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CNTs-Modified Nb3O7F Hybrid Nanocrystal towards Faster Carrier Migration, Lower Bandgap and Higher Photocatalytic Activity

机译:CNTS改性的Nb3O7F杂交纳米晶体朝向更快的载体迁移,较低的带隙和更高的光催化活性

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Novel semiconductor photocatalysts have been the research focus and received much attention in recent years. The key issues for novel semiconductor photocatalysts are to effectively harvest solar energy and enhance the separation efficiency of the electron-hole pairs. In this work, novel Nb3O7F/CNTs hybrid nanocomposites with enhanced photocatalytic activity have been successfully synthesized by a facile hydrothermal plus etching technique. The important finding is that appropriate pH values lead to the formation of Nb3O7F nanocrystal directly. A general strategy to introdue interaction between Nb3O7F and CNTs markedly enhances the photocatalytic activity of Nb3O7F. Comparatively, Nb3O7F/CNTs nanocomposites exhibit higher photodegradation efficiency and faster photodegradation rate in the solution of methylene blue (MB) under visible-light irradiation. The higher photocatalytic activity may be attributed to more exposed active sites, higher carrier migration and narrower bandgap because of good synergistic effect. The results here may inspire more engineering, new design and facile fabrication of novel photocatalysts with highly photocatalytic activity.
机译:新型半导体光催化剂近年来一直是研究重点,并受到很多关注。新型半导体光催化剂的关键问题是有效地收获太阳能并增强电子孔对的分离效率。在这项工作中,通过容易水热加蚀刻技术成功地合成了具有增强的光催化活性的新型NB3O7F / CNTS杂化纳米复合材料。重要的发现是,适当的pH值导致直接形成Nb 3 O 7 F纳米晶体。在NB3O7F和CNT之间引入相互作用的一般策略显着增强了Nb3O7F的光催化活性。相比之下,在可见光照射下,Nb3O7F / CNT纳米复合材料表现出更高的光降解效率和更快的光降解速率,并在亚甲基蓝(MB)溶液中的光降解速率更快。由于协同效应良好,较高的光催化活性可归因于更暴露的活性位点,更高的载波迁移和较窄的带隙。这里的结果可以激发更多的工程,新的设计和面部的新型光催化剂,具有高光催化活性。

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