首页> 外文期刊>Journal of Sensors >Temperature Optimized Ammonia and Ethanol Sensing Using Ce Doped Tin Oxide Thin Films in a Novel Flow Metric Gas Sensing Chamber
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Temperature Optimized Ammonia and Ethanol Sensing Using Ce Doped Tin Oxide Thin Films in a Novel Flow Metric Gas Sensing Chamber

机译:在新型流量计量气体传感室内使用Ce掺杂的氧化锡薄膜对温度进行优化的氨和乙醇传感

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A simple process of gas sensing is represented here using Ce doped tin oxide nanomaterial based thin film sensor. A novel flow metric gas chamber has been designed and utilized for gas sensing. Doping plays a vital role in enhancing the sensing properties of nanomaterials. Ce doped tin oxide was prepared by hydrothermal method and the same has been used to fabricate a thin film for sensing. The microstructure and morphology of the prepared materials were analysed by SEM, XRD, and FTIR analysis. The SEM images clearly show that doping can clamp down the growth of the large crystallites and can lead to large agglomeration spheres. Thin film gas sensors were formed from undoped pure SnO2 and Ce doped SnO2. The sensors were exposed to ammonia and ethanol gases. The responses of the sensors to different concentrations (50-500 ppm) of ammonia and ethanol at different operating temperatures (225 degrees C-500 degrees C) were studied. Results show that a good sensitivity towards ammonia was obtained with Ce doped SnO2 thin film sensor at an optimal operating temperature of 325 degrees C. The Ce doped sensor also showed good selectivity towards ammonia when compared with ethanol. Pure SnO2 showed good sensitivity with ethanol when compared with Ce doped SnO2 thin film sensor. Response time of the sensor and its stability were also studied.
机译:这里使用基于Ce掺杂的氧化锡纳米材料的薄膜传感器来表示气体感测的简单过程。已经设计了新颖的流量计量气室并将其用于气体感测。掺杂在增强纳米材料的传感特性方面起着至关重要的作用。通过水热法制备掺杂Ce的氧化锡,并且已经将其用于制造用于感测的薄膜。通过SEM,XRD和FTIR分析对所制备材料的微观结构和形态进行了分析。 SEM图像清楚地表明,掺杂可以抑制大晶粒的生长,并且可以导致大的团聚球。薄膜气体传感器由未掺杂的纯SnO2和掺杂Ce的SnO2形成。传感器暴露于氨气和乙醇气体中。研究了传感器在不同的工作温度(225摄氏度至500摄氏度)下对不同浓度(50-500 ppm)的氨和乙醇的响应。结果表明,掺Ce的SnO2薄膜传感器在325℃的最佳工作温度下对氨具有良好的敏感性。与乙醇相比,掺Ce的传感器对氨也具有良好的选择性。与掺Ce的SnO2薄膜传感器相比,纯SnO2对乙醇显示出良好的灵敏度。还研究了传感器的响应时间及其稳定性。

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