Issue 47, 2014

Graphene–CdS quantum dots–polyoxometalate composite films for efficient photoelectrochemical water splitting and pollutant degradation

Abstract

rGO–CdS–H2W12 nanocomposite film was successfully fabricated by a layer-by-layer self-assembly method. The composite film was characterized by techniques such as UV-Vis spectra, XPS, and AFM. The composite film showed high photoelectronic response under the illumination of sunlight. Both current–voltage curves and photocurrent transient measurements demonstrated that the photocurrent response of the rGO–CdS–H2W12 composite film was enhanced five-fold compared with CdS film. This can be attributed to the photoinduced electron transfer between CdS, H2W12 and rGO, which promotes the charge separation efficiency of CdS. The introduction of GO enhanced the charge separation and transportation. More importantly, various pollutants can be treated as electron donors, and can thus be degraded and produce hydrogen at the same time, at a low bias voltage under the irradiation of solar light.

Graphical abstract: Graphene–CdS quantum dots–polyoxometalate composite films for efficient photoelectrochemical water splitting and pollutant degradation

Supplementary files

Article information

Article type
Paper
Submitted
26 Aug 2014
Accepted
26 Sep 2014
First published
26 Sep 2014

Phys. Chem. Chem. Phys., 2014,16, 26016-26023

Author version available

Graphene–CdS quantum dots–polyoxometalate composite films for efficient photoelectrochemical water splitting and pollutant degradation

M. Wang, X. Shang, X. Yu, R. Liu, Y. Xie, H. Zhao, H. Cao and G. Zhang, Phys. Chem. Chem. Phys., 2014, 16, 26016 DOI: 10.1039/C4CP03824J

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