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Sol-gel Preparation of Hollow Spherical x%B-TiO2 Photocatalyst: The Effect of Boron Content on RBR X-3B Decoloration

机译:中空球形X%B-TiO2光催化剂的溶胶 - 凝胶制备:硼含量对RBR X-3B脱色的影响

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Background: The potential of applying TiO2-based materials has been ascertained in both wastewater and polluted air. Boron is proven to be an effective dopant to promote the activity of TiO2 in our previous work. The density of hollow material is little larger than water so that the hollow photocatalyst can suspend in wastewater under stirring or aeration.& para;& para;Methods: The graphical spheres were prepared from glucose using hydrothermal method. The hollow spherical x%B-TiO2 was synthesized through a sol-gel route, using tetrabutyl titanate and tributyl borate in the precursor. The materials were characterized by X-ray diffraction, scanning electron microscope, infrared spectrum, X-ray photoelectron spectroscopy, and N-2 adsorption-desorption techniques. Photocatalytic degradation of RBR X-3B dye was studied to show the activity of the x%B-TiO2 & para;& para;Results: Anatase TiO2 phase forms in all the x%B-TiO2 samples despite the difference in boron content. An absolute Ti-4(+) oxidation state exists in the x%B-TiO2, which is hardly affected by the doped boron. XPS analysis proves the formation of B-Ti-O structure in anatase TiO2 lattice. BET surface area increases with rising boron doping content in the hollow spherical x%B-TiO2 samples. Photocatalytic activity of TiO2 is enhanced after doping boron. The photocatalytic efficiency on RBR X-3B degradation reaches the maximum value when n(B)/n(Ti) is 8%. After five photocatalytic cycles, decoloration efficiency on 8%B-TiO2 is as much as 80% of the initial value.& para;& para;Conclusion: A continuous expansion of TiO2 crystal happens with increasing boron content. The Ti-4(+) oxidation state of titanium in the hollow spherical material is not changed after doping boron. BET surface area of the hollow spherical x%B-TiO2 increases with rising boron doping content. The hollow spherical 8%B-TiO2 has satisfactory performs for recycling and lifetime.
机译:背景:在废水和污染的空气中确定了应用TiO2的材料的潜力。硼经证明是一种有效的掺杂剂,可以在我们以前的工作中促进TiO2的活动。中空材料的密度大于水,使得中空光催化剂可以在搅拌或通气下悬浮在废水中。¶¶方法:使用水热法制备图形球。使用水热法制备葡萄糖制备。通过溶胶 - 凝胶途径合成空心球形X%B-TiO 2,使用前体中的四丁基钛和硼酸酯。该材料的特征在于X射线衍射,扫描电子显微镜,红外光谱,X射线光电子谱和N-2吸附 - 解吸技术。研究了RBR X-3B染料的光催化降解,显示X%B-TiO2&Para的活性;结果:结果:尽管硼含量差异,但锐钛矿TiO2相对于硼含量的差异。 X%B-TiO 2存在绝对Ti-4(+)氧化状态,其几乎不会受到掺杂硼的影响。 XPS分析证明了Anatase TiO2格中B-Ti-O结构的形成。 BET表面积随着空心球形X%B-TiO2样品中的硼掺杂含量上升而增加。在掺杂硼后,TiO2的光催化活性增强。当N(b)/ n(Ti)为8%时,RBR X-3b降解的光催化效率达到最大值。在五个光催化循环后,8%B-TiO2上的脱色效率高达初始值的80%。&Para;&Para;结论:随着硼含量的增加,TiO2晶体的连续膨胀发生。在掺杂硼后,中空球形材料中的钛的Ti-4(+)氧化状态不会改变。中空球形X%B-TiO2的BET表面积随着硼掺杂含量上升而增加。中空球形8%B-TiO2令人满意的是用于回收和寿命。

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