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Influence of chitosan-PEG binary template on the crystallite characteristics of sol-gel synthesized mesoporous nano-titania photocatalyst

机译:壳聚糖-PEG二元模板对溶胶-凝胶法合成介孔纳米二氧化钛光催化剂微晶特性的影响

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摘要

Nano-titania is by far, the most studied material for its photocatalytic application in air and water pollution abatement. In this study, we have demonstrated the advantage offered by using a binary template of PEG and chitosan for the sol-gel synthesis of titania. Nano-titania samples were prepared using PEG, chitosan and the binary combination of these two as templates. XRD showed that all synthesized samples preserved the anatase structure. Titania sample prepared on 1% PEG and 3% chitosan as template (P1-C3 titania) possessed spherical shaped particles with an average particle size of 12.3 nm, a surface area of 82.9 m~2/g and uniform dispersion. DRS UV-Vis spectra indicated that, P1-C3 titania showed blue shift in its absorption profile due to decrease in particle size. Consistent with the characteristics, the P1-C3 titania exhibited the highest photocatalytic activity for the degradation of 4-chlorophenol under UV irradiation, in comparison with all the synthesized photocatalytic systems and Degussa-P25. The chitosan bio template is believed to offer controlled growth of titania through Lewis base type interaction with Ti metallic centers in TiO_2. Such controlled growth route will be significant in synthesizing custom-made titania for its advanced applications in catalytic processes.
机译:迄今为止,纳米二氧化钛是对其光催化技术用于减少空气和水污染的研究最多的材料。在这项研究中,我们已经证明了通过使用PEG和壳聚糖的二元模板在二氧化钛的溶胶-凝胶合成中提供的优势。纳米二氧化钛样品是使用PEG,壳聚糖和两者的二元组合作为模板制备的。 XRD显示所有合成样品均保留了锐钛矿结构。以1%PEG和3%壳聚糖为模板(P1-C3二氧化钛)制备的二氧化钛样品具有球形颗粒,平均粒径为12.3 nm,表面积为82.9 m〜2 / g,分散均匀。 DRS UV-Vis光谱表明,由于粒径减小,P1-C3二氧化钛的吸收曲线显示蓝移。与这些特征相一致,与所有合成的光催化体系和Degussa-P25相比,P1-C3二氧化钛对UV辐射下的4-氯苯酚降解表现出最高的光催化活性。据信,壳聚糖生物模板通过与TiO_2中Ti金属中心的Lewis碱型相互作用,可提供二氧化钛的受控生长。这种受控的生长途径对于合成定制的二氧化钛对于其在催化过程中的先进应用将具有重要意义。

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