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Optical and room temperature sensing properties of highly oxygen deficient flower-like ZnO nanostructures

机译:高度缺氧的花状ZnO纳米结构的光学和室温传感特性

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Oxygen deficient zinc oxide (ZnO) thin films were deposited electrochemically on glass substrates which are pre-sputtered with pure zinc (Zn) metal. Well-arranged flower-like nanostructures are observed from the SEM micrographs. The purity and crystallinity of the deposited films were confirmed from X-ray diffraction studies supported by Raman studies. The broad and intense defect induced green emission confirms the high oxygen deficiency in the nanostructures. The flower-like structures as well as the oxygen defects present in the system are indeed very suitable for gas and chemical sensing applications. These films were used for room temperature sensing of three different chemicals viz. acetone, ethanol and ammonia. The sensor was found to be insensitive ta the change in different concentrations of acetone while it was found to be sensitive to different concentrations of ethanol and ammonia. The sensor is most suitable for sensing ammonia at room temperature.
机译:将缺氧的氧化锌(ZnO)薄膜电化学沉积在预先用纯锌(Zn)金属溅射的玻璃基板上。从SEM显微照片观察到排列良好的花状纳米结构。沉积膜的纯度和结晶度由拉曼研究支持的X射线衍射研究证实。广泛而强烈的缺陷引起的绿色发射确认了纳米结构中的高氧缺乏。系统中存在的花朵状结构以及氧缺陷确实非常适合气体和化学传感应用。这些胶片用于三种不同化学物质的室温感测。丙酮,乙醇和氨。发现该传感器对不同浓度的丙酮的变化不敏感,而对不同浓度的乙醇和氨敏感。该传感器最适合在室温下感测氨气。

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