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Bottle-brush-shaped heterostructures of NiO-ZnO nanowires: growth study and sensing properties

机译:NiO-ZnO纳米线的瓶刷形异质结构:生长研究和感应性能

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We present here heterostructured ZnO-NiO nanowires (NWs), constituted by a core of single crystalline ZnO NWs, covered by poly-crystalline NiO nanorods (NRs). The bottle-brush shape was investigated by scanning electron microscopy and transmission electron microscope, confirming that a columnar growth of NiO occurred over the ZnO core, with a preferred orientation of NiO over ZnO NWs. The heterostructured devices are proposed for gas sensing application. Bare ZnO NWs and heterostructured sensors with two different thicknesses of NiO poly-crystalline NRs were analysed for acetone, ethanol, NO2 and H-2 detection. All sensors maintained n-type sensing mechanism, with improved sensing performance for lower thickness of NiO, due to high catalytic activity of NiO. The sensing dynamic is also strongly modified by the presence of heterojunction of NiO/ZnO, with a reduction of response and recovery times towards ethanol and acetone at 400 degrees C.
机译:我们在这里介绍由单晶ZnO NWS的核心构成的异质结构ZnO-NiO纳米线(NWS),由聚结晶NiO NiO纳米棒(NRS)覆盖。 通过扫描电子显微镜和透射电子显微镜研究瓶刷形状,证实NIO的柱状生长在ZnO核上,具有优选的NiO在ZnO NWS上。 提出了异结构化器件用于气体传感应用。 对丙酮,乙醇,NO2和H-2检测分析具有两种不同厚度的NIO聚结晶NRS的裸ZnONWS和异质结构传感器。 由于NIO的高催化活性,所有传感器保持N型感测机构,改善了NIO厚度厚度的感测性能。 通过存在NiO / ZnO的异质结的存在,也强烈地调节感测动力,在400℃下减少往乙醇和丙酮的响应和恢复时间。

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