Osorio Hernández Adrián, Goepel Michael, Poppitz David, Dvoyashkin Muslim, Gläser Roger
Institute of Chemical Technology, Universität Leipzig Linnéstr. 3 04103 Leipzig Germany
RSC Adv. 2025 Mar 5;15(9):7111-7120. doi: 10.1039/d4ra08189g. eCollection 2025 Feb 26.
One approach to increase the catalytic efficiency of TS-1 is the synthesis of TS-1 composite materials together with spherical activated carbon (SAC). Although increased Ti-site normalized catalytic activity of such composites compared to parent materials was observed, the reason for the increased activity is not fully understood. This study therefore aims to correlate the physico-chemical and catalytic activity of TS-1/SAC composites. Composite materials with different TS-1 weight fractions were prepared and applied in the heterogeneously catalyzed epoxidation of methyl oleate using aqueous HO. Up to seven times greater Ti-site normalized activity for the composites was observed compared to the parent TS-1. The pulsed field gradient (PFG) NMR was then used to rationalize the catalytic activity results. SAC was found to function similarly to a conventional catalyst support (, in supported metal catalysts) for the TS-1. The SAC thus allows control of the dispersion of and pore space arrangement between TS-1 crystals, which could be directly linked to an increase in catalytic activity. In addition to gaining insight into the fundamental principles of such composite catalysts, the importance of the sorption of reactant and product molecules on the catalytic activity was pointed out.
提高TS-1催化效率的一种方法是将TS-1与球形活性炭(SAC)合成复合材料。尽管观察到此类复合材料的钛位点归一化催化活性比母体材料有所提高,但其活性增加的原因尚未完全理解。因此,本研究旨在关联TS-1/SAC复合材料的物理化学性质和催化活性。制备了具有不同TS-1重量分数的复合材料,并将其应用于以过氧化氢水溶液对油酸甲酯进行的多相催化环氧化反应中。与母体TS-1相比,观察到复合材料的钛位点归一化活性提高了多达七倍。然后使用脉冲场梯度(PFG)核磁共振来解释催化活性结果。发现SAC对TS-1的作用类似于传统催化剂载体(如负载型金属催化剂中的载体)。因此,SAC可以控制TS-1晶体之间的分散和孔空间排列,这可能直接与催化活性的提高有关。除了深入了解此类复合催化剂的基本原理外,还指出了反应物和产物分子的吸附对催化活性的重要性。