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Photocatalytically active TiO2 microtubes assembled with radially aligned nanowires

机译:保留活性二氧化钛超小型电子管与径向排列纳米线组装

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摘要

Hollow nanoarchitectures enhance mass transport whilst retaining the merits arising from these unique nanostructures, which are thus ideal structures for an efficient photocatalyst. In this study, polyester fibers were utilized to construct TiO2 hollow microtubes with radially aligned nanowires, through multi-steps of sol-gel, solution precipitation, and calcination. The TiO2 microtubes are ca. 10 mm in diameter, assembled with radially aligned nanowires that are ca. 40 nm in diameter and 1 mm in length. The microtubes as a whole consisted of anatase, rutile and brookite, which exhibit a band gap of 3.05 eV and a specific surface area of 36.0 m~2 g~(-1). When utilized to assist photodegradation of rhodamine B in water under UV light illumination, the microtubes exhibited an efficiency much higher than that of sol-gel TiO2 nanoparticles, and similar to that of commercial P25 TiO2 nanoparticles, which could be attributed to the abundant surface hydroxyl groups and the nanowireassembled hollow structure. Also, because of the easy recovery of the photocatalyst from the slurry system, the TiO2 microtubes developed herein are good candidates for effective photodegradation of organic pollutants in water.
机译:空心nanoarchitectures提高运输质量同时保留这些带来的优点独特的纳米结构,因此理想结构为一种有效的光催化剂。这项研究中,聚酯纤维是利用构造与径向二氧化钛空心超小型电子管纳米线,通过多步骤是相一致的溶胶-凝胶法、溶液沉淀和煅烧。二氧化钛超小型电子管ca。直径10毫米,与径向排列纳米线组装ca。40 nm直径1毫米长。超小型电子管作为一个整体由锐钛矿,金红石和板钛矿,表现出的带隙3.05 eV和特定面积的36.0 m ~ 2g ~(1)。在紫外光照射下的罗丹明B在水中照明,超小型电子管的展出效率远高于溶胶-凝胶法二氧化钛纳米粒子,类似于商业P25二氧化钛纳米粒子,这可能是由于丰富的表面羟基和nanowireassembled空心结构。简单的恢复的光催化剂泥浆系统,二氧化钛超小型电子管发展所适合使用有效光降解有机污染物在水里。

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