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Gas Sensors Based on Flower-like ZnO Structures: Detection of Acetylene Gas Dissolved in Transformer Oil

机译:基于花状ZnO结构的气体传感器:检测变压器油中溶解的乙炔气体

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As an important arc discharge characteristic gas dissolved in power transformer, acetylene (C2H2) plays a quite significant role in transformer fault diagnosis. Current study indicates that shape control of 3D hierarchical flower-like ZnO structures used for C2H2 detection remains a challenge. In this work, taper-flower and bundle-flower ZnO nanostructures were synthesized with assistance of active agents in a hydrothermal method, and the possible growth mechanisms were proposed. As for C2H2 detection, sensor based on bundle-flower not only has a lower optimum operating temperature, but also exhibits higher sensitivity, better selectivity and stability than these of the taper-flower one. The results suggest that the bundle-flower ZnO provides an ideal platform for gas sensor applications.
机译:作为溶解在电力变压器中的重要的电弧放电特性气体,乙炔(C 2 H 2 )在变压器故障诊断中起着相当重要的作用。当前的研究表明用于C的3D分层花状ZnO结构的形状控制 2 H 2 检测仍然是一个挑战。在这项工作中,在水热法中借助活性剂合成了锥花和束花ZnO纳米结构,并提出了可能的生长机理。至于C 2 H 2 检测,基于束花的传感器不仅具有较低的最佳工作温度,而且与锥花相比,具有更高的灵敏度,更好的选择性和稳定性。结果表明,束花状ZnO为气体传感器应用提供了理想的平台。

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