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首页> 外文期刊>Nanotechnology >The conversion of PN-junction influencing the piezoelectric output of a CuO/ZnO nanoarray nanogenerator and its application as a room-temperature self-powered active H2S sensor
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The conversion of PN-junction influencing the piezoelectric output of a CuO/ZnO nanoarray nanogenerator and its application as a room-temperature self-powered active H2S sensor

机译:PN结的转换影响CuO / ZnO纳米阵列纳米发生器的压电输出及其在室温自供电有源H2S传感器中的应用

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Room-temperature, high H2S sensing has been realized from a CuO/ZnO nanoarray selfpowered, active gas sensor. The piezoelectric output of CuO/ZnO nanoarrays can act not only as the power source of the device, but also as the H2S sensing signal at room temperature. Upon exposure to 800 ppm H2S at room temperature, the piezoelectric output of the device greatly decreased from 0.738 V (in air) to 0.101 V. The sensitivity increased to 629.8, much higher than bare ZnO nanoarrays. As the device was exposed to H2S, a CuO/ZnO PN-junction was converted into a CuS/ZnO Ohmic contact, which greatly increased the electron density in the nanowire and enhanced the screen effect on the piezoelectric output. Our results can stimulate a research trend on designing new composite piezoelectric material for high-performance selfpowered active gas sensors.
机译:CuO / ZnO纳米阵列自供电活性气体传感器已经实现了室温,高H2S感测。 CuO / ZnO纳米阵列的压电输出不仅可以充当设备的电源,而且还可以充当室温下的H2S传感信号。在室温下暴露于800 ppm H2S时,该器件的压电输出从0.738 V(空气中)大大降低至0.101V。灵敏度提高至629.8,远高于裸露的ZnO纳米阵列。当器件暴露于H2S时,CuO / ZnO PN结被转换为CuS / ZnO欧姆接触,这大大增加了纳米线中的电子密度并增强了对压电输出的屏蔽效果。我们的结果可以激发研究为高性能自供电活性气体传感器设计新型复合压电材料的研究趋势。

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