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Mesoporous Nitrogen-Modified Titania with Enhanced Dye Adsorption Capacity and Visible Light Photocatalytic Activity

机译:介孔氮修饰的二钛具有增强的染料吸附能力和可见光光催化活性

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Mesoporous nitrogen-modified anatase titania (N-TiO2), show- ing high dye adsorption capacity and photocatalytic activity for photodegradation of methylene blue under visible light, was prepared by a template-free, sol-gel synthesis route in the pres- ence of diethanolamine followed by a single step low temper- ature calcination treatment. The effect of calcination conditions and the role of the titania precursor type were investigated, highlighting their profound influence upon the adsorption and visible light activity. The crystallization of titania in the presence of N was also studied using in situ synchrotron X-ray powder diffraction. The N-TiO2 prepared from titanium (IV) butoxide and diethanolamine calcined at 350℃ for 10 h exhibited a high methylene blue adsorption capacity and high photocatalytic activity under visible light. The prominent photocatalytic per- formance was attributed to the synergetic effect from the abundant N content, high specific surface area and enhanced surface acidity. These results suggest that this material has po- tential as an adsorbent-photocatalyst hybrid.
机译:介孔氮修饰的解剖钛二(N-TIO2),显示高染料吸附能力和可见光下甲基蓝色光降解的光催化活性,是通过无模板的,无模板的Sol-gel合成途径来制备的。二乙醇胺随后进行单步低温钙化处理。研究了钙化条件的作用和二氧化钛前体类型的作用,突出了它们对吸附和可见光活性的深远影响。还使用原位同步子X射线粉末衍射研究了N在N存在下的结晶。从钛(IV)丁氧化钛和二乙醇胺在350℃中钙化10小时制备的N-TIO2表现出高甲基蓝色的吸附能力和高光催化活性在可见光下。显着的光催化性表现归因于丰富的N含量,高比表面积和增强的表面酸度的协同作用。这些结果表明,该材料具有吸附剂 - 催化剂杂种。

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