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Preparation of highly ordered titanium dioxide porous films:Characterization and photocatalytic activity

机译:高序二氧化钛多孔膜的制备:表征和光催化活性

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摘要

The highly ordered titanium dioxide(TiO2)porous films was fabricated by a single-step assembly method in which the fabrication of opal structure and the infiltration of TiO2 sol particles into the voids between templates were carried out simultaneously.The polystyrene microspheres with diameters ranging between 480 and 1000nm were used as the template,and titanium tetrabutoxide,a precursor of TiO2,was prepared in an acidic solution to fill the voids between the template microspheres during the formation of opal structure.The properties of the highly ordered TiO2 porous materials were examined by scanning electron microscopy(SEM),thermogravimetry(TA),differential scanning calorimetry(DSC),X-ray diffraction(XRD)and specific surface area analyzer.Thermal analyses showed that polystyrene can be completely removed at 425 °C and the phase transformation of TiO2 from amorphous to crystalline anatase occurred at 360 °C.SEM images clearly demonstrated that these films have a highly ordered three-dimensional porous structure arranged mainly in hexagonal orientation.The XRD patterns indicated that the crystalline phase of TiO2 is mainly anatase with crystallite sizes of 7.0-9.7 nm.In addition,the ratio of rutile to anatase increased slightly with the increase in hole diameters of the ordered TiO2 porous films.The specific surface areas of the ordered TiO2 porous film ranged between 59 and 84 m~2 g~(-1),and the determined adsorption pore sizes in walls between templates were in the range 5.1-6.0 nm,which indicates that the fabricated TiO2 film is a macrostructured mesoporous material.The ordered TiO2 porous films showed high photocatalytic activity in degradation of methylene blue(MB)solution.The degradation rate increased linearly with the increase in hole diameters of the TiO2 films ranging between 480 and 1000 nm.Results obtained in this study clearly show the feasibility of using one-step method to fabricate the highly ordered TiO2 materials as potential supports for heterogeneous catalysis.
机译:采用一步组装法制备了高度有序的二氧化钛(TiO2)多孔薄膜,该过程同时进行了蛋白石结构的制备和TiO2溶胶颗粒向模板之间的空隙中的渗透。以480nm和1000nm为模板,在酸性溶液中制备TiO2的前驱体四丁氧基钛,以填充蛋白石结构形成过程中模板微球之间的空隙。研究了高度有序的TiO2多孔材料的性能。通过扫描电子显微镜(SEM),热重(TA),差示扫描量热法(DSC),X射线衍射(XRD)和比表面积分析仪进行分析。热分析表明,聚苯乙烯可以在425°C下完全去除,并发生相变。 TiO2在360°C时发生从无定形锐钛矿到结晶锐钛矿的转变.SEM图像清楚地表明这些薄膜具有高度有序的三氧化钛X射线衍射图谱表明TiO2的晶相主要是锐钛矿,其晶粒尺寸为7.0-9.7 nm。此外,随着孔直径的增加,金红石与锐钛矿的比例略有增加。有序TiO2多孔膜的比表面积为59-84 m〜2 g〜(-1),确定的模板之间壁的吸附孔径为5.1-6.0 nm。这表明所制备的TiO2薄膜是一种宏观结构的介孔材料。有序的TiO2多孔薄膜在亚甲基蓝(MB)溶液的降解中表现出较高的光催化活性。降解速率随TiO2薄膜孔径的增加而线性增加。 480和1000 nm。这项研究获得的结果清楚地表明了使用一步法制造高度有序的TiO2材料作为杂化材料潜在载体的可行性催化作用。

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