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Porous tungsten trioxide nanolamellae with uniform structures for high-performance ethanol sensing

机译:具有均匀结构的多孔三氧化钨纳米薄片,用于高性能乙醇感测

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Tungsten trioxide nanostructures have received considerable attention due to their enhanced gas sensing properties and promising applications in the sensing field. Herein, tungsten oxide (WO3) with a lamellar structure was prepared by a facile but feasible hydrothermal process and applied for gas detection. The structures, morphologies and surface characteristics of the as-obtained products were characterized by X-ray diffraction, X-ray photoelectron spectroscopy, scanning electron microscopy, transmission electron microscopy and Brunauer-Emmett-Teller analysis. The uniform nanolamellae were constructed from many substructures, primarily nanoparticles, resulting in desirable porous structures. To highlight the potential applications, gas sensors based on the as-synthesized products were fabricated to test their sensing performance. The test data indicated that the porous WO3 nanolamellae had superb kinetic response and remarkable selectivity towards some volatile organic compounds (VOCs), particularly ethanol, at an operating temperature of 200 degrees C. As such, we believe that these porous WO3 nanolamellae are promising as a potential high-performance sensing material for ethanol detection.
机译:三氧化钨纳米结构由于其增强的气体传感性能以及在传感领域的应用前景而备受关注。在此,通过简便但可行的水热法制备了具有层状结构的氧化钨(WO 3),并将其用于气体检测。通过X射线衍射,X射线光电子能谱,扫描电子显微镜,透射电子显微镜和Brunauer-Emmett-Teller分析来表征所获得产物的结构,形态和表面特性。均匀的纳米薄片是由许多亚结构(主要是纳米颗粒)构成的,从而形成了理想的多孔结构。为了突出潜在的应用,制造了基于合成产品的气体传感器以测试其传感性能。测试数据表明,多孔WO3纳米片在200℃的工作温度下对某些挥发性有机化合物(VOC),特别是乙醇具有极佳的动力学响应和显着的选择性。因此,我们认为这些多孔WO3纳米片具有广阔的应用前景。一种潜在的高性能乙醇检测传感材料。

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