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L-proline functionalized polymers prepared by RAFT polymerization and their assemblies as supported organocatalysts

机译:通过RAFT聚合制备的L-脯氨酸官能化聚合物及其作为载体的有机催化剂的组装

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摘要

We have prepared a range of well-defined copolymers of styrene and l-proline functionalized styrene (5-11 kDa) using reversible addition-fragmentation chain transfer (RAFT) polymerization techniques and explored their use in supported catalysis. Upon deprotection of the l-proline functionalities, the solution self-assembly of these copolymers was investigated in mixed solvent systems. The resulting assemblies were characterized by dynamic light scattering, transmission electron microscopy (on graphene oxide substrates, along with cryo-TEM and tomography), and scanning electron microscopy. The application of these functional assemblies as supported catalysts for the aldol condensation reaction was explored using cyclohexanone and 4-nitrobenzaldehyde. The rate and selectivity of solution catalysis in our self-assembled system were comparable to those of l-proline, and a significant advantage of our system was that the polymer support could be utilized at lower catalyst loadings with comparable activity and also could be recycled a number of times while maintaining activity and selectivity.
机译:我们使用可逆的加成-断裂链转移(RAFT)聚合技术制备了一系列定义明确的苯乙烯和l-脯氨酸官能化苯乙烯共聚物(5-11 kDa),并探讨了它们在负载型催化中的用途。在对l-脯氨酸官能团进行脱保护后,在混合溶剂体系中研究了这些共聚物的溶液自组装。通过动态光散射,透射电子显微镜(在氧化石墨烯衬底上,以及低温TEM和断层扫描)和扫描电子显微镜对所得组件进行表征。使用环己酮和4-硝基苯甲醛探索了这些功能性组合物作为醛醇缩合反应的载体催化剂的应用。在我们的自组装系统中,溶液催化的速率和选择性与l-脯氨酸相当,并且我们系统的显着优势在于,聚合物载体可以在较低的催化剂负载量下使用,具有可比的活性,并且可以循环使用。保持活性和选择性的次数。

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