Issue 74, 2016

Photoelectrochemical performance of g-C3N4/Au/BiPO4 Z-scheme composites to improve the mineralization property under solar light

Abstract

g-C3N4/Au/BiPO4 as a hierarchical Z-scheme system was prepared through three steps at different reaction temperatures, using thiourea as a precursor to synthesize g-C3N4. Their photoelectric activities were also investigated via the degradation of 10 mg L−1 methyl orange (MO). g-C3N4/Au/BiPO4 exhibited remarkably promoted photocatalytic activity and photoelectrochemical property compared with g-C3N4, BiPO4 and g-C3N4/BiPO4. The electrochemical impedance spectra and photocurrent result also proved that efficient charge separation and a better electron transport property were achieved by g-C3N4/Au/BiPO4. Such excellent performances can be attributed to the Z-scheme system which improved the separation efficiency of photo-induced carriers and suppressed the recombination of electron–holes. It is worth pointing out that the metallic Au species not only acted as a solid state electron mediator, but also could absorb photons from incident light and present a surface plasmon resonance effect in this hybridization system.

Graphical abstract: Photoelectrochemical performance of g-C3N4/Au/BiPO4 Z-scheme composites to improve the mineralization property under solar light

Article information

Article type
Paper
Submitted
25 May 2016
Accepted
20 Jul 2016
First published
20 Jul 2016

RSC Adv., 2016,6, 70563-70572

Photoelectrochemical performance of g-C3N4/Au/BiPO4 Z-scheme composites to improve the mineralization property under solar light

J. Li, H. Yuan and Z. Zhu, RSC Adv., 2016, 6, 70563 DOI: 10.1039/C6RA13570F

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