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Hydrothermal etching fabrication of TiO2@graphene hollow structures: mutually independent exposed {001} and {101} facets nanocrystals and its synergistic photocaltalytic effects

机译:TiO2石墨烯空心结构的水热刻蚀制备:相互独立的{001}和{101}小面纳米晶体的暴露及其协同光催化作用

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摘要

Highly exposed facets TiO2 attracts enormous attention due to its excellent separation effect of photogenerated electron-hole pairs and induced high performance of photocatalytic activity. Herein, a novel hydrothermal etching reaction was used to synthesize graphene-wrapped TiO2 hollow core-shell structures. Different with the reported co-exposed facets TiO2 single crystal nanoparticles, the present TiO2 core layer is composed by the mutually independent exposed {001} and {101} facets nanocrystals. Combined with the reduced graphene oxide shell layer, this graphene-wrapped TiO2 hollow core-shell structures formed a Z-scheme photocatalytic system, which possess simultaneously the high charge-separation efficiency and strong redox ability. Additionally, the as-prepared samples show a higher absorption property for organic molecules and visible light due to the presence of graphene. All of these unique properties ensure the excellent photocatalytic activity for the graphene-wrapped TiO2 hollow structures in the synergistic photo-oxidation of organic molecules and photo-reduced of Cr(VI) process. The TiO2 core composed with mutually independent exposed {001} and {101} facets nanocrystals is propose to play an important role in the fabrication of this Z-scheme photocatalytic system. Fabrication of Z-scheme photocatalytic system based on this unique exposed facets TiO2 nanocrystals will provides a new insight into the design and fabrication of advanced photocatalytic materials.
机译:TiO2高度暴露的小面由于其对光生电子-空穴对的出色分离作用和诱导的高性能光催化活性而备受关注。在本文中,使用新颖的水热蚀刻反应来合成石墨烯包裹的TiO2中空核-壳结构。与报道的共暴露面TiO 2单晶纳米颗粒不同,本发明的TiO 2芯层由相互独立的暴露的{001}和{101}面纳米晶体组成。石墨烯包裹的TiO2空心核壳结构与还原的氧化石墨烯壳层相结合,形成Z型光催化体系,同时具有高电荷分离效率和强氧化还原能力。另外,由于存在石墨烯,因此制备的样品对有机分子和可见光显示出更高的吸收性能。所有这些独特的性能确保了石墨烯包裹的TiO2中空结构在有机分子的协同光氧化和Cr(VI)过程的光还原中具有出色的光催化活性。提出了由相互独立的暴露的{001}和{101}小面纳米晶体组成的TiO2核芯,在该Z型光催化体系的制备中起着重要作用。基于这种独特的暴露面TiO2纳米晶体的Z型光催化系统的制造将为高级光催化材料的设计和制造提供新的见解。

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