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Enhanced Photoresponse in Monolayer Hydrogenated Graphene Photodetector

机译:单层氢化石墨烯光电探测器中增强的光响应

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摘要

We report the photoresponse of a hydrogenated graphene (H-graphene)-based infrared (IR) photodetector that is 4 times higher than that of pristine graphene. An enhanced photoresponse in H-graphene is attributed to the longer photoinduced carrier lifetime and hence a higher internal quantum efficiency of the device. Moreover, a variation in the angle of incidence of IR radiation demonstrated a nonlinear photoresponse of the detector, which can be attributed to the photon drag effect. However, a linear dependence of the photoresponse is revealed with different incident powers for a given angle of IR incidence. This study presents H-graphene as a tunable photodetector for advanced photoelectronic devices with higher responsivity. In addition, in situ tunability of the graphene bandgap enables achieving a cost-effective technique for developing photodetectors without involving any external treatments.
机译:我们报告基于氢化石墨烯(H-石墨烯)的红外(IR)光电探测器的光响应比原始石墨烯高4倍。 H-石墨烯中增强的光响应归因于更长的光诱导载流子寿命,因此归因于器件的更高内部量子效率。此外,红外辐射入射角的变化证明了探测器的非线性光响应,这可以归因于光子拖曳效应。但是,对于给定的IR入射角,光响应的线性相关性随不同的入射功率而显示。这项研究提出了H-石墨烯作为具有更高响应度的先进光电设备的可调光电探测器。另外,石墨烯带隙的原位可调谐性实现了用于开发光电探测器的经济有效的技术,而无需进行任何外部处理。

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