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首页> 外文期刊>CERAMICS INTERNATIONAL >Highly efficient, low cost, and stable self -powered UV photodetector based on Co2+:ZnO/Sn diluted magnetic semiconductor nanoparticles
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Highly efficient, low cost, and stable self -powered UV photodetector based on Co2+:ZnO/Sn diluted magnetic semiconductor nanoparticles

机译:基于CO2 +:ZnO / Sn稀释磁半导体纳米颗粒,高效,低成本和稳定的自动紫外线光电探测器

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A low cost self-powered UV Schottky photosensor uses as photoactive layer a Co2+: ZnO diluted magnetic semiconductors nanoparticles (DMS) is presented in this paper. Herein, for the first time, a high-performance UV photosensor is elaborated using Co2+: ZnO nanoparticles based on a low-cost polyol method. In addition to the optical band gap of ZnO, Cobalt can yield another optical absorption band associated to the Co2+ d-d (tethrahedral symmetry) crystal field transitions, which could enhance the total optical absorption and produce a high responsivity. Several characterization techniques such as XRD, TEM, FTIR, PL and diffuse reflectance (DF) spectroscopy are used in this study. The performance of our devices was evaluated upon exposing to UV light of wavelength 375 nm and at zero bias voltage. The device exhibits a sensitivity of 209.7 and a high responsivity about 5.5 10(3) mA/W under intensity of 7.6 mW. The response times (the rise and recovery times) of our device are 0.62s and about 1.65 s without any external bias, respectively. Our self-powered PD shows higher detectivity about 1.3 10(13) Jones, compared to the UV PD in other works. Such high responsivity and detectivity lead the Co2+: ZnO PD to have low noise spectral density of 10(-24) A(2)/Hz and low noise equivalent power of 2.6E-11 W Hz(-1/2). This study proposes an original process for the fabrication of low cost self-powered PDs with high performance and zero power consumption on a large-scale.
机译:低成本的自动UV肖特基光电传感器用作光活性层CO2 +:ZnO稀释的磁半导体纳米颗粒(DMS)。这里,首次使用基于低成本多元醇方法的CO 2 +:ZnO纳米粒子来阐述高性能UV光电传感器。除了ZnO的光带隙之外,钴可以产生与CO2 + D-D(TethraheDral对称)晶体场转变相关的另一个光学吸收带,这可以增强总光学吸收并产生高响应度。本研究使用了几种表征诸如XRD,TEM,FTIR,PL和漫反射率(DF)光谱的技术。在暴露于波长375nm的UV光和零偏置电压时评估我们的器件的性能。该装置具有209.7的灵敏度,高响应度约为5.5 10(3)mA / W,强度为7.6mW。我们的设备的响应时间(上升和恢复时间)分别为0.62s,约为1.65秒,没有任何外部偏差。与其他作品中的UV PD相比,我们的自动PD显示约1.3 10(13)次琼斯的探测器。这种高响应度和探测器引入CO2 +:ZnO PD具有10(24)/ Hz的低噪声谱密度和2.6E-11 W Hz(-1/2)的低噪声等效功率。本研究提出了一种原始工艺,用于制造低成本自供电PD,具有高性能和大量功耗的大规模。

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