首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Preparation and Catalytic Performances of Ultralarge-Pore TiSBA-15 Mesoporous Molecular Sieves with Very High Ti Content
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Preparation and Catalytic Performances of Ultralarge-Pore TiSBA-15 Mesoporous Molecular Sieves with Very High Ti Content

机译:Ti含量很高的超大孔TiSBA-15介孔分子筛的制备及催化性能

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Highly ordered TiSBA-15 mesoporous molecular sieves with different n_(Si)_(Ti) ratios and tunable pore diameters have been prepared through direct synthesis under various hydrochloric acid concentrations and synthetic temperatures.The structure and the textural parameters of the materials were investigated by powder X-ray diffraction and nitrogen adsorption/desorption measurements.Decrease of the acid concentration and n_(Si)_(Ti) ratio in the synthetic gel enhanced the amount of Ti incorporation in SBA-15 materials without affecting their structural order and textural parameters.Highly ordered mesoporous TiSBA-15 with a very high Ti content up to a n_(Si)_(Ti) ratio of 1.9 was prepared for the first time under the optimized synthesis conditions.Control of synthetic temperature resulted in tuning of pore geometries without structural deterioration and Ti content.Ultralarge-pore TiSBA-15 with a pore size of 12.6 nm and a pore volume of 1.3 cm~3 g~(-1) was also synthesized.The nature and the coordination of the Ti atoms in SBA-15 prepared under various synthesis conditions were investigated by UV-vis spectroscopy.It has been found that the Ti atoms are well-dispersed and mostly occupy the tetrahedral coordination under the optimized synthesis conditions.Catalytic performance of the obtained TiSBA-15 materials was also investigated through oxidation of styrene by hydrogen peroxide and tert-butylhydroperoxide as oxidants.
机译:通过在各种盐酸浓度和合成温度下直接合成制备了具有不同n_(Si)/ n_(Ti)比和可调孔径的高序TiSBA-15介孔分子筛,研究了材料的结构和织构参数通过粉末X射线衍射和氮吸附/解吸测量,合成凝胶中酸浓度和n_(Si)/ n_(Ti)比值的降低提高了SBA-15材料中Ti的掺入量,而不会影响其结构顺序和在优化的合成条件下,首次制备了具有高Ti含量,最高n_(Si)/ n_(Ti)比为1.9的高序介孔TiSBA-15。合成了孔径为12.6 nm,孔径为1.3 cm〜3 g〜(-1)的超大孔TiSBA-15。通过紫外-可见光谱研究了在各种合成条件下制备的SBA-15中Ti的稀土元素的配位和配位,发现在优化的合成条件下,Ti原子分散良好,且大部分占据四面体配位。还通过过氧化氢和叔丁基过氧化氢作为氧化剂氧化苯乙烯来研究所得TiSBA-15材料的性能。

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