| Literature DB >> 28610393 |
He Xie1, Chengyi Hou2, Hongzhi Wang1, Qinghong Zhang3, Yaogang Li4.
Abstract
S, N co-dopedEntities:
Keywords: Elemental doping; Graphene quantum dots; Hydrogen evolution; Photocatalysis; TiO2
Year: 2017 PMID: 28610393 PMCID: PMC5468181 DOI: 10.1186/s11671-017-2101-1
Source DB: PubMed Journal: Nanoscale Res Lett ISSN: 1556-276X Impact factor: 4.703
Fig. 1Morphology characterizations. a TEM and HRTEM images of the S,N-GQDs. b, c An AFM image and the height profile of the S,N-GQDs. d A TEM image of the S,N-GQD/P25 composites
Fig. 2XRD patterns of the P25, S,N-GQDs, and S,N-GQD/P25 composites
Fig. 3FTIR spectra of P25, S,N-GQDs, and S,N-GQD/P25
Fig. 4Raman spectra of P25, S,N-GQDs and S,N-GQD/P25
Fig. 5UV-vis measurements. a The UV-vis absorption spectrum of the S,N-GQDs. b The corresponding Tauc plot of the S,N-GQDs. c The UV-vis absorption spectra of the P25 and S,N-GQD/P25
Fig. 6Photocatalytic H2 generation rates of pure P25 and S,N-GQD/P25 composites with different amounts of S,N-GQDs under UV–vis light
Fig. 7Photocatalytic H2 generation rates of pure P25 and S,N-GQD/P25 composites (3 wt.% S,N-GQD) under visible light
Fig. 8Three repeat cycle experiments of 3 wt% S,N-GQDs/TiO2
Fig. 9The transient photocurrent response of P25, S,N-GQDs, and S,N-GQD/P25 composites under UV–vis light irradiation
Fig. 10PL spectra of pure P25 and and S,N-GQD/P25 composites with different amounts of S,N-GQDs. Excitation wavelength: 280 nm
Fig. 11Proposed mechanism for the photocatalytic H2 evolution of S,N-GQD/P25 composites under UV-vis light irradiation