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Synthesis of magnetic mesoporous titania colloidal crystals through evaporation induced self-assembly in emulsion as effective and recyclable photocatalysts

机译:蒸发诱导乳液自组装合成介孔二氧化钛磁性胶体晶体作为有效且可回收的光催化剂

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摘要

This study illustrates the directed self-assembly of mesoporous TiO2 with magnetic properties due to its colloidal crystal structure with Fe3O4. The Fe3O4 nanoparticles were synthesized using co-precipitation techniques to a size of 28.2 nm and a magnetic saturation of 66.9 emu g(-1). Meanwhile, mesoporous titania nanoparticles (MTNs) with a particle diameter of 373 nm, a specific surface area of 236.3 m(2) g(-1), and a pore size of 2.8 nm were prepared by controlling the rate of hydrolysis. Magnetic colloidal crystals (a diameter of 10.2 mm) were formed by the aggregation of Fe3O4 and MTNs caused by the interface phenomena during solvent evaporation in emulsion. Even the anatase octahedrite produced from the colloidal crystal after a hydrothermal reaction retained a magnetic saturation of 2.8 emu g(-1). This study also investigates the photodegradation activity of our synthesized material as a photocatalyst, while utilizing its capability for magnetic separation to prove its usefulness in catalyst recycling.
机译:这项研究说明了具有磁性的介孔TiO2的定向自组装,这是由于其与Fe3O4的胶体晶体结构。用共沉淀技术合成的Fe3O4纳米粒子的大小为28.2 nm,磁饱和度为66.9 emu g(-1)。同时,通过控制水解速率,制备了粒径为373 nm,比表面积为236.3 m(2)g(-1)和孔径为2.8 nm的介孔二氧化钛纳米粒子(MTNs)。乳液中溶剂蒸发过程中由于界面现象引起的Fe3O4和MTN的聚集形成了磁性胶体晶体(直径为10.2 mm)。水热反应后,甚至从胶体晶体产生的锐钛矿八面体都保持了2.8 emu g(-1)的磁饱和。这项研究还研究了我们合成材料作为光催化剂的光降解活性,同时利用其磁分离能力证明了其在催化剂回收中的有用性。

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