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Work function-tunable transparent electrodes based on all graphene-based materials for organic–graphene photodetectors

机译:基于所有石墨烯的基于石墨烯光电探测器的工作功能可调透明电极

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A facile method was developed for the doping of graphene nanosheets grown via chemical vapor deposition (CVD) for all graphene-based organic hybrid devices. Graphene oxide (GO) functionalized with organic ligands was employed as a dopant for CVD graphene. The doping effects from functionalized-GO with various work function (WF) values were verified by ultraviolet photoelectron spectroscopy and Raman spectroscopy analysis. In addition, the study also demonstrated easily controlled photodetectors based on WF-tuned graphene and photosensitive organic thin layers. A hybrid deposition system that combines thermal evaporation and vapor-phase metalation was utilized for the preparation of tunable photosensitive organic layers such as metalloporphyrin. This work represents a major breakthrough in the manufacturing of advanced all graphene-based hybrid devices such as flexible devices, organic transistors, and chemical sensors.
机译:开发了一种容易方法,用于通过化学气相沉积(CVD)生长的石墨烯纳米片,用于所有基于石墨烯的有机混合装置的掺杂。用有机配体官能化的石墨烯氧化物(GO)用作CVD石墨烯的掺杂剂。通过紫外光电子光谱和拉曼光谱分析验证了具有各种功函数(WF)值的掺杂功能的掺杂效应。此外,该研究还易于基于WF调节石墨烯和光敏有机薄层的易于控制的光电探测器。将热蒸发和气相金属化结合的混合沉积系统用于制备可调谐的光敏有机层,例如金属卟啉。这项工作代表了生产先进的基于石墨烯的混合装置,例如柔性器件,有机晶体管和化学传感器的重大突破。

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