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首页> 外文期刊>Journal of Sol-Gel Science and Technology >Preparation of Sn doped nanometric TiO2 powders by reflux and hydrothermal syntheses and their characterization
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Preparation of Sn doped nanometric TiO2 powders by reflux and hydrothermal syntheses and their characterization

机译:回流-水热合成法制备Sn掺杂纳米TiO 2 粉末及其表征

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Hydrothermal and reflux synthesis methods were utilized for the preparation of 5% Sn doped TiO2 nanopowders. Obtained powders were subjected to particle size and specific surface area measurements, flame atomic absorption spectroscopy, X-ray diffraction analyses and transmission electron microscopy examination. TiO2 powder prepared by hydrothermal synthesis presented a bimodal particle size distribution with average particle sizes of about 3 and 10 nm, whereas TiO2 powder synthesized by reflux method had an average particle size of 7 nm. Specific surface areas of hydrothermal and reflux synthesized TiO2 were 130 and 115 m2/g, respectively. Sn doping in TiO2 was 95.8% in hydrothermal and 86.4% in reflux synthesis as measured by FAAS, respectively. Photocatalytic activities of the obtained TiO2 powders were evaluated by decomposition of malachite green solution in a solar box. Photocatalytic activity of hydrothermally synthesized TiO2 was fairly higher in visible light and slightly higher in UV light than the activity of reflux synthesized TiO2.
机译:利用水热回流法制备了5%锡掺杂的TiO 2 纳米粉。对获得的粉末进行粒度和比表面积测量,火焰原子吸收光谱法,X射线衍射分析和透射电子显微镜检查。水热合成法制备的TiO 2 粉末呈双峰分布,平均粒径约为3和10 nm,而回流法合成的TiO 2 粉末具有平均粒径。尺寸为7 nm。水热和回流合成TiO 2 的比表面积分别为130和115 m 2 / g。火焰原子吸收光谱法测得,TiO 2 中的Sn掺杂在水热中为95.8%,在回流合成中为86.4%。通过在太阳能箱中分解孔雀石绿溶液,评价了所得的TiO 2 粉末的光催化活性。与回流合成TiO 2 的活性相比,水热合成TiO 2 的光催化活性在可见光下较高,而在紫外光下则略高。

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