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Effect of Oxygen Vacancies on Photocatalytic Efficiency of TiO2 Nanotubes Aggregation

机译:氧空位对TiO2纳米管聚集光催化效率的影响

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Aggregation of titania nanotubes (TNTs) fabricated by hydrothermal method were calcined in air and dry nitrogen; Changes in morphology and crystallinity of the nanotubes were studied by means of TEM, EDX, and XPS. EDX patterns and XPS spectra proved that there were a certain densities of oxygen vacancies in TNTs annealed in N2. The photocatalysis experiments revealed TNTs/N2 possesses significantly higher photocatalytic efficiency than TNTs annealed in dry air to degrade methylene blue. The correlation between oxygen vacancies and photocatalytic property may be attributed to: 1) oxygen vacancies might have affected results on water molecules adsorption and increase of the hydroxyl concentration; and 2) oxygen vacancies resulted in some changes in electronic structure of TNTS/N2 aggregation and Fermi level extends into the conducting band.
机译:在空气和干燥氮气中煅烧通过水热法制备的二氧化钛纳米管(TNTs)的聚集;通过TEM,EDX和XPS研究了纳米管的形态和结晶度变化。 EDX图谱和XPS谱图表明,在氮气中退火的TNT中存在一定的氧空位密度。光催化实验表明,TNTs / N2比在干燥空气中退火降解亚甲基蓝的TNTs具有更高的光催化效率。氧空位与光催化性能之间的关系可能归因于:1)氧空位可能影响水分子的吸附结果并增加羟基浓度。 2)氧空位导致TNTS / N2聚集体的电子结构发生某些变化,费米能级扩展到导带。

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