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首页> 外文期刊>Sensors Journal, IEEE >Enhanced Low-Temperature Response of PPy-WO3 Hybrid Nanocomposite Based Gas Sensor Deposited by Electrospinning Method For Selective and Sensitive Acetone Detection
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Enhanced Low-Temperature Response of PPy-WO3 Hybrid Nanocomposite Based Gas Sensor Deposited by Electrospinning Method For Selective and Sensitive Acetone Detection

机译:静电纺丝法沉积PPy-WO3杂化纳米复合气体传感器的低温响应,用于选择性和灵敏的丙酮检测

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摘要

In this paper, PPy-WO3 hybrid nanocomposites with different weight percentages of WO3 nanoparticles (5-40%wt) dispersed in polypyrrole (PPy) matrix were prepared and utilized as a new sensing material for acetone detection. PPy-WO3 hybrid nanocomposite were deposited on interdigitated electrode by the electrospinning technique. WO3 nanoparticles and PPy-WO3 nanocomposites sensor were characterized by X-ray diffraction and field emission scanning electron microscopy, respectively. The presence of WO3 in PPy matrix was confirmed by EDAX. The resistance changes of different nanocomposites in exposure to acetone and methanol in three temperature (70 °C, 90 °C, and 110 °C) was tested and the results were compared with polypyrrole-based sensor. It was found that enhanced acetone sensing properties of PPy-WO3 nanocomposite films strongly influenced by the WO3 weight percentage and temperature. Comparing with PPy-based sensor, prepared PPy-WO3 hybrid nanocomposite films exhibit excellent acetone vapor sensing properties at low temperature. The detection limit of PPy-WO3 (20%) hybrid nanocomposite sensor is about 16 times better than PPy sensor and it shows fast response (<; 5 s) toward acetone vapor at operating temperature of 90 °C. As a result, PPy-WO3 hybrid nanocomposite sensor can be a good candidate for high performance acetone detection.
机译:本文制备了不同重量百分比的WO3纳米颗粒(5-40%wt)分散在聚吡咯(PPy)基体中的PPy-WO3杂化纳米复合材料,并作为一种新型的丙酮检测传感材料。通过静电纺丝技术将PPy-WO3杂化纳米复合材料沉积在叉指电极上。通过X射线衍射和场发射扫描电子显微镜分别对WO3纳米颗粒和PPy-WO3纳米复合材料传感器进行了表征。 EDAX证实了PPy基质中WO3的存在。测试了三种纳米复合物在三种温度(70°C,90°C和110°C)下暴露于丙酮和甲醇时的电阻变化,并将结果与​​基于聚吡咯的传感器进行了比较。已发现,PPy-WO3纳米复合膜的增强的丙酮传感性能受WO3重量百分比和温度的强烈影响。与基于PPy的传感器相比,制备的PPy-WO3杂化纳米复合薄膜在低温下显示出优异的丙酮蒸气感测性能。 PPy-WO3(20%)杂化纳米复合材料传感器的检出限是PPy传感器的约16倍,并且在90°C的工作温度下显示出对丙酮蒸气的快速响应(<; 5 s)。结果,PPy-WO3杂化纳米复合材料传感器可以成为高性能丙酮检测的理想选择。

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