Article ID Journal Published Year Pages File Type
7853659 Carbon 2014 18 Pages PDF
Abstract
A synthesis method including Pt-induced oxidation and light irradiation-assisted routes has been developed to prepare a ZnO rod-CdS/reduced graphene oxide (RGO) heterostructure. Here, graphene oxide nanosheets are reduced and loaded onto the surface of Zn spheres using a redox process. ZnO rods are generated from Zn spheres by a Pt-induced oxidation method, and CdS nanoparticles are then loaded onto the surface of RGO via a light irradiation-assisted method. The ZnO rod-CdS/RGO heterostructure exhibits 3.8 times higher photocatalytic hydrogen generation rate from an aqueous solution containing Na2S/Na2SO3 than the reference ZnO rod-CdS heterostructure under simulated solar light irradiation. The optimal contents of RGO nanosheets and CdS nanoparticles are 2 wt% and 20 at.%, respectively.
Related Topics
Physical Sciences and Engineering Energy Energy (General)
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