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GHz surface acoustic wave ultraviolet sensor based on photo-conductive lamellar Molybdenum Disulfide

机译:基于光导板钼二硫化物的GHz表面声波紫外线传感器

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This article reports the fabrication and characterization of a highly sensitive ultraviolet (UV) sensor based on Zinc Oxide (ZnO)/glass surface acoustic wave resonator (SAWR) with lamellar Molybdenum Disulfide (MoS_2) as photo-conductive layer. The interdigital transducers (IDTs) with a periodicity of 2.4 μm were fabricated on SAWR by Electron Beam Lithography (EBL) technique, enabling a resonant frequency of 1.019 GHz in the SAWR. The SAWR UV sensor exhibited a linear up-shift in the frequency with UV intensity and a high sensitivity of 4.15 ppm/μW/cm~2. The significant frequency-shift is attributed to high resonant frequency and excellent photoelectric properties of lamellar MoS_2. The experimental results show the MoS_2 coated ZnO/glass-based SAWR have great promise for wireless ultraviolet sensor applications.
机译:本文报道了基于氧化锌(ZnO)/玻璃表面声波谐振器(SAWR)的高敏感紫外(UV)传感器的制造和表征,其具有层状钼二硫化物(MOS_2)作为光电层。通过电子束光刻(EBL)技术在SAWR上制造具有周期性为2.4μm的叉指传感器(IDTS),从而在锯切中实现1.019GHz的谐振频率。 SAWR UV传感器在频率上显示出具有UV强度的线性上升和4.15ppm /μW/ cm〜2的高灵敏度。显着的频移归因于层状MOS_2的高谐振频率和优异的光电性能。实验结果表明,MOS_2涂层ZnO /玻璃锯材对无线紫外线传感器应用具有很大的承诺。

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