详细信息

Molten salt assisted in-situ synthesis of TiO2/g-C3N4 composites with enhanced visible-light-driven photocatalytic activity and adsorption ability  ( EI收录)  

文献类型:期刊文献

英文题名:Molten salt assisted in-situ synthesis of TiO2/g-C3N4 composites with enhanced visible-light-driven photocatalytic activity and adsorption ability

作者:Zhang, Bei[1]; Wang, Qiang[2]; Zhuang, Jinyang[1]; Guan, Shiyou[1,3]; Li, Bing[2]

机构:[1] School of Materials Science and Engineering, East China University of Science and Technology, 130 Meilong Road, Shanghai, 200237, China; [2] School of Mechanical and Power Engineering, East China University of Science and Technology, 130 Meilong Road, Shanghai, 200237, China; [3] Institute for Sustainable Energy, Shanghai University, No. 99, Shangda Road, Shanghai, 200444, China

年份:2018

卷号:362

起止页码:1

外文期刊名:Journal of Photochemistry and Photobiology A: Chemistry

收录:EI(收录号:20235015204693)

语种:英文

外文关键词:Adsorption - Aromatic compounds - Azo dyes - Chemical stability - Fused salts - Heterojunctions - Lithium compounds - Magnetic semiconductors - Morphology - Optical properties - Photocatalytic activity

摘要:In this work, zero-dimensional (0D)/ two-dimensional (2D) TiO2/g-C3N4 composite photocatalysts with homogeneous well-developed heterostructures were successfully prepared from LiCl-KCl flux using a facile molten salt assisted in-situ route. The phase composition, morphology, surface area, chemical structure, thermal stability as well as optical property of the heterostructured composites were systematically characterized. Benefiting from the exfoliation effect of molten salt flux, the flux-grown g-C3N4 products exhibit a rough surface with porous structures and many co-existed secondary products including nanosheets, nanrods and nanotubes, which also lead to an obvious increase in the surface area of the flux-grown g-C3N4 and composites. The photocatalytic performance of the TiO2/g-C3N4 heterostructure composites was evaluated by photodegradation of methyl orange (MO) and rhodamine B (RhB) under the visible light irradiation (λ > 420 nm), and proved to be greatly improved compared to individual TiO2 and g-C3N4. Moreover, the enhanced photocatalytic activity of TiO2/g-C3N4 composites can be attributed to the higher surface area and the synergistic effects between TiO2 and g-C3N4 including the increased light harvesting ability and more efficient separation of the photogenerated charge carriers, which originates from the construction of TiO2/g-C3N4 heterostructures at the interface between the two components. Furthermore, a possible mechanism responsible for the enhanced photocatalytic performance was also proposed. Additionally, the TiO2/g-C3N4 composites showed a superior adsorption ability for the removal of cationic dye methylene blue (MB) from aqueous solutions, due to their high surface area and strong electrostatic interactions between catalysts and dye molecules. ? 2018 Elsevier B.V.

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