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Cooperation among N, F and Fe in tri-doped TiO2 photocatalyst

机译:三掺杂TiO2光催化剂中N,F和Fe之间的合作

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TiO2 photocatalysts tri-doped with N, F and Fe were synthesized by a sol-gel method. The cooperation of N, F and Fe in tri-doped TiO2 was verified by monitoring NH3 decomposition, X-ray diffraction (XRD), scanning electron microscopy (SEM), high-resolution transmission electron microscopy (HRTEM), X-ray photoelectron spectroscopy (XPS) and ultraviolet-visible (UV-Vis) absorption spectroscopy, and by the simulation based on the density functional theory (DFT). The results from NH3 decomposition revealed that the cooperation of N, F and Fe broadened the optical response of TiO2 to the visible light range and also enhanced the photocatalytic activity of TiO2 under UV light. The reusability of the tri-doped TiO2 sample after three cycles under UV and visible light irradiation was very good. XRD patterns and SEM and HRTEM images indicated that the tri-doped sample was nanometric anatase with a small amount of rutile with an average particle size of 18 nm. Tri-doping with N, F and Fe suppressed the phase transition from anatase to rutile and also resulted in some more lattice defects. XPS analysis showed that the N, F and Fe atoms were doped into the TiO2 lattice. UV-Vis absorption spectra of the tri-doped TiO2 showed that its optical absorption edge was moved up to 640 nm and its UV absorption was also enhanced. The DFT results confirmed that the cooperation of Fe 3d and N 2p orbits narrowed the band gap of TiO2 and the F 2p orbit broadened the upper valence bands. The synergistic electron density around N, F and Fe in tri-doped TiO2 was capable of enhancing the photochemical stability and reusability of TiO2.
机译:通过溶胶-凝胶法合成了三掺N,F,Fe的TiO2光催化剂。通过监测NH3分解,X射线衍射(XRD),扫描电子显微镜(SEM),高分辨率透射电子显微镜(HRTEM),X射线光电子能谱验证了三掺杂TiO2中N,F和Fe的配合。 (XPS)和紫外-可见(UV-Vis)吸收光谱,并通过基于密度泛函理论(DFT)的仿真。 NH3分解的结果表明,N,F和Fe的结合扩大了TiO2对可见光范围的光学响应,并增强了TiO2在紫外光下的光催化活性。在紫外和可见光照射下三个循环后,三掺杂TiO2样品的可重复使用性非常好。 XRD图谱和SEM和HRTEM图像表明,三掺杂样品是纳米锐钛矿,具有少量金红石,平均粒径为18 nm。用N,F和Fe进行三级掺杂抑制了从锐钛矿到金红石的相变,还导致了更多的晶格缺陷。 XPS分析表明,N,F和Fe原子被掺杂到TiO2晶格中。三掺杂TiO2的UV-Vis吸收光谱表明,其光学吸收边缘向上移动至640 nm,并且其UV吸收也得到增强。 DFT结果证实,Fe 3d和N 2p轨道的配合作用使TiO2的带隙变窄,而F 2p轨道则使上价带变宽。三掺杂TiO2中N,F和Fe周围的协同电子密度能够增强TiO2的光化学稳定性和可重复使用性。

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