首页> 外文期刊>Applied Surface Science >Magnetron co-sputtered Bi_(12)TiO_(20)/Bi_4Ti_3O__(12) composite - An efficient photocatalytic material with photoinduced oxygen vacancies for water treatment application
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Magnetron co-sputtered Bi_(12)TiO_(20)/Bi_4Ti_3O__(12) composite - An efficient photocatalytic material with photoinduced oxygen vacancies for water treatment application

机译:磁控管共溅射Bi_(12)TiO_(20)/ Bi_4Ti_3O __(12)复合材料 - 一种高效的光催化材料,具有光致氧空位的水处理应用

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Bi12TiO20/Bi4Ti3O12 composite photocatalyst was investigated as an alternative to the conventionally used titanium dioxide, to tackle the well-known drawbacks of fast charge-carriers recombination and low quantum efficiency of TiO2. Polycrystalline Bi12TiO20/Bi4Ti3O12 thin films were produced by pulsed DC reactive magnetron co-sputtering, a method of high industrial relevance, and compared to titanium dioxide coatings produced with the same technique. Following the deposition process, optimum thermal treatment temperature and length were established, to obtain crystallisation. The synthesised coatings were thoroughly analysed with a range of techniques, including Raman spectroscopy, XRD, SEM, TEM, EDX, XPS and AFM. The photocatalytic properties of Bi12TiO20/Bi4Ti3O12 composite were assessed through methylene blue degradation and E. coli inactivation tests under UV-A irradiation. The results indicated considerably higher efficiency of the composite photocatalyst when compared to TiO2. Moreover, the reusability assessment of Bi12TiO20/Bi4Ti3O12 thin films revealed an incremental performance increase after each consecutive test, leading to a 6-fold increase in photocatalytic activity between the first and 15th cycle. Time-resolved photoluminescence and XPS analysis highlighted an increased presence of oxygen vacancies, forming over repeated usage of bismuth titanate, leading to longer lifetimes of photogenerated species and enhanced photocatalytic performance.
机译:将研究光催化剂作为常规使用钛二氧化钛的替代品进行研究,以解决快速电荷 - 载体重组的众所周知的缺点和TiO 2的低量子效率。通过脉冲DC反应性磁控磁控溅射,具有高工业相关性的方法,与用相同技术生产的二氧化钛涂层相比,通过脉冲DC反应磁控磁控溅射制备多晶二晶片薄膜。在沉积过程之后,建立了最佳的热处理温度和长度,得到结晶。用一系列技术进行彻底分析合成的涂层,包括拉曼光谱,XRD,SEM,TEM,EDX,XPS和AFM。通过亚甲基蓝色降解和UV-A辐射下的大肠杆菌失活试验评估Bi12TiO20 / Bi4Ti3O12复合物的光催化性能。结果表明,与TiO 2相比,复合光催化剂的效率显着提高。此外,Bi12TiO20 / Bi4Ti3O12薄膜的可重复使用性评估显示每次连续试验后的增量性能增加,导致第一和第15次循环之间的光催化活性增加6倍。时间分辨的光致发光和XPS分析突出了氧空位的存在增加,形成钛酸铋的反复使用,导致光生殖物种的寿命和增强的光催化性能。

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