| Literature DB >> 27090656 |
Meng Ding1, Nannan Yao1, Chenggang Wang1, Jinzhao Huang1, Minghui Shao1, Shouwei Zhang1, Ping Li1, Xiaolong Deng2, Xijin Xu3.
Abstract
ZnO nanorods and ZnO@CdS heterostructures have been fabricated on carbon fiber cloth substrates via hydrothermal and electrochemical deposition. Their photocatalytic properties were investigated by measuring the degradation of methylene blue under ultraviolet light irradiation. The result illustrated that the photodegradation efficiency of ZnO@CdS heterostructures was better than that of pure ZnO nanorods, in which the rate constants were about 0.04629 and 0.02617 min(-1). Furthermore, the photocurrent of ZnO@CdS heterostructures achieved 10(2) times enhancement than pure ZnO nanorods, indicating that more free carriers could be generated and transferred in ZnO@CdS heterostructures, which could be responsible for the increased photocatalytic performance.Entities:
Keywords: Heterostructure; Photocatalytic; Photoelectrochemical; ZnO@CdS
Year: 2016 PMID: 27090656 PMCID: PMC4835407 DOI: 10.1186/s11671-016-1432-7
Source DB: PubMed Journal: Nanoscale Res Lett ISSN: 1556-276X Impact factor: 4.703
Fig. 1FESEM images of pure ZnO nanorods (a–c) and ZnO nanorods/CdS composites (d–f) grown on carbon fiber cloth at different magnifications
Fig. 2XRD patterns of ZnO and ZnO@CdS heterostructure. Peaks corresponding to ZnO and CdS are labeled
Fig. 3a TEM image and b a high-resolution TEM image of ZnO@CdS heterostructure. c Analyzed area of EDX line scanning analysis. d EDX line scanning profiles across ZnO@CdS heterostructure indicated in (c)
Fig. 4XPS spectra of ZnO@CdS heterostructure. a Survey spectra, b C1s, c Zn 2p, d O 1 s, e Cd 3d, and f S 2p, respectively
Fig. 5Photocurrent response of ZnO and ZnO@CdS heterostructure under Xe lamp irradiation. In the inset is the photocurrent response of ZnO nanorods
Fig. 6a Relative concentration (C/C0) of MB versus time under visible light irradiation using as-grown ZnO and ZnO@CdS heterostructure as photocatalysts. b The corresponding plots of –ln(C t/C 0) versus irradiation time
Fig. 7The schematic profile exhibiting the energy band alignment between ZnO and CdS