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Alcohol sensing performance of ZnO nano-flower based resistive sensor: Comparative study

机译:ZnO纳米花基电阻传感器的酒精感测性能:对比研究

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A comparative study on alcohol sensing performance of ZnO nano-flowers is reported in this paper. Chemical bath deposition technique was employed to develop the nanostructure on a sol-gel grown seed layer deposited on SiOn2nsubstrate using Zinc Acetate Dihydrate and Hexamethylenetetramine (HMT) precursors in DI water in the mass ratio of 1:3. After structural (XRD, FESEM) characterizations, the sensor was tested for sensing alcohol (methanol and ethanol) vapor at 250°C in dynamic range of 100 to 700 ppm. The sensor showed high response magnitude ~85.45% with ~9.6 sec response time at methanol vapor but while obtaining ~54.90% response magnitude at ethanol vapor with very low response time 2.83 sec in 700 ppm at a temperature of 250°C.
机译:本文报道了ZnO纳米花对酒精感测性能的比较研究。采用化学浴沉积技术在沉积在SiOn 2 n基质。在进行结构(XRD,FESEM)表征后,对传感器进行了感测,以在250°C和100至700 ppm的动态范围内感测酒精(甲醇和乙醇)蒸气。该传感器在甲醇蒸气下具有约9.6秒的响应时间,显示出高响应幅度〜85.45%,但在250 ppm的温度下,在700 ppm时,乙醇蒸气下具有约54.90%的响应幅度,而响应时间却非常短,仅为2.83秒。

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