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首页> 外文期刊>Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology >Synthesis and characterisation of (hydroxypropyl)-2-aminomethyl pyridine containing hybrid polymer-silica SBA-15 materials supporting Mo(VI) centres and their use as heterogeneous catalysts for oct-1-ene epoxidation
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Synthesis and characterisation of (hydroxypropyl)-2-aminomethyl pyridine containing hybrid polymer-silica SBA-15 materials supporting Mo(VI) centres and their use as heterogeneous catalysts for oct-1-ene epoxidation

机译:含Mo(VI)中心的含(羟丙基)-2-氨基甲基吡啶的杂化聚合物-二氧化硅SBA-15材料的合成,表征及其用作辛-1-烯环氧化的非均相催化剂的用途

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摘要

Hybrid organic-inorganic amino alcohol containing PGMA-SBA-15 materials have been prepared by first tethering poly(glycidyl methacrylate) (PGMA) chains onto the surface of SBA-15 materials using the atom transfer radical polymerization (ATRP) technique. The procedure involves the functionalization of silica-based SBA-15 materials with aminopropyl groups and 2-bromo-2 methylpropionyl bromide to form ATRP initiator species. Subsequent graft ATRP of glycidyl methacrylate leads to a large decrease of the textural properties in the final material, but nevertheless, the use of the ultra large pore SBA-15 support is beneficial for the achievement of porous hybrid organic-inorganic materials. Reaction of the glycidyl pendant groups in the tethered PGMA chains with 2-aminomethyl pyridine allows the formation of the (hydroxypropyl)-2-aminomethyl pyridine ligands to which molybdenum(VI) species catalytically active for epoxidation of terminal alkenes are bound. The materials thus prepared display high catalytic activity and excellent stability and reusability in the epoxidation of 1-octene with TBHP as oxidant. The presence of mesoporosity in the final Mo(VI)-containing hybrid materials boosts the catalytic activity of supported metal centres.
机译:通过首先使用原子转移自由基聚合(ATRP)技术将聚甲基丙烯酸缩水甘油酯(PGMA)链束缚在SBA-15材料的表面上,来制备含有杂化有机-无机氨基醇的PGMA-SBA-15材料。该程序涉及将具有氨基丙基和2-溴-2甲基丙酰溴的二氧化硅基SBA-15材料功能化,以形成ATRP引发剂。随后的甲基丙烯酸缩水甘油酯的接枝ATRP导致最终材料的质构性能大大降低,但尽管如此,超大孔SBA-15载体的使用还是有利于获得多孔杂化有机-无机材料。束缚的PGMA链中的缩水甘油基侧基与2-氨基甲基吡啶的反应可以形成(羟丙基)-2-氨基甲基吡啶配体,在该配体上结合了对末端烯烃环氧化具有催化活性的钼(VI)物种。如此制备的材料在以TBHP为氧化剂的1-辛烯环氧化中显示出高催化活性和优异的稳定性和可重复使用性。最终的含Mo(VI)杂化材料中介孔的存在增强了负载金属中心的催化活性。

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