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首页> 外文期刊>Catalysis science & technology >Sequential ionic layer adsorption and reaction (SILAR) deposition of Bi4Ti3O12 on TiO2: an enhanced and stable photocatalytic system for water purification
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Sequential ionic layer adsorption and reaction (SILAR) deposition of Bi4Ti3O12 on TiO2: an enhanced and stable photocatalytic system for water purification

机译:连续离子层吸附和反应(SILAR)沉积二氧化钛Bi4Ti3O12:一个增强和稳定的光催化体系水净化

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摘要

A new method to produce bismuth titanate - titanium dioxide composites by modification of a TiO2 film deposited on a variety of different glass substrates is reported. Using a simple SILAR method, BiOBr may be deposited upon TiO2 surfaces, which upon heating forms a closely intercalated structure of bismuth titanate (Bi4Ti3O12, BTO) and TiO2. This new method expands the scope of the SILAR process, which is typically restricted to materials which can be formed from soluble precursors. This composite material has undergone a thorough materials characterisation to confirm the absence of the BiOBr precursor, and the formation of the new bismuth titanate phase. The electronic structure of the heterojunction formed has also been investigated by valence band XPS and diffuse reflectance measurements, and a plausible band structure proposed. The immobilised composites have then been applied to the photocatalytic degradation of organic pollutants and bactericidal testing, as well as stability tests and identification of the key reactive species. Further photocatalytic studies have been carried out on this material in a synthetic wastewater medium, taking a step towards application under real-world conditions.
机译:一种新方法生产钛酸铋-二氧化钛复合材料的改性各种不同的二氧化钛薄膜沉积玻璃基板。SILAR方法,BiOBr可能沉积在二氧化钛在加热表面,形成一个紧密间结构的钛酸铋(BTO Bi4Ti3O12)和二氧化钛。扩展的范围SILAR过程,通常局限于材料由可溶性前驱。材料经历了一次彻底的材料描述确认的缺席BiOBr前体,形成新的钛酸铋的阶段。异质结的也已形成调查由价带XPS和分散反射率测量,一个似是而非的乐队提出了结构。然后应用到光催化了吗降解的有机污染物和杀菌试验,以及稳定性测试和识别的关键活性物种。进一步进行光催化研究这种材料在合成废水中、下一步程序现实世界的情况。

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