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A highly sensitive ultraviolet sensor based on a facile in situ solution-grown ZnO nanorod/graphene heterostructure

机译:基于易于原位溶液生长的ZnO纳米棒/石墨烯异质结构的高灵敏度紫外线传感器

摘要

The weak photon absorption and fast carrier kinetics of graphene limit its application in photodetection. This limitation can be overcome by introducing photosensitive nanostructures to graphene. Herein we report the synthesis of a ZnO nanorod/graphene heterostructure by a facile in situ solution growth method. By combining the attributes of photosensitive ZnO nanorods and highly conductive graphene, we for the first time demonstrate a highly sensitive visible-blind ultraviolet (UV) sensor based on graphene related heterostructure. The photoresponsibility of the UV sensor can reach 22.7 A W-1, which is over 45,000 fold higher than that of single graphene sheet based photodetectors.
机译:石墨烯的弱光子吸收和快速的载流子动力学限制了其在光检测中的应用。通过将光敏纳米结构引入石墨烯可以克服该限制。在本文中,我们报告了一种通过简便的原位溶液生长方法合成ZnO纳米棒/石墨烯异质结构的方法。通过结合光敏ZnO纳米棒和高导电性石墨烯的属性,我们首次展示了基于石墨烯相关异质结构的高灵敏度可见盲紫外(UV)传感器。紫外线传感器的光响应能力可达到22.7 A W-1,比基于单石墨烯片的光电探测器高45,000倍。

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