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A hydrothermal peroxo method for preparation of highly crystalline silica-titania photocatalysts

机译:水热过氧法制备高结晶度二氧化硅-二氧化钛光催化剂

摘要

A new completely inorganic method of preparation of silica–titania photocatalyst has been described. It has been established that the addition of silica promotes crystallinity of TiO2 anatase phase. Relative crystallinity and TiO2 crystal size in the silica–titania particles increase with the silica content until SiO2/TiO2 molar ratio of 0.9, but at higher molar ratios they start to decrease. The single-source precursor containing peroxo titanic (PTA) and silicic acids has been proved to be responsible for high crystallinity of TiO2 encapsulated into amorphous silica. It has been proposed that peroxo groups enhance rapid formation of crystalline titania seeds, while silica controls their growth. It has been concluded from the TEM that the most morphologically uniform anatase crystallites covered with SiO2 particles are prepared at SiO2/TiO2 molar ratio of 0.4. This sample, according to 29Si NMR, also shows the high content of hydroxylated silica Q3 and Q2 groups, and it is the most photocatalytically active in UV-assisted decomposition of methylene blue among the tested materials. It has been determined that the increase in the amount of the condensed Q4 silica in the mixed oxides leads to the decrease in photocatalytic performance of the material, despite its better crystallinity. High crystallinity, low degree of incorporation of Ti atoms in SiO2 in the mixed oxide and adsorption of methylene blue in the vicinity of photoactive sites on the hydroxylated silica have been considered as the main factors determining the high degradation degree of methylene blue in the presence of silica–titania.
机译:已经描述了一种制备二氧化硅-二氧化钛光催化剂的完全无机的新方法。已经确定,二氧化硅的添加促进了TiO 2锐钛矿相的结晶性。二氧化硅-二氧化钛颗粒中的相对结晶度和TiO2晶体尺寸随二氧化硅含量的增加而增加,直至SiO2 / TiO2摩尔比为0.9,但在较高的摩尔比时,它们开始减小。含过氧钛酸(PTA)和硅酸的单源前体已被证明是导致包裹在无定形二氧化硅中的TiO2高结晶度的原因。已经提出过氧基团增强了结晶二氧化钛种子的快速形成,而二氧化硅控制了它们的生长。由TEM得出的结论是,以0.4的SiO 2 / TiO 2摩尔比制备了形态上最均匀的被SiO 2颗粒覆盖的锐钛矿晶体。根据29Si NMR,该样品还显示出高含量的羟基化二氧化硅Q3和Q2基团,并且在受试材料中,它是亚甲基蓝的紫外线辅助分解中最具光催化活性的物质。已经确定,尽管混合氧化物中结晶性更好,但是混合氧化物中缩合Q4二氧化硅含量的增加导致该材料的光催化性能下降。高结晶度,混合氧化物中SiO2中Ti原子的掺入度低和羟基化二氧化硅上光敏部位附近亚甲基蓝的吸附被认为是决定在存在氧化亚甲基蓝时亚甲基蓝高降解度的主要因素。二氧化硅-二氧化钛。

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