Full length articlePhotocatalytic enhancement mechanism of direct Z-scheme heterojunction O-g-C3N4@Fe-TiO2 under visible-light irradiation
-
Add time:09/03/2019 Source:sciencedirect.com
A novel visible-light response heterojunction photocatalytic catalyst was developed in this study. The fragmented O-g-C3N4 discontinuously coated on the surface of Fe-TiO2, which exhibited excellent photocatalytic activity, photocatalytic stability and long-term durability under visible light irradiation. Compared with pristine O-g-C3N4 and Fe-TiO2, the photocatalytic degradation efficiency of O-g-C3N4@Fe-TiO2 was 1.32 and 1.65 times higher than that of the former two, respectively. Compared with the electrically neutral Fe-TiO2, the electronegative O-g-C3N4 demonstrated excellent adsorption capacity for the cation MB+. The proper band structure of the element-doped O-g-C3N4 and Fe-TiO2 catalysts ensured the absorption capacity of visible light by O-g-C3N4@Fe-TiO2. The Z-scheme transfer mechanism of photo-generated carriers in O-g-C3N4@Fe-TiO2 was constructed, which could not only promote the separation of holes in the valence band of Fe-TiO2 and the electrons in the conduction band of O-g-C3N4 effectively, but also could retain the holes and electrons with stronger redox abilities in the O-g-C3N4@Fe-TiO2 catalyst.
We also recommend Trading Suppliers and Manufacturers of butyl (Z,Z)-6,6-dibutyl-4,8,11-trioxo-5,7,12-trioxa-6-stannahexadeca-2,9-dienoate (cas 15546-16-4). Pls Click Website Link as below: cas 15546-16-4 suppliers
Prev:Lewis acid promoted double bond migration in O-allyl to Z-products by Ru-H complexes
Next:Defect-mediated Z-scheme BiO2-x/Bi2O2.75 photocatalyst for full spectrum solar-driven organic dyes degradation) - 【Back】【Close 】【Print】【Add to favorite 】
- Related Information
- Defect-mediated Z-scheme BiO2-x/Bi2O2.75 photocatalyst for full spectrum solar-driven organic dyes degradation09/04/2019
- Lewis acid promoted double bond migration in O-allyl to Z-products by Ru-H complexes09/02/2019
- Z-Ligustilide protects vascular endothelial cells from oxidative stress and rescues high fat diet-induced atherosclerosis by activating multiple NRF2 downstream genes09/01/2019
- Electrochemistry and redox characterization of rock-salt-type lithium metal oxides Li1+z/3Ni1/2-z/2Ti1/2+z/6O2 for Li-ion batteries08/31/2019
- ReviewRational construction of plasmon Au assisted ferroelectric-BaTiO3/Au/g-C3N4 Z-scheme system for efficient photocatalysis08/30/2019
- Construction of Z-scheme LaNiO3/SnS2 composite for boosting visible light photodegradation of tetracycline08/29/2019
- Graphitic Carbon Nitride based Z scheme photocatalysts: Design considerations, synthesis, characterization and applications08/28/2019
- Enriched Z-isomers of lycopene-loaded nanostructured lipid carriers: Physicochemical characterization and in vitro bioaccessibility assessment using a diffusion model08/27/2019
-
Health and Chemical more >
-
Related Products
- Butyl (2S)-2-hydroxypropanoate
- Butyl (3,4-dichlorophenyl)methyl 3-pyridinylcarbonimidodithioate
- Butyl (R)-( )-2-(4-Hydroxyphenoxy)-propanoate
- Butyl 10-undecylenate
- Butyl 2,2-difluorocyclopropanecarboxylate
- Butyl 2,3-Epoxypropyl Fumarate
- Butyl 2,4-dichlorophenoxyacetate
- Butyl 2-chloroacetate
- Butyl 2-methylbutyrate
- Butyl 3,4,5-trihydroxybenzoate


