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Photocurrent generation in lateral graphene p-n junction created by electron-beam irradiation

机译:电子束辐照在侧向石墨烯p-n结中产生光电流

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Graphene has been considered as an attractive material for optoelectronic applications such as photodetectors owing to its extraordinary properties, e.g. broadband absorption and ultrahigh mobility. However, challenges still remain in fundamental and practical aspects of the conventional graphene photodetectors which normally rely on the photoconductive mode of operation which has the drawback of e.g. high dark current. Here, we demonstrated the photovoltaic mode operation in graphene p-n junctions fabricated by a simple but effective electron irradiation method that induces n-type doping in intrinsic p-type graphene. The physical mechanism of the junction formation is owing to the substrate gating effect caused by electron irradiation. Photoresponse was obtained for this type of photodetector because the photoexcited electron-hole pairs can be separated in the graphene p-n junction by the built-in potential. The fabricated graphene p-n junction photodetectors exhibit a high detectivity up to ~3?×?1010 Jones (cm Hz1/2 W?1) at room temperature, which is on a par with that of the traditional III–V photodetectors. The demonstrated novel and simple scheme for obtaining graphene p-n junctions can be used for other optoelectronic devices such as solar cells and be applied to other two dimensional materials based devices.
机译:石墨烯由于其非凡的性能,例如光致抗蚀剂,被认为是光电子探测器等光电应用的有吸引力的材料。宽带吸收和超高迁移率。然而,常规石墨烯光电检测器的基本和实用方面仍然存在挑战,该常规石墨烯光电检测器通常依赖于光电导操作模式,该模式具有例如光电二极管的缺点。高暗电流。在这里,我们演示了通过简单但有效的电子辐照方法在本征p型石墨烯中引起n型掺杂的石墨烯p-n结中的光伏模式操作。结形成的物理机理是由于电子辐照引起的衬底选通效应。对于这种类型的光电探测器,获得了光响应,因为光激发的电子-空穴对可以通过内置电势在石墨烯p-n结中分离。所制备的石墨烯pn结光电探测器在〜3?×?10 10 Jones(cm Hz 1/2 W ?1 )在室温下,这与传统的III–V光电探测器相当。用于获得石墨烯p-n结的经证明的新颖且简单的方案可用于其他光电器件,例如太阳能电池,并可应用于其他基于二维材料的器件。

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