Low temperature acetone sensor based on Sol-gel grown nano TiO2 thin film

B. Bhowmik, K. Dutta, N. Banerjee, A. Hazra, P. Bhattacharyya
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引用次数: 5

Abstract

Thin film Sol-gel grown nano TiO2 based resistive sensor was developed to detect acetone at low temperature. Structural characterization were carried out using XRD, FESEM and AFM to ensure the crystalline, grain size and surface roughness of the TiO2 thin film and anatase phase TiO2 having particle size in order of 10 to 20 nm with average roughness 100nm. The thin film with catalytic Pd contact were investigated for acetone vapor sensing in the range of 150-250°C for acetone concentration 500-1500 ppm with N2 as carrier gas. The maximum response 178 % approximately was obtained at the optimum temperature of 150oC for 500 ppm acetone. The dynamic range of the sensor was also found to be quite appreciable (500-1500 ppm). The response and recovery time 42s and 44s respectively was recorded at 500 ppm at optimum temperature. The short term stability study indicated that the sensor is appreciably stable with a nominal baseline drift of ±6 %.
基于溶胶-凝胶生长纳米TiO2薄膜的低温丙酮传感器
研制了溶胶-凝胶生长纳米TiO2薄膜电阻式低温丙酮检测传感器。采用XRD、FESEM和AFM对TiO2薄膜和锐钛矿相进行结构表征,确保TiO2薄膜和锐钛矿相的晶粒尺寸、晶粒尺寸和表面粗糙度在10 ~ 20 nm之间,平均粗糙度为100nm。研究了以氮气为载气,丙酮浓度为500 ~ 1500 ppm,在150 ~ 250℃范围内催化钯接触的丙酮气敏薄膜。当丙酮浓度为500ppm时,最适温度为150oC,响应率约为178%。传感器的动态范围也被发现是相当可观的(500-1500 ppm)。在最佳温度为500ppm时,反应时间和恢复时间分别为42s和44s。短期稳定性研究表明,传感器相当稳定,标称基线漂移为±6%。
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