Semiconductor/reduced graphene oxide nanocomposites derived from photocatalytic reactions

Yun Hau Ng, Akihide Iwase, Nicholas J. Bell, Akihiko Kudo, Rose Amal*

*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

174 Scopus citations

Abstract

Graphene-based semiconductors nanocomposites were synthesized via a single-step photocatalytic reduction process. UV active titanium dioxide (TiO2) and visible light driven photocatalysts (i.e. tungsten oxide (WO3) and bismuth vanadates (BiVO4)) with different conduction band energy levels were found efficient in transferring photogenerated electrons into graphene oxide (GO) thus reducing it to reduced graphene oxide (RGO). Simultaneously, nanocomposites of these particulate semiconductor and RGO sheet were obtained. X-ray photoelectron spectra revealed the 52-63% decrease in oxygen-containing carbon (hydroxyl and epoxy groups) of GO after illumination, indicating partial reduction of GO by excited photocatalysts. When made into thin films, photocurrent generation of these nanocomposites was enhanced by 160, 190 and 800%, respectively, for WO 3, TiO2 and BiVO4 as 5 wt% RGO was incorporated. These results demonstrate for the first time that a range of photocatalysts, not just TiO2, can be used to reduce and incorporate GO into nanocomposites that have higher photoelectrocatalytic efficiencies than their parent materials.

Original languageEnglish (US)
Pages (from-to)353-357
Number of pages5
JournalCatalysis Today
Volume164
Issue number1
DOIs
StatePublished - Apr 30 2011

Keywords

  • Photocatalysis
  • Photoelectrochemical property
  • Reduced graphene oxide

ASJC Scopus subject areas

  • Catalysis
  • General Chemistry

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