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Synthesis of Reduced Grapheme Oxide as A Platform for loading β-NaYF4:Ho3+@TiO2Based on An Advanced Visible Light-Driven Photocatalyst

机译:基于先进的可见光驱动光催化剂合成还原石墨烯作为负载β-NaYF4:Ho3 + @ TiO2的平台

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摘要

In this paper a novel visible light-driven ternary compound photocatalyst (β-NaYF4:Ho3+@TiO2-rGO) was synthesized using a three-step approach. This photocatalyst was characterized using X-ray diffraction, Raman scattering spectroscopy, scanning electron microscopy, energy-dispersive X-ray spectroscopy, Transmission electron microscopy, X-ray photoelectron spectroscopy, fluorescence spectrometries, ultraviolet-visible diffuse reflectance spectroscopy, Brunauer–Emmett–Teller surface area measurement, electron spin resonance, three-dimensional fluorescence spectroscopy, and photoelectrochemical properties. Such proposed photocatalyst can absorb 450 nm visible light while emit 290 nm ultraviolet light, so as to realize the visible light-driven photocatalysis of TiO2. In addition, as this tenary compound photocatalyst enjoys effecitve capacity of charge separation, superior durability, and sound adsorb ability of RhB, it can lead to the red shift of wavelength of absorbed light. This novel tenary photocatalyst can reach decomposition rate of RhB as high as 92% after 10 h of irradiation by visible-light Xe lamp. Compared with the blank experiment, the efficiency was significantly improved. Recycle experiments showed that theβ-NaYF4:Ho3+@TiO2-rGOcomposites still presented significant photocatalytic activity after four successive cycles. Finally, we investigated visible-light-responsive photocatalytic mechanism of the β-NaYF4:Ho3+@TiO2-rGO composites. It is of great significance to design an effective solar light-driven photocatalysis in promoting environmental protection.
机译:本文采用三步法合成了新型可见光驱动的三元复合光催化剂(β-NaYF4:Ho 3 + @ TiO2-rGO)。使用X射线衍射,拉曼散射光谱,扫描电子显微镜,能量色散X射线光谱,透射电子显微镜,X射线光电子光谱,荧光光谱,紫外可见漫反射光谱,Brunauer–Emmett–柜员表面积测量,电子自旋共振,三维荧光光谱和光电化学性质。提出的这种光催化剂可以吸收450 nm的可见光,同时发出290 nm的紫外光,从而实现了可见光驱动的TiO2光催化。另外,由于该三元化合物光催化剂具有有效的电荷分离能力,优异的耐久性和RhB的吸声能力,因此可导致吸收光波长的红移。经可见光Xe灯照射10 Xh后,该新型三元光催化剂的RhB分解率高达92%。与空白实验相比,效率明显提高。循环实验表明,β-NaYF4:Ho 3 + @ TiO2-rGO复合材料在连续四个循环后仍表现出显着的光催化活性。最后,我们研究了β-NaYF4:Ho 3 + @ TiO2-rGO复合材料的可见光响应光催化机理。设计有效的太阳光驱动光催化对促进环境保护具有重要意义。

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