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Effects of sintering temperature on sensing properties of WO3 and Ag-WO3 electrode for NO2 sensor

机译:烧结温度对NO2传感器WO3和Ag-WO3电极感应性能的影响

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摘要

Pure WO3 and Ag-WO3 (mixed solid solutions Ag with WO3) have been successfully synthesized by sol-gel method and the influences of calcination temperature on the particle size, morphology of the WO3 and Ag-WO3 nanoparticles were investigated. Powder X-ray diffraction results show that the hexagonal to monoclinic phase transition occurs at calcination temperature varying from 300°C to 500°C. SEM images show that calcination temperature plays an important role in controlling the particle size and morphology of the as-prepared WO3 and Ag-WO3 nanoparticles. The NO2 gas sensing properties of the sensors based on WO3 and Ag-WO3 nanoparticles calcined at different temperatures were investigated and the experimental results exhibit that the gas sensing properties of the Ag-WO3 sensors were superior to those of the pure WO3. Especially, the sensor based on Ag-WO3 calcined at 500°C possessed larger response, better selectivity, faster response/recovery and better longer-term stability to NO2 than the others at relatively low operating temperature (150°C).
机译:通过溶胶-凝胶法成功地合成了纯WO3和Ag-WO3(Ag与WO3混合固溶体),并研究了煅烧温度对WO3和Ag-WO3纳米粒子的粒径,形貌的影响。粉末X射线衍射结果表明,六边形到单斜相的转变发生在煅烧温度为300℃至500℃之间。 SEM图像显示煅烧温度在控制所制备的WO 3和Ag-WO 3纳米颗粒的粒径和形态方面起着重要作用。研究了在不同温度下煅烧的WO3和Ag-WO3纳米颗粒传感器的NO2气敏特性,实验结果表明,Ag-WO3传感器的气敏性能优于纯WO3。特别是,在相对较低的工作温度(150°C)下,基于Ag-WO3且在500°C下煅烧的传感器具有更大的响应,更好的选择性,更快的响应/回收率以及对NO2的长期稳定性。

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