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Titania-based nanoheterostructured microspheres for prolonged visible-light-driven photocatalysis

机译:基于二氧化钛的纳米能结构微球,用于长时间可见光触发光催化

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摘要

Titanium dioxide is a widely used photocatalytic material possessing such advantages as safety, low cost, and high reactivity under the ultraviolet light illumination. However, its applicability in sunlight is limited due to the wide band gap and, as a consequence, the low quantum yield. Doping of titanium dioxide with metal or non-metal atoms and creating heterojunctions based on it are some of the most efficient ways to overcome this drawback. Herein we propose a new facile way of synthesis of nitrogen-doped TiO2/MoO(3)and TiO2/WO(3)microsphere-shaped nanocomposite photocatalysts, combining the advantages of these two methods. It is revealed that such structures are not only photo-active when exposed to visible light, but can also accumulate a photoinduced charge, thus allowing the catalytic reaction to be prolonged for a long time after the illumination is switched off (up to 48 h). With the help of EPR spectroscopy, paramagnetic defects in the samples were determined. The obtained results show good application prospects of the visible-light-driven TiO2-based nanoheterostructured microspheres in the environmental purification.
机译:二氧化钛是一种广泛使用的光催化材料,其具有如安全性,低成本和紫外线光照下的高反应性的优点。然而,由于宽带隙,因此,其在阳光下的适用性受到限制,因此较低的量子产量。用金属或非金属原子掺杂二氧化钛,并基于它创造异质障碍是克服这一缺点的一些最有效的方法。在此,我们提出了一种新的化合合成氮掺杂TiO2 / moo(3)和TiO 2 / WO(3)微球形纳米复合光催化剂的方式,结合了这两种方法的优点。据揭示,这种结构不仅当暴露于可见光时的光学活性,而且还可以积累光致电荷,从而允许在照射关闭后长时间延长催化反应(高达48小时) 。借助EPR光谱学,测定样品中的顺磁缺陷。所得结果在环境纯化中显示出可见光驱动的TiO2基纳米能结构微球的良好应用前景。

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