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Full solar spectrum photocatalytic oxygen evolution by carbon-coated TiO2 hierarchical nanotubes

机译:碳涂层TiO2等级纳米管的全太阳光谱光催化氧气进化

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摘要

Smart architectures of TiO2 are attracting increasing attention due to their outstanding properties in a broad range of fields. Herein, hierarchical TiO2 nanotube with uniform carbon coatings is synthesized as the full solar spectrum photocatalytic materials for O-2 evolution by a facile solvothermal method. This unique structure consists of an interstitial hollow spaces and a functional nanotube shell assembled from two-dimensional (2D) nanosheets. By adjusting the types of solvents and reaction time, the morphologies of TiO2/C composites can be tuned to nanoparticles, nanorods, or hierarchical nanotubes. Among these morphologies, the TiO2/C hierarchical nanotube exhibits the best photocatalytic activity and favorable stability toward oxygen evolution from water oxidation under full solar spectrum light irradiation. The reason is attributed to the desirable incorporation of visible/near-infrared (NIR) light active carbon coating with UV light responsive TiO2 for promoted solar energy utilization. Besides, the solvothermal step leads to hierarchical nanotube structures which can generate multiple reflections of incident light so as to promote an efficient light harvesting due to an enhanced specific surface area (244.4 m(2) g(-1)) and light scattering ability. Moreover, the generated carbon coatings on the surface of TiO2 facilitate electron-hole separation.
机译:由于它们在广泛的田地中,TiO2的智能架构因其出色的特性而引起的越来越受到关注。这里,具有均匀碳涂层的分层TiO2纳米管被合成为通过容易的溶剂热法作为O-2演化的全太阳光谱光催化材料。这种独特的结构包括间隙中空空间和由二维(2D)纳米晶片组装的功能性纳米管壳组成。通过调节溶剂的类型和反应时间,可以将TiO 2 / C复合材料的形态调谐到纳米颗粒,纳米棒或分级纳米管。在这些形态中,TiO2 / C分层纳米管道在全太阳光谱光照射下,具有在水氧化下的最佳光催化活性和良好的氧化稳定性。原因归因于所需的可见/近红外(NIR)光活性炭涂层与UV光响应TiO2的理想结合,用于促进太阳能利用。此外,溶剂热步骤导致分层纳米管结构,其可以产生入射光的多次反射,以便由于增强的比表面积(244.4m(2)g(-1))和光散射能力而促进有效的光收集。此外,TiO2表面上的产生的碳涂层促进了电子空穴分离。

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