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Growth of SnO2 nanowire arrays by ultrasonic spray pyrolysis and their gas sensing performance

机译:超声喷雾热解法生长SnO2纳米线阵列及其气敏性能

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The direct synthesis of tin dioxide (SnO2) nanowire arrays on a glass substrate by using an ultrasonic spray pyrolysis method combined with sintering is demonstrated. The products obtained are characterized by X-ray diffraction, scanning electron microscopy, transmission electron microscopy (TEM) and high-resolution TEM. The results show that the SnO2 nanowire arrays consist of single crystalline nanowires, each with a diameter of 50-70 nm and a length of 5-7 mm. There are two different nanowire growth directions because of the oxygen defect growth. The mechanism of the formation and growth of SnO2 nanowire arrays was investigated. A platform gas sensor based on these arrays was fabricated. The sensor exhibits better sensitivity to and selectivity for NO2 than do SnO2 nanoparticles. The gas sensing mechanism is also discussed.
机译:通过超声喷雾热解法与烧结相结合,在玻璃基板上直接合成了二氧化锡(SnO2)纳米线阵列。获得的产物通过X射线衍射,扫描电子显微镜,透射电子显微镜(TEM)和高分辨率TEM表征。结果表明,SnO2纳米线阵列由单晶纳米线组成,每条纳米线的直径为50-70 nm,长度为5-7 mm。由于氧缺陷的生长,存在两种不同的纳米线生长方向。研究了SnO2纳米线阵列的形成和生长机理。制造了基于这些阵列的平台气体传感器。该传感器显示出比SnO2纳米颗粒更好的对NO2的敏感性和选择性。还讨论了气体感应机制。

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