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Fabrication and enhanced photoelectric properties of a novel Bi 9 O 7.5 S 6 /CdS composite film.

Yongzheng FangJing WangZhanqiang LiuGuoying ZhaoYanwei HuangJingshan HouGanghua Zhang
Published in: Dalton transactions (Cambridge, England : 2003) (2022)
Layered bismuth oxychalcogenides have been demonstrated as potential candidates for high-speed and low-power electronics due to their outstanding environmental stability and high carrier mobility, but the photoelectric performance of bulk species is still far from satisfactory. Herein, a novel Bi 9 O 7.5 S 6 /CdS composite film with a type-II heterojunction has been successfully prepared by combining chemical bath deposition (CBD) and spin-coating technologies. The structure, morphology, optical and photoelectric properties of the samples were investigated systematically. The photoelectric current of the Bi 9 O 7.5 S 6 /CdS composite film was obtained as 32.49 μA cm -2 at 1 V, which is about 13.9-fold and 3.3-fold higher than those of bare Bi 9 O 7.5 S 6 and CdS. An enhanced photoelectric response and photostability were achieved in the Bi 9 O 7.5 S 6 /CdS composite film, and can be appropriately attributed to the improved separation and transfer of photogenerated carriers driven by the type-II heterojunction. This work offers a promising route to develop high-performance visible-light photoelectric devices with type-II heterojunctions.
Keyphrases
  • visible light
  • high speed
  • room temperature
  • reduced graphene oxide
  • quantum dots
  • atomic force microscopy
  • high resolution
  • gold nanoparticles
  • risk assessment
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  • transition metal
  • perovskite solar cells