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A magnetically recoverable photocatalyst prepared by supporting TiO2 nanoparticles on a superparamagnetic iron oxide nanocluster core@fibrous silica shell nanocomposite

机译:将TiO 2 纳米颗粒负载在超顺磁性氧化铁纳米簇核@纤维二氧化硅壳纳米复合材料上制备的可磁回收光催化剂

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A magnetically recoverable photocatalyst was prepared by supporting TiO2 nanoparticles on a superparamagnetic iron oxide nanocluster (SION) core@fibrous silica shell (FSS) nanocomposite. Using the raspberry-shaped magnetic iron oxide nanocluster core as a seed, FSS with uniform thickness was grown directly on the core surface by a sol–gel process. The preparation method was optimized to have a single core for each nanoparticle by adjusting the amount of the silica source. The FSS has a fanning structure of radial pores, which enable large amounts of TiO2 nanoparticles to be supported easily on the pore surface. SION@FSS with amorphous TiO2 loaded on the pores (SION@FSS@Am-TiO2) was crystallized to the anatase phase (SION@FSS@A-TiO2), which shows good photocatalytic effect. When used for water purification, SION@FSS@A-TiO2 shows faster dye degradation kinetics than that of commercial P25 nanoparticles. The as-prepared SION@FSS@A-TiO2 photocatalyst could be magnetically recovered easily from water after decolorization of the dye.
机译:将TiO 2 纳米颗粒负载在超顺磁性氧化铁纳米簇(SION)核@纤维二氧化硅壳(FSS)纳米复合材料上,制备了可磁回收的光催化剂。使用树莓形的磁性氧化铁纳米簇核作为种子,通过溶胶-凝胶工艺直接在核表面上生长出厚度均匀的FSS。通过调节二氧化硅源的量,优化了制备方法,使每个纳米颗粒具有单个核。 FSS具有放射状孔隙的扇形结构,可以使大量的TiO 2 纳米颗粒容易地负载在孔隙表面。非晶态TiO 2 负载在孔上的SION @ FSS(SION @ FSS @ Am-TiO 2 )为结晶至锐钛矿相(SION @ FSS @ A-TiO 2 ),显示出良好的光催化效果。当用于水净化时,SION @ FSS @ A-TiO 2 的染料降解动力学比市售P25纳米颗粒快。所制备的SION @ FSS @ A-TiO 2 光催化剂可以在染料脱色后从水中容易地磁性回收。

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