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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Preparation of porous flower-like CuO/ZnO nanostructures and analysis of their gas-sensing property
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Preparation of porous flower-like CuO/ZnO nanostructures and analysis of their gas-sensing property

机译:多孔花状CuO / ZnO纳米结构的制备及其气敏性能分析

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Porous flower-like CuO/ZnO nanostructures were obtained using a facile chemical solution method combined with subsequent calcination. The calcination of the precursors produced flower-like CuO/ZnO nanostructures, which is comprised of interconnected highly porous CuO/ZnO nanosheets that resulted from the thermal decomposition of the as-prepared precursors, i.e., flower-like zinc copper hydroxide carbonate. Moreover, the nanostructures were characterized through X-ray diffraction, field emission scanning electron microscopy, thermogravimetric-differential thermal analysis, and Brunauer-Emmett-Teller N_2 adsorption-desorption analyses, among others. The BET surface area of the hierarchically porous CuO/ZnO nanostructures was calculated at 17.1 m~2 g~(-1). Furthermore, the gas sensing properties of the as-prepared porous flower-like CuO/ZnO nanostructures were investigated using volatile organic compounds. Compared with the porous flower-like ZnO nanostructures, the porous flower-like CuO/ZnO nanostructures exhibited a higher response and lower working temperature with certain organic vapors, such as ethanol, acetone, and formaldehyde. The responses to 100 ppm ethanol and formaldehyde were 25.5 and 28.9, respectively, at a working temperature of 220 °C. These results showed that the porous flower-like CuO/ZnO nanostructures are highly promising candidates gas sensing applications.
机译:使用方便的化学溶液方法结合随后的煅烧获得多孔的花状CuO / ZnO纳米结构。前体的煅烧产生花状的CuO / ZnO纳米结构,其由相互连接的高度多孔的CuO / ZnO纳米片组成,其是由所制备的前体即花状的碳酸锌铜锌热分解而形成的。此外,通过X射线衍射,场发射扫描电子显微镜,热重-差热分析和Brunauer-Emmett-Teller N_2吸附-脱附分析等对纳米结构进行了表征。计算得出多孔CuO / ZnO纳米结构的BET表面积为17.1 m〜2 g〜(-1)。此外,使用挥发性有机化合物研究了所制备的多孔花状CuO / ZnO纳米结构的气敏特性。与多孔花状ZnO纳米结构相比,多孔花状CuO / ZnO纳米结构在某些有机蒸气(例如乙醇,丙酮和甲醛)下表现出更高的响应性和更低的工作温度。在220°C的工作温度下,对100 ppm乙醇和甲醛的响应分别为25.5和28.9。这些结果表明,多孔的花状CuO / ZnO纳米结构是非常有前途的候选气体传感应用。

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