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Silver-loaded nitrogen-doped yolk-shell mesoporous TiO2 hollow microspheres with enhanced visible light photocatalytic activity

机译:Silver-loaded nitrogen-doped yolk-shell介孔二氧化钛中空微球与增强可见光催化活性

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Silver-loaded nitrogen-doped yolk-shell mesoporous TiO2 hollow microspheres (Ag-N-TiO2-YSM) were prepared by employing acetic acid as the hollowing controller and triethanolamine as the N source for the first time. Ag nanoparticles (NPs) were uniformly deposited by a simple in situ photo-reduction method, which can prevent the aggregation of Ag NPs. The efficiency of the as-prepared samples was investigated by monitoring the degradation of rhodamine B and ciprofloxacin under visible light irradiation. The experimental results indicate that N-doped yolk-shell mesoporous TiO2 hollow microspheres show higher photocatalytic activity than P25 TiO2 under visible light irradiation because of N doping and the unique yolk-shell structure. In addition, Ag-N-TiO2-YSM shows enhanced activity compared with N-TiO2-YSM due to the SPR absorption of silver NPs and the fast generation, separation and transportation of the photogenerated carriers. Moreover, the Ag contents can affect the photocatalytic activity of the Ag-N-TiO2-YSM composite. A suitable amount of Ag deposition gives the highest photocatalytic activity. A higher loading does not improve the photocatalytic activity of N-TiO2-YSM further. The active species generated in the photocatalytic system were also investigated. Based on our experimental results, a possible photocatalytic mechanism was proposed. The strategy presented here gives a promising route towards the development of delicate metal@hollow semiconductor composites for many applications in photocatalysis.
机译:Silver-loaded nitrogen-doped yolk-shell介孔二氧化钛中空微球(Ag-N-TiO2-YSM)采用醋酸的准备挖空控制器和三乙醇胺为N第一次来源。是由一个简单的均匀沉积原位photo-reduction方法,它可以防止Ag NPs的聚合。好了被调查样本若丹明B的降解和监控可见光照射下环丙沙星。实验结果表明,n型yolk-shell介孔二氧化钛中空微球显示更高的二氧化钛光催化活性比P25可见光照射下的N掺杂和独特的yolk-shell结构。此外,Ag-N-TiO2-YSM显示增强的活动相比之下,N-TiO2-YSM由于SPR银NPs吸收和快速生成,分离和运输的photogenerated运营商。内容会影响光催化活性Ag-N-TiO2-YSM复合。Ag)的沉积提供了最高的光催化活动。进一步N-TiO2-YSM催化活性的。在生成的活性物种光催化系统也被调查。根据我们的实验结果,一个可能的提出了光催化机理。这里介绍给了一个有前途的战略路线对精致metal@hollow的发展半导体复合材料对于许多应用程序光催化作用。

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