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Photocatalytic nanocomposite membranes for environmental remediation

机译:用于环境修复的光催化纳米复合膜

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摘要

We report the design and one-pot synthesis of Ag-doped BiVO4 embedded in reduced graphene oxide (BiVO4:Ag/rGO) nanocomposites via a hydrothermal processing route. The binary heterojunction photocatalysts exhibited high efficiency for visible light degradation of model dyes and were correspondingly used for the preparation of photocatalytic membranes using polyvinylidene fluoride (PVDF) or polyethylene glycol (PEG)-modified polyimide (PI), respectively. The surface and cross-section images combined with elemental mapping illustrated the effective distribution of the nanocomposites within the polymeric membranes. Photocatalytic degradation efficiencies of 61 and 70 were achieved after 5 h of visible light irradiation using BiVO4:Ag/rGO@PVDF and BiVO4:Ag/rGO@PI (PEG-modified) systems, respectively. The beneficial photocatalytic performance of the BiVO4:Ag/rGO@PI (PEG-modified) membrane is explained by the higher hydrophilicity due to the PEG modification of the PI membrane. This work may provide a rational and effective strategy to fabricate highly efficient photocatalytic nanocomposite membranes with well-contacted interfaces for environmental purification.
机译:我们报道了通过水热处理路线嵌入还原氧化石墨烯(BiVO4:Ag/rGO)纳米复合材料中的银掺杂BiVO4的设计和一锅法合成.二元异质结光催化剂对模型染料的可见光降解表现出较高的效率,并分别用于聚偏氟乙烯(PVDF)或聚乙二醇(PEG)改性聚酰亚胺(PI)制备光催化膜。结合元素映射的表面和横截面图像说明了纳米复合材料在聚合物膜内的有效分布。使用BiVO4:Ag/rGO@PVDF和BiVO4:Ag/rGO@PI(PEG改性)系统在可见光照射5 h后,光催化降解效率分别达到61%和70%。BiVO4:Ag/rGO@PI(PEG修饰)膜的有益光催化性能是由PI膜的PEG修饰导致的较高亲水性解释的。本工作为制备具有良好接触界面的高效光催化纳米复合膜的环境净化提供了一种合理有效的策略。

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