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A highly sensitive ethanol sensor based on mesoporous ZnO–SnO2 nanofibers

机译:基于介孔ZnO-SnO2纳米纤维的高灵敏度乙醇传感器

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摘要

A facile and versatile method for the large-scale synthesis of sensitive mesoporous ZnO–SnO2 (m-Z–S) nanofibers through a combination of surfactant-directed assembly and an electrospinning approach is reported. The morphology and the structure were investigated by scanning electron microscopy (SEM), transmission electron microscopy (TEM), x-ray diffraction (XRD), and nitrogen adsorption–desorption isotherm analysis. The results showed that the diameters of fibers ranged from 100 to 150 nm with mixed structures of wurtzite (ZnO) and rutile (SnO2), and a mesoporous structure was observed in the m-Z–S nanofibers. The sensor performance of the prepared m-Z–S nanofibers was measured for ethanol. It is found that the mesoporous fiber film obtained exhibited excellent ethanol sensing properties, such as high sensitivity, quick response and recovery, good reproducibility, and linearity in the range 3–500 ppm.
机译:报道了一种通过表面活性剂定向组装和电纺丝方法大规模合成敏感的介孔ZnO-SnO2(m-Z-S)纳米纤维的便捷方法。通过扫描电子显微镜(SEM),透射电子显微镜(TEM),X射线衍射(XRD)和氮吸附-解吸等温线分析研究了形貌和结构。结果表明,纤锌矿(ZnO)和金红石(SnO2)混合结构的纤维直径在100至150 nm之间,并且在m-Z–S纳米纤维中观察到了介孔结构。测量了制备的m-Z-S纳米纤维对乙醇的传感器性能。发现所获得的中孔纤维膜表现出优异的乙醇感测性能,例如高灵敏度,快速响应和恢复,良好的重现性以及线性范围在3–500 ppm之间。

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