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Synthesis of ZnO Nanostructures for Low Temperature CO and UV Sensing

机译:用于低温CO和UV传感的ZnO纳米结构的合成

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摘要

In this paper, synthesis and results of the low temperature sensing of carbon monoxide (CO) gas and room temperature UV sensors using one dimensional (1-D) ZnO nanostructures are presented. Comb-like structures, belts and rods, and needle-shaped nanobelts were synthesized by varying synthesis temperature using a vapor transport method. Needle-like ZnO nanobelts are unique as, according to our knowledge, there is no evidence of such morphology in previous literature. The structural, morphological and optical characterization was carried out using X-ray diffraction, scanning electron microscopy and diffused reflectance spectroscopy techniques. It was observed that the sensing response of comb-like structures for UV light was greater as compared to the other grown structures. Comb-like structure based gas sensors successfully detect CO at 75 °C while other structures did not show any response.
机译:本文介绍了使用一维(1-D)ZnO纳米结构对一氧化碳(CO)气体和室温UV传感器进行低温感测的合成和结果。通过使用蒸汽传输方法改变合成温度来合成梳状结构,带和棒以及针状纳米带。针状ZnO纳米带是独特的,因为据我们所知,以前的文献中没有这种形态的证据。使用X射线衍射,扫描电子显微镜和漫反射光谱技术进行结构,形态和光学表征。观察到,与其他生长的结构相比,梳状结构对紫外线的感测响应更大。基于梳状结构的气体传感器可在75°C的温度下成功检测到CO,而其他结构则未显示任何响应。

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