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Tunable functionalization of graphene nanosheets for graphene-organic hybrid photodetectors

机译:用于石墨烯-有机混合光电探测器的石墨烯纳米片的可调功能化

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摘要

Graphene-organic hybrid thin films are promising candidates for use as advanced transparent electrodes and high-performance photodetectors. In this work, we fabricated hybrid thin film structures consisting of graphene and either tetraphenyl-porphyrin (H2TPP) or metalloporphyrins such as aluminum (III) tetraphenyl-porphyrin (Al(III)TPP) and zinc tetraphenyl-porphyrin (ZnTPP). The optical and electrical characteristics of ultrathin photodetectors based on the graphene-organic hybrid layers were subsequently evaluated. A hybrid deposition system capable of both thermal evaporation and vapor phase metalation was employed to synthesize the tunable metalloporphyrin-based thin films. As a proof of concept, we successfully fabricated various graphene-based photodetectors via the simple and efficient vapor-phase metalation of porphyrin. This work may facilitate the development of new architectures for flexible graphene-organic devices.
机译:石墨烯-有机杂化薄膜有望用作先进的透明电极和高性能光电探测器。在这项工作中,我们制造了由石墨烯和四苯基卟啉(H2TPP)或金属卟啉组成的杂化薄膜结构,例如铝(III)四苯基卟啉(Al(III)TPP)和四苯基锌卟啉(ZnTPP)。随后评估了基于石墨烯-有机杂化层的超薄光电探测器的光学和电学特性。采用能够同时进行热蒸发和气相金属化的混合沉积系统来合成可调谐的基于金属卟啉的薄膜。作为概念的证明,我们通过简单高效的卟啉气相金属化成功地制造了各种基于石墨烯的光电探测器。这项工作可能有助于开发用于柔性石墨烯-有机设备的新体系结构。

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