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Synthesis of tungsten oxide nanowires/porous silicon composite and its sensing properties for NO2

机译:氧化钨纳米线/多孔硅复合材料的合成及其对NO2的传感特性

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A novel composite structure of WO3 nanowires/porous silicon has been successfully synthesized via a convenient thermal evaporation method without using any catalysts. The diameters and lengths of nanowires are 40-60 nm and 20-30 μm, respectively, and the aspect ratio (length/diameter) of nanowires could be in range of 500-750. The obtained products were investigated by scanning electron microscopy, transmission electron microscopy, and energy dispersive spectroscopy. The response to NO2 of WO3 nanowires/porous silicon composite was investigated. It was found that the composite sensor had a good response to NO2 at 50 °C. The lowest concentration of NO2 detected was 1ppm and the response could be up to 6.17 at NO2 concentration of 6 ppm. The novel composite structure improved sensing properties which are significant for future applications.
机译:通过便捷的热蒸发方法,无需使用任何催化剂,已成功合成了WO 3 纳米线/多孔硅的新型复合结构。纳米线的直径和长度分别为40-60nm和20-30μm,并且纳米线的纵横比(长度/直径)可以在500-750的范围内。通过扫描电子显微镜,透射电子显微镜和能量色散光谱研究获得的产物。研究了WO 3 纳米线/多孔硅复合材料对NO 2 的响应。结果表明,复合传感器在50°C下对NO 2 的响应良好。 NO 2 的最低检测浓度为1ppm,NO 2 浓度为6 ppm时响应最高可达6.17。新颖的复合结构改善了感测性能,对未来的应用具有重要意义。

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