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Improved Solar-Driven Photocatalytic Performance of Highly Crystalline Hydrogenated TiO2 Nanofibers with Core-Shell Structure

机译:具有核壳结构的高结晶度氢化TiO2纳米纤维的改进的太阳能驱动光催化性能

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摘要

Hydrogenated titanium dioxide has attracted intensive research interests in pollutant removal applications due to its high photocatalytic activity. Herein, we demonstrate hydrogenated TiO2 nanofibers (H:TiO2 NFs) with a core-shell structure prepared by the hydrothermal synthesis and subsequent heat treatment in hydrogen flow. H:TiO2 NFs has excellent solar light absorption and photogenerated charge formation behavior as confirmed by optical absorbance, photo-Kelvin force probe microscopy and photoinduced charge carrier dynamics analyses. Photodegradation of various organic dyes such as methyl orange, rhodamine 6G and brilliant green is shown to take place with significantly higher rates on our novel catalyst than on pristine TiO2 nanofibers and commercial nanoparticle based photocatalytic materials, which is attributed to surface defects (oxygen vacancy and Ti3+ interstitial defect) on the hydrogen treated surface. We propose three properties/mechanisms responsible for the enhanced photocatalytic activity, which are: >(1) improved absorbance allowing for increased exciton generation, >(2) highly crystalline anatase TiO2 that promotes fast charge transport rate, and >(3) decreased charge recombination caused by the nanoscopic Schottky junctions at the interface of pristine core and hydrogenated shell thus promoting long-life surface charges. The developed H:TiO2 NFs can be helpful for future high performance photocatalysts in environmental applications.
机译:氢化二氧化钛由于其高的光催化活性而在污染物去除应用方面引起了广泛的研究兴趣。在本文中,我们演示了通过水热合成和随后在氢气流中进行热处理而制备的具有核-壳结构的氢化TiO2纳米纤维(H:TiO2 NFs)。 H:TiO2 NFs具有出色的太阳光吸收和光生电荷形成行为,这已通过光吸收,光开尔文力探针显微镜和光诱导的载流子动力学分析得到了证实。新型甲基催化剂,甲基橙,若丹明6G和亮绿色等各种有机染料的光降解速率显着高于原始TiO2纳米纤维和商用纳米颗粒基光催化材料,这归因于表面缺陷(氧空位和氢处理表面的Ti 3 + 间隙缺陷)。我们提出了增强光催化活性的三种特性/机理,它们是:>(1),提高了吸光度,增加了激子的产生; >(2),高度结晶的锐钛矿型TiO2促进了电荷传输速率快,并且>(3)减少了由于原始核与氢化壳之间的界面处的纳米肖特基结引起的电荷重组,从而促进了长寿命的表面电荷。发达的H:TiO2 NFs有助于将来在环境应用中的高性能光催化剂。

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