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Investigation of Room Temperature Synthesis of Titanium Dioxide Nanoclusters Dispersed on Cubic MCM-48 Mesoporous Materials

机译:立方MCM-48介孔材料上分散的二氧化钛纳米团簇室温合成的研究

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Titania containing cubic MCM-48 mesoporous materials were synthesized successfully at room temperature by a modified Stöber method. The integrity of the cubic mesoporous phase was retained even at relatively high loadings of titania. The TiO2-MCM-48 materials were extensively characterized by a variety of physico-chemical techniques. The physico-chemical characterization indicate that Ti4+ ions can be substituted in framework tetrahedral positions. The relative amount of Ti4+ ions in tetrahedral position was dependent on the order of addition of the precursor. Even at relatively high loadings of titania, no distinct bulk phase of titania could be observed indicating that the titania nanoclusters are well dispersed on the high surface area mesoporous material and probably exist as amorphous nanoclusters. The TiO2-MCM-48 materials were found to exhibit 100% selectivity in the cyclohexene oxidation at room temperature in the presence of tert-butylhydroperoxide (t-BHP) as the oxidant. The results suggest that room temperature synthesis is an attractive option for the preparation of TiO2-MCM-48 materials with interesting catalytic properties.
机译:改进的Stöber方法在室温下成功合成了含二氧化钛的立方MCM-48介孔材料。即使在相对较高的二氧化钛负载下,立方介孔相的完整性也得以保持。 TiO 2 -MCM-48材料通过多种物理化学技术得到了广泛的表征。理化性质表明Ti 4 + 离子可在骨架四面体位置被取代。四面体位置的Ti 4 + 离子的相对数量取决于前体的添加顺序。即使在相对高的二氧化钛负载量下,也不能观察到明显的二氧化钛本体相,这表明二氧​​化钛纳米团簇很好地分散在高表面积的介孔材料上,并且可能以非晶态纳米团簇的形式存在。发现TiO 2 -MCM-48材料在室温下以叔丁基氢过氧化物(t-BHP)为氧化剂在环己烯氧化中表现出100%的选择性。结果表明,室温合成是制备具有有趣催化性能的TiO 2 -MCM-48材料的一种有吸引力的选择。

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