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Superacidic Mesoporous Catalysts Containing Embedded Heteropolyacids

机译:含有嵌入式杂酸的超级酸性介孔催化剂

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Superacidic mesoporous silica materials containing embedded heteropolyacids (HPAs) were synthesized by sol-gel method in acidic media. In these materials, HPAs were immobilized into the silica structure covalently. The most acidic materials were obtained at the use of Pluronic P123 as a non-ionic pore-forming agent. Ionic surfactants also formed mesoporous structures, however, their interaction with HPA reduced acidity of the products. Obtained materials were tested as heterogeneous catalysts in liquid-phase alkylation of 1,3,5-trimethylbenzene by 1-decene. The most effective catalyst demonstrated higher conversion of starting substances to long-chain isomeric alkylbenzenes as compared to the activity of zeolite HY, a well-known alkylation catalyst. No leaching of HPA from silica gel was observed after the alkylation.
机译:通过酸性介质中的溶胶 - 凝胶法合成含有包围的杂酸的超级酰胺介孔二氧化硅材料(HPA)。 在这些材料中,将HPA固定在二氧化硅结构中。 在使用Pluronic P123作为非离子孔隙成型剂时获得最酸性的材料。 离子表面活性剂也形成了中孔结构,然而它们与HPA的相互作用降低了产物的酸度。 通过1-癸烯在1,3,5-三甲基苯的液相烷基化中测试获得的材料作为非均相催化剂。 与沸石Hy的活性相比,最有效的催化剂表明,与沸石Hy的活性相比,将起始物质转化为长链异构烷基苯,众所周知的烷基化催化剂。 在烷基化后,不观察到来自硅胶的HPA的浸出。

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