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Multifunctional Graphene Optoelectronic Devices Capable of Detecting and Storing Photonic Signals

机译:能够检测和存储光子信号的多功能石墨烯光电器件

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摘要

The advantages of graphene photodetectors were utilized to design a new multifunctional graphene optoelectronic device. Organic semiconductors, gold nanoparticles (AuNPs), and graphene were combined to fabricate a photodetecting device with a nonvolatile memory function for storing photonic signals. A pentacene organic semiconductor acted as a light absorption layer in the device and provided a high hole photocurrent to the graphene channel. The AuNPs, positioned between the tunneling and blocking dielectric layers, acted as both a charge trap layer and a plasmonic light scatterer, which enable storing of the information about the incident light. The proposed pentacene-graphene-AuNP hybrid photodetector not only performed well as a photodetector in the visible light range, it also was able to store the photonic signal in the form of persistent current. The good photodetection performance resulted from the plasmonics-enabled enhancement of the optical absorption and from the photogating mechanisms in the pentacene. The device provided a photoresponse that depended on the wavelength of incident light; therefore, the signal information (both the wavelength and intensity) of the incident light was effectively committed to memory. The simple process of applying a negative pulse gate voltage could then erase the programmed information. The proposed photodetector with the capacity to store a photonic signal in memory represents a significant step toward the use of graphene in optoelectronic devices.
机译:利用石墨烯光电探测器的优势设计了一种新型的多功能石墨烯光电器件。组合有机半导体,金纳米颗粒(AuNPs)和石墨烯以制造具有用于存储光子信号的非易失性存储功能的光电检测装置。并五苯有机半导体在器件中充当光吸收层,并向石墨烯通道提供高空穴光电流。位于隧穿和阻挡介电层之间的AuNPs既可以用作电荷陷阱层,又可以用作等离子光散射体,从而可以存储有关入射光的信息。提出的并五苯-石墨烯-AuNP混合光电探测器不仅在可见光范围内表现出色,而且还能够以持久电流的形式存储光子信号。良好的光电检测性能归因于等离激元使光学吸收能力增强以及并五苯中的光门控机制。该设备提供的光响应取决于入射光的波长。因此,入射光的信号信息(波长和强度)都有效地提交给内存。然后,施加负脉冲栅极电压的简单过程可能会擦除已编程的信息。所提出的具有将光子信号存储在存储器中的能力的光电探测器代表了在光电器件中使用石墨烯的重要一步。

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