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Photosensitized and photocatalyzed degradation of azo dye using Ln~(n+)-TiO_2 sol in aqueous solution under visible light irradiation

机译:Ln〜(n +)-TiO_2溶胶在水溶液中可见光照射下偶氮染料的光敏和光催化降解

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With attempts to improve the photocatalytic activity of titanium dioxide (TiO_2) catalysts and also extend the light absorption towards the visible light region, three types of the lanthanide ion-modified titanium dioxide (Ln~(n+)-TiO_2) sol catalysts were prepared by a chemical method of coprecipitation-peptization. The microstructure and morphology of Ln~(n+)-TiO_2 sol samples were characterized by atom force microscope, particle size distribution, and X-ray diffraction measurements. The analytical results showed that these sol catalysts had better particles distribution and interfacial adsoiption ability than the powder catalysts in suspension. The photocatalytic degradation of azo dye (X-3B) in Ln~(n+)-TiO_2 hydrosol reaction system was studied to determine photocatalytic activity of the crystallized Ln~(n+)-TiO_2 sol catalysts. Both TiO2 and Ln~(n+)-TiO_2 sol catalysts demonstrated higher photocatalytic reactivity than Deggusa P25 TO_2 powder catalyst significantly. The experiments also confirmed that the modification of TiO_2 with lanthanide ions doping can improve the efficiency of interfacial adsorption and photocatalytic reactivity with azo dye. The photocurrent response of catalysts under visible light irradiation showed that the Ln~(n+)-TiO_2 sol catalysts had significant absorption to visible light. Since this hydrosol reaction system using the Ln~(n+)-TiO_2 sol catalyst has several advantages over most conventional powder reaction systems, it may provide a new approach for further development of photocatalytic reaction systems in the future.
机译:为了提高二氧化钛(TiO_2)催化剂的光催化活性,同时也将光吸收范围扩大到可见光区域,制备了三种镧系离子改性的二氧化钛(Ln〜(n +)-TiO_2)溶胶催化剂。共沉淀-肽化的化学方法。通过原子力显微镜,粒度分布和X射线衍射测量对Ln〜(n +)-TiO_2溶胶样品的微观结构和形貌进行了表征。分析结果表明,与悬浮液中的粉状催化剂相比,这些溶胶催化剂具有更好的颗粒分布和界面吸附能力。研究了Ln〜(n +)-TiO_2溶胶反应体系中偶氮染料(X-3B)的光催化降解,以测定结晶的Ln〜(n +)-TiO_2溶胶催化剂的光催化活性。 TiO2和Ln〜(n +)-TiO_2溶胶催化剂均比Deggusa P25 TO_2粉末催化剂表现出更高的光催化反应活性。实验还证实,镧系元素离子掺杂修饰TiO_2可以提高界面吸附效率和与偶氮染料的光催化反应活性。可见光下催化剂的光电流响应表明,Ln〜(n +)-TiO_2溶胶催化剂对可见光有明显的吸收。由于这种使用Ln〜(n +)-TiO_2溶胶催化剂的水溶胶反应系统具有优于大多数常规粉末反应系统的多个优点,因此它可能为将来进一步开发光催化反应系统提供新的方法。

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