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Investigation of ZnO-decorated CNTs for UV Light Detection Applications

机译:ZnO装饰的CNT在紫外光检测中的应用研究

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摘要

Multi-walled carbon nanotubes (CNTs) decorated with zinc oxide nanoparticles (ZnO NPs) were prepared in isopropanol solution by a simple, room-temperature process and characterized from structural, morphological, electronic, and optical points of view. A strong interaction between ZnO and CNTs is fully confirmed by all the characterization techniques. ZnO-CNTs nanocomposites, with different weight ratios, were deposited as a dense layer between two electrodes, in order to investigate the electrical behaviour. In particular, the electrical response of the nanocomposite layers to UV light irradiation was recorded for a fixed voltage: As the device is exposed to the UV lamp, a sharp current drop takes place and then an increase is observed as the irradiation is stopped. The effect can be explained by adsorption and desorption phenomena taking place on the ZnO nanoparticle surface under irradiation and by charge transfer between ZnO and CNTs, thanks to the strong interaction between the two nanomaterials. The nanocomposite material shows good sensitivity and fast response to UV irradiation. Room temperature and low-cost processes used for the device preparation combined with room temperature and low voltage operational conditions make this methodology very promising for large scale UV detectors applications.
机译:通过简单的室温过程,在异丙醇溶液中制备了装饰有氧化锌纳米颗粒(ZnO NPs)的多壁碳纳米管(CNT),并从结构,形态,电子和光学角度进行了表征。所有表征技术都充分证实了ZnO与CNT之间的强相互作用。为了研究电行为,将具有不同重量比的ZnO-CNTs纳米复合材料作为致密层沉积在两个电极之间。特别是,记录了固定电压下纳米复合材料层对紫外线照射的电响应:当设备暴露于紫外线灯下时,电流会急剧下降,然后在停止照射时观察到电流增加。由于两种纳米材料之间的强相互作用,可以通过在辐照下ZnO纳米颗粒表面上发生的吸附和解吸现象以及ZnO和CNT之间的电荷转移来解释这种作用。纳米复合材料显示出良好的灵敏度和对紫外线辐射的快速响应。用于设备准备的室温和低成本工艺与室温和低压操作条件相结合,使这种方法对于大规模UV检测器应用非常有前途。

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