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Fabrication of Novel 2D NiO Nanosheet Branched on 1D-ZnO Nanorod Arrays for Gas Sensor Application

机译:用于气体传感器应用的1D-ZnO Nanorod阵列的新型2D NIO纳米片的制造

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摘要

Fabrication of 3D structures composed of 1D n-type ZnO nanorods (NRs) and 2D p-type NiO nanosheets (NSs) by a low-cost, low-temperature, and large-area scalable hydrothermal process and its use in highly sensitive NO2 gas sensors were studied. The p-n heterojunctions formed by NiO-ZnO interfaces as well as large area two-dimensional NiO NSs themselves increased the adsorption of NO2. Moreover, the charge transfer between NiO and ZnO enhanced the responsivity and sensitivity of NO2 sensing even at a concentration of 1 ppm. The 30-min NiO NS growth on ZnO NRs in the hybrid sensor showed the highest sensitivity due to the formation of optimum p-n heterojunctions between ZnO NRs and NiO NSs for gas adsorption and carrier transport. Low responsivity toward reducing gases was also observed.
机译:通过低成本,低温和大面积可缩放的水热工艺制备由1D n型ZnO纳米棒(NRS)和2D p型NIO纳米液(NSS)组成的3D结构及其在高度敏感的NO2气体中使用研究了传感器。由NiO-ZnO界面形成的P-N异质梗塞以及大面积二维NIO NSS本身增加了NO2的吸附。此外,即使以1ppm的浓度,NiO和ZnO之间的电荷传递增强了NO2感测的响应性和敏感性。在混合传感器中的30分钟NIO NRS对ZnO NRS的生长显示出最佳敏感性,因为ZnO NRS和NiO NSS用于气体吸附和载流子的最佳P-N异质结。还观察到降低降低气体的低响应度。

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