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Preparation and Photocatalytic Property of Ag Modified Titanium Dioxide Exposed High Energy Crystal Plane (001)

机译:Ag改性二氧化钛暴露高能晶平面的制备和光催化性能(001)

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TiO2 exposed high energy crystal plane (001) was prepared by the sol-gel process using butyl titanate as the titanium source and hydrofluoric acid as the surface control agent. Ag-TiO2 was prepared by depositing Ag on the crystal plane of TiO2 (101) with a metal halide lamp. The surface morphology, interplanar spacing, crystal phase composition, ultraviolet absorption band, element composition, and valence state of the samples were characterized by using field emission scanning electron microscopy (FESEM), transmission electron microscope (TEM), X-ray diffraction (XRD), ultraviolet-visible absorption spectrum (UV-Vis-Abs), and X-ray photoelectron spectroscopy (XPS), respectively. The formation mechanism of high energy crystal plane (001) was discussed, and the photocatalytic activities were evaluated by following degradation of methyl orange. The results show that TiO2 exposed the (001) crystal plane with a ratio of 41.8%, and Ag can be uniformly deposited on the crystal plane of TiO2 (101) by means of metal halide lamp deposition. Under the same conditions, the degradation rate of methyl orange by deposited Ag-TiO2 reaches as much as 93.63% after 60 min using the metal halide lamp (300 W) as an illuminant, 81.89% by non-deposited samples and 75.20% by nano-TiO2, causing a certain blue shift in the light absorption band edge of TiO2. Ag-TiO2 has the best photocatalytic performance at a pH value of 2.
机译:通过钛酸丁酯作为钛源和氢氟酸作为表面控制剂,通过溶胶 - 凝胶工艺制备TiO2暴露的高能量晶平面(001)。通过用金属卤化物灯沉积在TiO 2(101)的晶体面上制备Ag-TiO 2。通过使用现场发射扫描电子显微镜(FESEM),透射电子显微镜(TEM),X射线衍射(XRD)来表征样品的表面形态,紫外线间距,晶体相组合物,紫外线吸收带,元件组合物和价状态。 ),紫外线可见吸收光谱(UV-VIS-ABS)和X射线光电子谱(XPS)。讨论了高能量晶平面(001)的形成机制,通过以下甲基橙降解来评价光催化活性。结果表明,通过金属卤化物灯沉积,TiO2暴露于具有41.8%的比率,比率为41.8%,Ag可以均匀地沉积在TiO 2(101)的晶体平面上。在相同的条件下,使用金属卤化物灯(300W)作为发光剂的60分钟后,通过沉积的Ag-TiO 2通过沉积的样品,81.89%,纳米75.20%,甲基橙的降解速率高达93.63%。 -tio2,在TiO 2的光吸收带边缘中引起某个蓝色偏移。 Ag-TiO2具有最佳的光催化性能,pH值为2。

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