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首页> 外文期刊>Journal of Sol-Gel Science and Technology >Titania-heteropolyacid composites (TiO2-HPA) as catalyst for the green oxidation of trimethylphenol to 2,3,5-trimethyl-p-benzoquinone
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Titania-heteropolyacid composites (TiO2-HPA) as catalyst for the green oxidation of trimethylphenol to 2,3,5-trimethyl-p-benzoquinone

机译:二氧化钛 - 杂多酸复合材料(TiO2-HPA)作为三甲基苯酚的绿色氧化至2,3,5-三甲基-P-苯醌的催化剂

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New catalysts containing phosphomolybdic acid (PMA) and vanadophosphomolybdic acid (VPMA) in a titania matrix were synthesized by the sol-gel process with different heteropolyacid loads (5%, 15%, and 30% (w/w): 5PMA-TiO2, 15PMA-TiO2, 30PMA-TiO2, 5VPMA-TiO2, 15VPMA-TiO2, and 30VPMA-TiO2). The techniques used to characterize the materials were XRD, DRS, SEM, FT-IR, P-31 MAS-NMR, potentiometric titration with n-butylamine, and N-2 physisorption at -196 degrees C. The materials were used as heterogeneous catalysts in the oxidation of 2,3,6-trimethylphenol (TMP) to 2,3,5-trimethyl-p-benzoquinone (TMBQ), a key intermediate in vitamin E synthesis. The catalysts allowed an ecofriendly TMBQ synthesis, using ethanol as solvent and aqueous hydrogen peroxide as a clean oxidizing agent, at room temperature. The conversion of TMP reached 90% and 99% for the samples with 15PMA-TiO2 and 15VPMA-TiO2, respectively, after 4 h. The amount of Mo and V in the reaction medium was determined by ICP-MS, which showed leaching of only 17-18% Mo, but 48% V. Reuse of the catalysts was performed. For 15PMA-TiO2, the conversion was maintained in the second cycle. A homolytic mechanism was proposed for TMBQ synthesis, which involved the formation of a peroxometallic species through an HPA-Ti center.
机译:含有磷酸钼酸(PMA)和钒磷酰基钼酸(VPMA)的新催化剂由具有不同杂酸负载(5%,15%和30%(w / w):5 pma-tio2, 15 pma-tio2,30 pma-tio2,5vpma-tiO2,15vpma-tiO2和30vpma-tiO2)。用于表征材料的技术是XRD,DRS,SEM,FT-IR,P-31 MAS-NMR,电位滴定,与正丁胺,N-2在-196摄氏度下的N-2物理吸附。材料被用作异质催化剂在2,3,6-三甲基苯酚(TMP)至2,3,5-三甲基-P-苯醌(TMBQ)的氧化中,是维生素E合成的关键中间体。催化剂允许Ecofriendly TMBQ合成,使用乙醇作为溶剂和过氧化氢作为清洁氧化剂,在室温下。在4小时后,分别将TMP的转化率分别为15 pMA-tiO2和15VPMA-TiO2的样品达到90%和99%。通过ICP-MS测定反应介质中的Mo和V的量,其显示仅浸出17-18%的Mo,但是催化剂的再利用48%V.对于15 pMA-tio2,将转换保持在第二个循环中。提出了均解机制的TMBQ合成,其涉及通过HPA-TI中心形成过氧物质。

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