首页> 外文会议>DAE Solid State Physics Symposium >Enhancement of UV photodetector properties of ZnO nanorods/PEDOT:PSS Schottky junction by NGQD sensitization along with conductivity improvement of PEDOT:PSS by DMSO additive
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Enhancement of UV photodetector properties of ZnO nanorods/PEDOT:PSS Schottky junction by NGQD sensitization along with conductivity improvement of PEDOT:PSS by DMSO additive

机译:通过NGQD致敏的ZnO纳米棒/ PEDOT的UV光电探测器性能提高ZnO纳米棒/ PEDOT:PSS肖特基结和PEDOT的电导改善:DMSO添加剂的PSS

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Schottky junction ultraviolet (UV) photodetector was fabricated by spin coating a hole conducting polymer, poly 3,4-ethylenedioxythiophene: polystyrene sulfonate (PEDOT:PSS) on hydrothermally grown zinc oxide (ZnO) nanorod arrays. The UV detector performance was significantly improved two step process. Firstly, ZnO nanorods were modified by sensitizing N doped grapheme quantum dots (NGQDs) for better photoresponce behavior. Afterwards, the junction properties as well as photoresponse was enhanced by modifying electrical conductivity of PEDOT:PSS layer with organic solvent (DMSO). Our NGQD decorated ZnO NRs/DMSO-PEDOT:PSS Schottky junction device demonstrated superior external quantum efficiency (EQE~90063%) and responsivity (Rλ~247 A/W) at 340 nm wavelength and -1V external bias. The response and recovery times of the final photodetector device was very fast compared to GQD as well as NGQD modified and pristine ZnO nanorod based detectors.
机译:通过旋涂孔传导聚合物,聚苯乙烯磺酸盐(PEDOT:PSS)在水热量生长的氧化锌(ZnO)Nanorod阵列上,通过旋转涂层孔隙紫外(UV)光电探测器。 UV检测器性能显着改善了两步过程。首先,通过敏化N掺杂的石墨料量子点(NGQDS)来修改ZnO纳米棒以更好地发光行为。然后,通过改变PEDOT的导电性:PSS层与有机溶剂(DMSO)来提高结性能以及光孔。我们的NGQD装饰ZnO NRS / DMSO-PEDOT:PSS肖特基结装置在340nm波长和-1V外部偏压下显示出优异的外部量子效率(EQE〜90063%)和响应度(Rλ〜247A / W)。与GQD相比,最终光电检测器装置的响应和恢复时间非常快,以及基于NGQD改性和原始ZnO纳米棒的检测器。

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