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Synthesis of Si N co-Doped Nano-Sized TiO2 with High Thermal Stability and Photocatalytic Activity by Mechanochemical Method

机译:机械化学法合成高热稳定性和光催化活性的SiN共掺杂纳米TiO 2

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摘要

Τhe photocatalytic activity in the range of visible light wavelengths and the thermal stability of the structure were significantly enhanced in Si, N co-doped nano-sized TiO2, and synthesized through high-energy mechanical milling of TiO2 and SiO2 powders, which was followed by calcination at 600 °C in an ammonia atmosphere. High-energy mechanical milling had a pronounced effect on the mixing and the reaction between the starting powders and greatly favored the transformation of the resultant powder mixture into an amorphous phase that contained a large number of evenly-dispersed nanocrystalline TiO2 particles as anatase seeds. The experimental results suggest that the elements were homogeneously dispersed at an atomic level in this amorphous phase. After calcination, most of the amorphous phase was crystallized, which resulted in a unique nano-sized crystalline-core/disordered-shell morphology. This novel experimental process is simple, template-free, and provides features of high reproducibility in large-scale industrial production.
机译:Si,N共掺杂纳米TiO2中的可见光波长范围内的光催化活性和结构的热稳定性得到了显着增强,并通过高能机械研磨TiO2和SiO2粉末进行合成,然后在氨气氛下于600°C煅烧。高能机械研磨对原料粉末之间的混合和反应有显着影响,并且极大地促进了所得粉末混合物向无定形相的转化,该无定形相包含大量均匀分散的纳米晶TiO 2颗粒作为锐钛矿晶种。实验结果表明,元素在该非晶相中以原子水平均匀分散。煅烧后,大多数无定形相结晶,这导致了独特的纳米级晶核/无序壳形貌。这种新颖的实验过程简单,无需模板,并且在大规模工业生产中具有高可重复性的特征。

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