| Literature DB >> 30167915 |
Meng Ding1, Hongcen Yang1, Tian Yan1, Chenggang Wang1, Xiaolong Deng1, Shouwei Zhang1, Jinzhao Huang1, Minghui Shao1, Xijin Xu2.
Abstract
Entities:
Keywords: Electrochemical deposition; Photocatalytic; Photocurrent response; ZnO@NiO
Year: 2018 PMID: 30167915 PMCID: PMC6117222 DOI: 10.1186/s11671-018-2676-1
Source DB: PubMed Journal: Nanoscale Res Lett ISSN: 1556-276X Impact factor: 4.703
Fig. 1Fabrication process of hierarchically ZnO@NiO heterostructures
Fig. 2XRD patterns of ZnO, NiO, and ZnO@NiO composites
Fig. 3SEM images of a carbon cloth, b NiO nanosheets, c ZnO nanorods, d ZN1, e ZN2, and f ZN3
Fig. 4Typical energy dispersive X-ray spectroscopy (EDS) elemental mapping images of ZN2. a The corresponding SEM image of the mapping area. b O mapping. c Zn mapping. d Ni mapping. e EDS images
Fig. 5a TEM image of ZnO@NiO heterostructure (ZN2). b High-resolution TEM of the image of ZN2
Fig. 6XPS spectra of ZN2. a Survey spectra. b O 1s. c Zn 2p. d Ni 2p spectra
Fig. 7a Plots of relative concentration (C/C0) of RhB versus time for the degradation of RhB over ZN1, ZN2, ZN3, and ZnO nanorods and NiO nanosheets under UV light irradiation. b Corresponding plots of − ln(C/C0) versus irradiation time. c Plots of relative concentration (C/C0) of MO versus time for the degradation of MO over ZnO, NiO, and ZnO@NiO heterostructure under UV irradiation. d Repeated photocatalytic degradation of RhB over ZN2
Fig. 8a Photocurrent response of NiO nanosheets, ZnO nanorods, and ZnO@NiO heterostructure under UV lamp irradiation (10 W). b PL spectra of pure ZnO nanorods, NiO nanosheets, and ZnO@NiO composite
Fig. 9Scheme of the energy band alignment between ZnO and NiO