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SnSe2 Quantum Dots: Facile Fabrication and Application in Highly Responsive UV-Detectors

21

Citations

26

References

2019

Year

Abstract

Synthesizing quantum dots (QDs) using simple methods and utilizing them in optoelectronic devices are active areas of research. In this paper, we fabricated SnSe<sub>2</sub> QDs via sonication and a laser ablation process. Deionized water was used as a solvent, and there were no organic chemicals introduced in the process. It was a facile and environmentally-friendly method. We demonstrated an ultraviolet (UV)-detector based on monolayer graphene and SnSe<sub>2</sub> QDs. The photoresponsivity of the detector was up to 7.5 × 10<sup>6</sup> mAW<sup>-1</sup>, and the photoresponse time was ~0.31 s. The n-n heterostructures between monolayer graphene and SnSe<sub>2</sub> QDs improved the light absorption and the transportation of photocarriers, which could greatly increase the photoresponsivity of the device.

References

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