JOURNAL ARTICLE

Graphene Quantum Dots Decorated Al-Doped ZnS for Improved Photoelectric Performance

Zheng ZhangYun LeiLiyang ZhaoZicong JiangZhong Ouyang

Year: 2018 Journal:   Materials Vol: 11 (8)Pages: 1452-1452   Publisher: Multidisciplinary Digital Publishing Institute

Abstract

Graphene quantum dots (GQDs) decorated Al-doped ZnS composites were prepared using the solvothermal process, and the hydrothermal method was used to prepare GQDs. Various spectroscopic techniques were used to characterize the products, and the results show that Al-ZnS attached GQD composites present lattice fringes that can be assigned to ZnS and GQDs, respectively. The absorption peaks of Al-ZnS/GQDs are red-shifted because of the doping of aluminum and the incorporation of GQDs. The luminescence intensity of Al-ZnS/GQDs shows a downward trend with the addition of GQDs. As the GQD content changes from 0.6 wt % to 1.8 wt %, the photocurrent density achieves a maximum at the addition of 1.2 wt %. The photocurrent of Al-ZnS/GQDs composites are about 700% and 200% of pure ZnS and Al-ZnS, respectively. The results indicate that Al doping can reduce the energy bandgap of ZnS and produce more photogenerated electrons. The photogenerated electrons from Al-ZnS can be extracted and transferred to GQDs, which act as conducting materials to decrease the recombination rate and improve the photogenerated electron-transfer.

Keywords:
Quantum dot Materials science Photocurrent Graphene Doping Band gap Photoelectric effect Luminescence Nanotechnology Optoelectronics Chemical engineering

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Cited By
0.52
FWCI (Field Weighted Citation Impact)
30
Refs
0.59
Citation Normalized Percentile
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Citation History

Topics

Carbon and Quantum Dots Applications
Physical Sciences →  Materials Science →  Materials Chemistry
Advanced Photocatalysis Techniques
Physical Sciences →  Energy →  Renewable Energy, Sustainability and the Environment
Quantum Dots Synthesis And Properties
Physical Sciences →  Materials Science →  Materials Chemistry

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