感材料WO3製備了片式混合電勢型NH3傳感器(簡稱8YSZ-WO3傳感器),分別在600、650💁🏽‍♀️、700和750 ℃溫度下進行煆燒🤌🏿🈶,獲得相應的敏感電極🦹🏽🛕,探討了不同煆燒溫度下敏感電極微觀結構以及傳感器性能的變化,並對傳感器的工作機理進行了研究分析。當煆燒溫度為700 ℃時,敏感材料晶粒間形成貫通的孔道,器件性能最佳,其中在測試溫度550 ℃下,該傳感器對250×10-6 NH3的響應信號大小為59.35 mV,靈敏度為52.65 mV/decade,並且該傳感器遵循混合電動勢理論👅。

     

    Abstract: A mixed-potential NH3 sensor based on an 8 mol% yttria-stabilized zirconia (8YSZ) plate and a WO3 electrode (8YSZ-WO3 sensor) was fabricated and studied. The effects of electrode calcination temperature on the performance of the sensor were investigated. The microstructures of the electrode and the change of the sensor performance were investigated at calcination temperatures of 600, 650, 700 and 750 ℃ respetively. And the working mechanism of the sensor was analyzed. It was found that the sensor had the best performance when the calcination temperature was 700 ℃, and the response value of the sensor to 250×10-6 NH3 was 59.35 mV at 550 ℃ and the sensitivity was 52.65 mV/decade. Furthermore, the sensor was identified to be consistent with the mixed-potential model.

     

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