JOURNAL ARTICLE

Solution-Processed Graphene Quantum Dot Deep-UV Photodetectors

Abstract

Fast-response and high-sensitivity deep-ultraviolet (DUV) photodetectors with detection wavelength shorter than 320 nm are in high demand due to their potential applications in diverse fields. However, the fabrication processes of DUV detectors based on traditional semiconductor thin films are complicated and costly. Here we report a high-performance DUV photodetector based on graphene quantum dots (GQDs) fabricated via a facile solution process. The devices are capable of detecting DUV light with wavelength as short as 254 nm. With the aid of an asymmetric electrode structure, the device performance could be significantly improved. An on/off ratio of ∼6000 under 254 nm illumination at a relatively weak light intensity of 42 μW cm(-2) is achieved. The devices also exhibit excellent stability and reproducibility with a fast response speed. Given the solution-processing capability of the devices and extraordinary properties of GQDs, the use of GQDs will open up unique opportunities for future high-performance, low-cost DUV photodetectors.

Keywords:
Photodetector Materials science Optoelectronics Graphene Quantum dot Ultraviolet Fabrication Detector Wavelength Quantum efficiency Semiconductor Nanotechnology Optics Physics

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Citation History

Topics

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Physical Sciences →  Materials Science →  Materials Chemistry
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Physical Sciences →  Materials Science →  Electronic, Optical and Magnetic Materials
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Physical Sciences →  Materials Science →  Materials Chemistry
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