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Nitrogen-substituted TiO2: investigation on the photocatalytic activity in the visible light range

机译:氮取代的TiO2:可见光范围内的光催化活性研究

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摘要

Nitrogen-doped titanium oxides are attractive materials for the degradation of organic pollutants in water due to their photocatalytic activity in the visible light range. The evolution of the photocatalytic properties was studied on a number of TiO (x) N (y) powder samples where x varied from 2 to 0 (TiO2 to TiN) through increasing the nitrogen content (y = 0-1). X-ray diffraction and Raman spectroscopy showed that an anatase type TiO (x) N (y) was obtained at low nitrogen contents (< 2 wt%). With increasing nitrogen content a structural transition from anatase to cubic TiN was observed. Electron spin resonance measurements of the TiO (x) N (y) samples confirmed the presence of unpaired electrons and defects for the TiO (x) N (y) materials with low nitrogen content (< 2 wt%). The photo-induced activity of the TiO (x) N (y) materials was evaluated under VIS illumination of solutions containing methylene blue as an organic probe. The TiO (x) N (y) samples exhibited an improved photocatalytic activity under visible light illumination compared to TiO2 at nitrogen levels lower than 2 wt%. A photocatalytic activity could not be detected at nitrogen levels higher than 10 wt% and after conversion of the TiO (x) N (y) into the cubic phase. Optimum photocatalytic activity in the visible range can be achieved at nitrogen levels lower than 2 wt% for TiO (x) N (y) materials.
机译:氮掺杂的二氧化钛是有吸引力的材料,可降解水中的有机污染物,因为它们在可见光范围内具有光催化活性。在许多TiO(x)N(y)粉末样品上研究了光催化性能的演变,其中x通过增加氮含量(y = 0-1)从2变为0(TiO2到TiN)。 X射线衍射和拉曼光谱表明,在低氮含量(<2wt%)下获得了锐钛矿型TiO(x)N(y)。随着氮含量的增加,观察到了从锐钛矿到立方氮化钛的结构转变。 TiO(x)N(y)样品的电子自旋共振测量结果证实了氮含量低(<2 wt%)的TiO(x)N(y)材料存在不成对的电子和缺陷。 TiO(x)N(y)材料的光诱导活性在含有亚甲基蓝作为有机探针的溶液的VIS照射下进行了评估。与氮含量低于2 wt%的TiO2相比,TiO(x)N(y)样品在可见光照射下具有改善的光催化活性。在高于10 wt%的氮含量下以及将TiO(x)N(y)转化为立方相后,未检测到光催化活性。对于TiO(x)N(y)材料,当氮含量低于2 wt%时,可以实现可见光范围内的最佳光催化活性。

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