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Magnetic composite microspheres with exposed {001} faceted TiO2 shells: a highly active and selective visible-light photocatalyst

机译:磁性复合微球具有暴露的{001}刻面TiO2壳:一种高活性和选择性的可见光光催化剂

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摘要

We have demonstrated a sandwich-structured Fe3O4/SiO2/Au/TiO2 photocatalyst, which shows magnetic separability, selective absorption and photocatalysis activity, and high efficiency, in catalyzing the decomposition of organic compounds under illumination of visible-light and simulated sunlight. The structural design of the photocatalyst takes advantage of the dense, homogeneous structure and the AuNPs content (ca. 4 nm, 1.63 wt%), which is prepared by a simple method. It possesses high efficiency visible-light photocatalytic activity due to the stable from nonmetal-doping and the plasmonic metal decoration, which enhances light harvesting and charge separation, and the small grain size of the anatase nanocrystals, which reduces the exciton recombination rate. More importantly, the catalyst is synthesized by a combination of plasmonic metal decoration of TiO2 nanocrystals with exposed {001} facets, and the selective adsorption and photocatalytic decomposition of azo dyes is accomplished by design of the surface chemistry. Additionally, these sandwich-structured photocatalysts can be applied to other catalytic system such as dye decoloration, water decomposition, hydrogen generation, and so on.
机译:我们已经证明了一种三明治结构的Fe3O4 / SiO2 / Au / TiO2光催化剂,在可见光和模拟阳光照射下,它在催化有机化合物的分解方面表现出磁可分离性,选择性吸收和光催化活性,并且效率很高。光催化剂的结构设计利用致密,均匀的结构和AuNPs含量(约4 nm,1.63 wt%),这是通过一种简单的方法制备的。由于具有非金属掺杂和等离子体金属装饰的稳定性,因此具有高效的可见光光催化活性,从而增强了光的收集和电荷分离,并且锐钛矿型纳米晶体的粒径较小,从而降低了激子的复合率。更重要的是,通过将具有暴露的{001}面的TiO2纳米晶体的等离子体金属装饰结合起来,合成催化剂,并通过表面化学设计实现对偶氮染料的选择性吸附和光催化分解。另外,这些夹心结构的光催化剂可以应用于其他催化体系,例如染料脱色,水分解,氢产生等。

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