4.6 Article

Fabrication of graphene: CdSe quantum dots/CdS nanorod heterojunction photodetector and role of graphene to enhance the photoresponsive characteristics

Journal

NANOTECHNOLOGY
Volume 32, Issue 31, Pages -

Publisher

IOP PUBLISHING LTD
DOI: 10.1088/1361-6528/abf87a

Keywords

CdSe QDs; graphene; CdS nanorods; heterojunction; photodetector

Funding

  1. National Key Research and Development Program of China [2018YFB2200500]
  2. National Natural Science Foundation of China [61974170, 61934007, 62050073]
  3. Opened Fund of the State Key Laboratory of Integrated Optoelectronics [IOSKL2018KF17]
  4. Ministry of Science and Technology of China [DL20200001030]
  5. Beijing Municipal Science and Technology Commission Project [Z191100004819011]

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The integration of graphene with semiconducting quantum dots (QDs) in high-performance optoelectronic devices is demonstrated in this article. The device based on graphene: CdSe QDs/CdS nanorod heterostructures shows excellent operating characteristics, including a maximum photoresponsivity and specific detectivity under 530 nm light illumination. The study also investigates the enhancement of performance in the heterojunction photodetector with graphene nanosheets, showing that enhanced energy transfer and exciton generation contribute to increased light absorption and photocurrent density.
Integration of graphene with semiconducting quantum dots (QDs) provides an elegant way to access the intrinsic properties of graphene and optical properties of QDs concurrently to realize the high-performance optoelectronic devices. In the current article, we have demonstrated the high-performance photodetector based on graphene: CdSe QDs/CdS nanorod heterostructures. The resulting heterojunction photodetector with device configuration ITO/graphene: CdSe/CdS nanorods/Ag show excellent operating characteristics including a maximum photoresponsivity of 15.95 AW(-1) and specific detectivity of 6.85 x 10(12) Jones under 530 nm light illumination. The device exhibits a photoresponse rise time of 545 ms and a decay time of 539 ms. Furthermore, the study of the effect of graphene nanosheets on the performance enhancement of heterojunction photodetector is carried out. The results indicate that, due to the enhanced energy transfer from photoexcited QDs to graphene layer, light absorption is increased and excitons are generated led to the enhancement of photocurrent density. In addition to that, the graphene: CdSe QDs/CdS nanorod interface can facilitate charge carrier transport effectively. This work provides a promising approach to develop high-performance visible-light photodetectors and utilizing advantageous features of graphene in optoelectronic devices.

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