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Effect of Isopropanol on Microstructure and Activity ofTiO2Films with Dominant{001}Facets for Photocatalytic Degradation of Bezafibrate

机译:异丙醇对占主导地位的{001} Facets TiO2薄膜的结构和光催化降解苯扎贝特的影响

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Titanium dioxide (TiO2) films with dominant {001} facets coated on a titanium sheet (Ti) were synthesized with the simple hydrothermal method by using Ti as the precursor and substrate. The effect of addition of isopropanol into the hydrothermal solution on the structure, photocatalytic activity, and stability of as-synthesized TiO2films was investigated. The presence of isopropanol obviously influenced the microstructure of as-synthesized TiO2films, which was converted from microspheres into irregular close stack of truncated tetrahedrons. And the percentage of exposed {001} facets calculated from the Raman spectra increased from 48.2% to 57%. Accordingly, the TiO2films prepared with addition of isopropanol showed high and stable photocatalytic activity, which is nearly 2.6 times as that of the conventional P25 TiO2coated on Ti-substrate. In addition, the photocatalytic activity of as-synthesized TiO2films was greatly enhanced after calcination treatment at 600°C, which can be attributed to removal of fluoride ions and organic residuals adsorbed on the surface of the catalyst. Photoluminescence (PL) technique was used for the detection of produced hydroxyl radicals (•OH) on the surface of UV-illuminated TiO2using terephthalic acid as probe molecule. The photocatalytic degradation intermediates of bezafibrate were analyzed by an ultraperformance liquid chromatography-tandem mass spectrometry (UPLC-MS/MS), and accordingly the degradation pathways were proposed.
机译:采用简单的水热法,以钛为前驱体和基体,合成了在钛片(Ti)上涂覆有{001}主面的二氧化钛(TiO2)薄膜。研究了在水热溶液中添加异丙醇对合成的TiO2薄膜的结构,光催化活性和稳定性的影响。异丙醇的存在明显影响了合成后的TiO2薄膜的微观结构,该薄膜从微球体转变为不规则的密闭的截短的四面体。从拉曼光谱计算得出的{001}刻面的百分比从48.2%增加到57%。因此,添加异丙醇制备的TiO2薄膜显示出高而稳定的光催化活性,是涂在Ti基片上的常规P25 TiO2的近2.6倍。另外,在600℃下煅烧处理后,合成后的TiO2薄膜的光催化活性大大提高,这归因于去除了氟离子和吸附在催化剂表面的有机残留物。以对苯二甲酸为探针分子,使用光致发光(PL)技术检测紫外线照射的TiO2表面产生的羟基自由基(•OH)。用超高效液相色谱-串联质谱法(UPLC-MS / MS)分析了苯扎贝特的光催化降解中间体,并提出了降解途径。

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