| Literature DB >> 27046507 |
Zhen-Dong Lei1, Jia-Jun Wang2, Liang Wang3, Xiong-Yu Yang2, Gang Xu2, Liang Tang4.
Abstract
Single crystalline, non-toxicity, and long-term stability graphene quantum dots (GQDs) were modified onto the AgVO3 nanoribbons by a facile hydrothermal and sintering technique which constructs a unique heterojunction photocatalyst. Characterization results indicate that GQDs are well dispersed on the surface of AgVO3 nanoribbons and GQD/AgVO3 heterojunctions are formed, which can greatly promote the separation efficiency of photogenerated electron-hole pairs under visible light irradiation. By taking advantage of this feature, the GQD/AgVO3 heterojunctions exhibit considerable improvement on the photocatalytic activities for the degradation of ibuprofen (IBP) under visible light irradiation as compared to pure AgVO3. The photocatalytic activity of GQD/AgVO3 heterojunctions is relevant with GQD ratio and the optimal activity is obtained at 3wt% with the highest separation efficiency of photogenerated electron-hole pairs. Integrating the physicochemical and photocatalytic properties, the factors controlling the photocatalytic activity of GQD/AgVO3 heterojunctions are discussed in detail. Moreover, potential photocatalytic degradation mechanisms of IBP via GQD/AgVO3 heterojunctions under visible light are proposed.Entities:
Keywords: AgVO(3) nanoribbons; Degradation pathways; Graphene quantum dots; Heterojunction photocatalyst; Ibuprofen
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Year: 2016 PMID: 27046507 DOI: 10.1016/j.jhazmat.2016.03.044
Source DB: PubMed Journal: J Hazard Mater ISSN: 0304-3894 Impact factor: 10.588