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Recoverable and Recyclable Catalysts for Multi-Step Reaction Networks

机译:用于多步反应网络的可回收和可回收催化剂

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Amine functionalized superparamagnetic cobalt spinel ferrite nanoparticles have been synthesized and evaluated in one-pot, acid/base catalyzed cascade reactions. When combined with traditional, nonmagnetic catalysts, use of these nanoparticles facilitated the straightforward recovery of multiple, different catalysts from one-pot, multi-step reactions. Sulfonic acid functionalized Amberlyst polymer resins catalyzed the deacetalization of benzaldehyde dimethylacetal to benzaldehyde. The amine functionalized nanoparticles then catalyzed the Knoevenagel reaction of benzaldehyde with malononitrile. Post-reaction, the acidic resin and basic nanoparticle catalysts were separated magnetically and recovered in pure form. Kinetics of initial and recycle reactions indicate no catalyst deactivation. This research illustrates the first example of recovering pure catalysts from one-pot, multi-step reactions, made possible by utilizing the superparamagnetic character of the CoFe_2O_4 nanoparticles.
机译:胺官能化超顺磁性钴尖晶石铁氧体纳米颗粒已合成并在单罐中进行了评价,酸/碱催化级联反应。当与传统的非磁性催化剂结合时,使用这些纳米颗粒的使用促进了从一锅,多步反应的多个不同催化剂的直接回收。磺酸官能化的琥珀聚合物树脂催化苯甲醛二甲基乙醛的脱象至苯甲醛。然后胺官能化纳米颗粒催化苯甲醛与丙二腈的knoevenagel反应。后反应后,酸性树脂和碱性纳米颗粒催化剂在磁性上分离并以纯形式回收。初始和再循环反应的动力学表明没有催化剂失活。该研究说明了通过利用CoFe_2O_4纳米颗粒的超顺磁特性来回收从一锅,多步反应中回收纯催化剂的第一实施例。

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