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Integrating an electrically active colloidal quantum dot photodiode with a graphene phototransistor

机译:将电活性胶体量子点光电二极管与石墨烯光电晶体管集成在一起

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摘要

The realization of low-cost photodetectors with high sensitivity, high quantum efficiency, high gain and fast photoresponse in the visible and short-wave infrared remains one of the challenges in optoelectronics. Two classes of photodetectors that have been developed are photodiodes and phototransistors, each of them with specific drawbacks. Here we merge both types into a hybrid photodetector device by integrating a colloidal quantum dot photodiode atop a graphene phototransistor. Our hybrid detector overcomes the limitations of a phototransistor in terms of speed, quantum efficiency and linear dynamic range. We report quantum efficiencies in excess of 70%, gain of 105 and linear dynamic range of 110 dB and 3 dB bandwidth of 1.5 kHz. This constitutes a demonstration of an optoelectronically active device integrated directly atop graphene and paves the way towards a generation of flexible highly performing hybrid two-dimensional (2D)/0D optoelectronics.
机译:在可见光和短波红外中实现具有高灵敏度,高量子效率,高增益和快速光响应的低成本光电探测器仍然是光电技术的挑战之一。已开发的两类光电探测器是光电二极管和光电晶体管,它们各自都有特定的缺点。在这里,我们通过将胶体量子点光电二极管集成在石墨烯光电晶体管的顶部,将这两种类型合并到混合光电探测器设备中。我们的混合探测器在速度,量子效率和线性动态范围方面克服了光电晶体管的局限性。我们报告的量子效率超过70%,增益为10 5 ,线性动态范围为110 dB,3 dynamicdB带宽为1.5 kHz。这构成了直接集成在石墨烯上的光电子有源器件的演示,并为产生柔性的高性能混合二维(2D)/ 0D光电子学铺平了道路。

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