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Enhanced room temperature ammonia sensing properties of polypyrrole-zinc tin oxide nanocomposite

机译:聚吡咯 - 锌氧化锌纳米复合材料增强室温氨感测性能

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Polypyrrole (PPy)-Zn2SnO4 nanocomposites with different weight percentages (0-20%) of Zn2SnO4 were successfully prepared by chemical oxidative polymerization. The prepared nanocomposites were deposited on epoxy glass substrate using a spin coating technique and have been characterized using various techniques such as X-ray diffractometer, field emission scanning electron microscopy (FESEM) and Fourier transform infrared (FTIR) spectrometer. The physicochemical characterization confirmed wellformed dodecylbenzene (DBSA)-doped PPy-Zn2SnO4 nanocomposites with granular morphology and high porosity. Among various nanocompositions, DBSA-doped PPy-Zn2SnO4 (10 wt.%) nanocomposite was found to be highly sensitive towards NH3 vapor at room temperature i.e. with a chemiresistive response of 5.44% at 27 ppm with a reasonably fast recovery time of 76 s. Additionally, it shows a linear response and appropriate recovery time at all concentrations of NH3 vapor. The DBSA-doped PPy-Zn2SnO4 nanocomposite response is four times better than pure PPy toward NH3 vapor at room temperature. Therefore, it is expected that such material with excellent gas sensing properties at room temperature can be used for high-performance NH3 sensors.
机译:通过化学氧化聚合成功制备具有不同重量百分比(0-20%)Zn2SNO 4的滤萘吡咯(PPY)-ZN2SNO4纳米复合材料。使用旋涂技术将制备的纳米复合材料沉积在环氧玻璃基板上,并且已经使用诸如X射线衍射仪,场发射扫描电子显微镜(FESEM)和傅里叶变换红外(FTIR)光谱仪的各种技术进行了表征。物理化学表征证实了具有颗粒形态和高孔隙率的良好的十二烷基苯(DBSA) - 掺杂的PPY-Zn2SNO4纳米复合材料。在各种纳米中分化中,发现DBSA掺杂的PPY-ZN2SNO4(10重量%)纳米复合材料在室温下对NH 3蒸气非常敏感,即在27ppm的27ppm下的切片反应为5.44%,具有76秒的合理快速恢复时间。另外,它显示了所有浓度的NH3蒸汽的线性响应和适当的恢复时间。 DBSA掺杂的PPY-ZN2SNO4纳米复合材料响应是在室温下朝向NH3蒸汽的纯PPY致纯净的四倍。因此,预期在室温下具有优异的气体感测性能的这种材料可用于高性能NH3传感器。

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