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Facile preparation of 2D sandwich-like CdS nanoparticles/nitrogen-doped reduced graphene oxide hybrid nanosheets with enhanced photoelectrochemical properties

Publication ,  Journal Article
Wang, S; Li, J; Zhou, X; Zheng, C; Ning, J; Zhong, Y; Hu, Y
Published in: Journal of Materials Chemistry A
December 14, 2014

A facile surface-layer-absorption strategy was successfully integrated via a simple in situ sulfidation reaction route for the deposition of CdS nanoparticles on N-doped reduce graphene oxide (N-rGO) nanosheets to produce 2D sandwich-like CdS/N-rGO hybrid nanosheets (HNs). The successful doping of N in the rGO nanosheets and the sandwich stuffing of CdS nanocrystals in the N-rGO sheets were revealed using a variety of techniques, including XPS, XRD and TEM. Compared to the pure CdS and CdS/rGO samples, the as-prepared sandwich CdS/N-rGO HNs exhibited a significantly enhanced photoelectrochemical current response and improved photocatalytic activity for the reduction of aqueous Cr(vi) and the photodegradation of rhodamine B (RhB) under visible-light irradiation. Owing to nitrogen doping in the carbon network of graphene and the unique combination of the CdS nanocrystals and N-rGO nanosheets, superior electrical conductivity could be obtained with the N-rGO matrix. This led to improved charge separation and transport of the photoinduced carriers from the CdS nanoparticles as well as enhanced photochemical performance, which was confirmed by transient photocurrent and electrochemical impedance spectroscopy (EIS).

Duke Scholars

Published In

Journal of Materials Chemistry A

DOI

EISSN

2050-7496

ISSN

2050-7488

Publication Date

December 14, 2014

Volume

2

Issue

46

Start / End Page

19815 / 19821

Related Subject Headings

  • 4016 Materials engineering
  • 4004 Chemical engineering
  • 3403 Macromolecular and materials chemistry
  • 0915 Interdisciplinary Engineering
  • 0912 Materials Engineering
  • 0303 Macromolecular and Materials Chemistry
 

Citation

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Wang, S., Li, J., Zhou, X., Zheng, C., Ning, J., Zhong, Y., & Hu, Y. (2014). Facile preparation of 2D sandwich-like CdS nanoparticles/nitrogen-doped reduced graphene oxide hybrid nanosheets with enhanced photoelectrochemical properties. Journal of Materials Chemistry A, 2(46), 19815–19821. https://doi.org/10.1039/c4ta04624b
Wang, S., J. Li, X. Zhou, C. Zheng, J. Ning, Y. Zhong, and Y. Hu. “Facile preparation of 2D sandwich-like CdS nanoparticles/nitrogen-doped reduced graphene oxide hybrid nanosheets with enhanced photoelectrochemical properties.” Journal of Materials Chemistry A 2, no. 46 (December 14, 2014): 19815–21. https://doi.org/10.1039/c4ta04624b.
Wang S, Li J, Zhou X, Zheng C, Ning J, Zhong Y, et al. Facile preparation of 2D sandwich-like CdS nanoparticles/nitrogen-doped reduced graphene oxide hybrid nanosheets with enhanced photoelectrochemical properties. Journal of Materials Chemistry A. 2014 Dec 14;2(46):19815–21.
Wang, S., et al. “Facile preparation of 2D sandwich-like CdS nanoparticles/nitrogen-doped reduced graphene oxide hybrid nanosheets with enhanced photoelectrochemical properties.” Journal of Materials Chemistry A, vol. 2, no. 46, Dec. 2014, pp. 19815–21. Scopus, doi:10.1039/c4ta04624b.
Wang S, Li J, Zhou X, Zheng C, Ning J, Zhong Y, Hu Y. Facile preparation of 2D sandwich-like CdS nanoparticles/nitrogen-doped reduced graphene oxide hybrid nanosheets with enhanced photoelectrochemical properties. Journal of Materials Chemistry A. 2014 Dec 14;2(46):19815–19821.
Journal cover image

Published In

Journal of Materials Chemistry A

DOI

EISSN

2050-7496

ISSN

2050-7488

Publication Date

December 14, 2014

Volume

2

Issue

46

Start / End Page

19815 / 19821

Related Subject Headings

  • 4016 Materials engineering
  • 4004 Chemical engineering
  • 3403 Macromolecular and materials chemistry
  • 0915 Interdisciplinary Engineering
  • 0912 Materials Engineering
  • 0303 Macromolecular and Materials Chemistry