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Mesoscopic superstructures of flexible porous coordination polymers synthesized via coordination replication

机译:通过配位复制合成的柔性多孔配位聚合物的介观上层结构

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摘要

The coordination replication technique is employed for the direct conversion of a macro- and mesoporous Cu(OH)-polyacrylamide composite to three-dimensional superstructures consisting of the flexible porous coordination polymers, Cu(bdc)(MeOH) and Cu(bdc)(bpy) (bdc = 1, 4-benzenedicarboxylate, bpy = 4, 4′-bipyridine). Detailed characterization of the replicated systems reveals that the structuralization plays an important role in determining the adsorptive properties of the replicated systems, and that the immobilization of the crystals within a higher-order architecture also affects its structural and dynamic properties. The polyacrylamide polymer is also found to be crucial for maintaining the structuralization of the monolithic systems, and in providing the mechanical robustness required for manual handling. In all, the results discussed here demonstrate a significant expansion in the scope of the coordination replication strategy, and further confirms its utility as a highly versatile platform for the preparation of functional three-dimensional superstructures of porous coordination polymers.
机译:配位复制技术用于将大孔和中孔Cu(OH)-聚丙烯酰胺复合材料直接转化为由柔性多孔配位聚合物Cu(bdc)(MeOH)和Cu(bdc)(bpy)组成的三维超结构)(bdc = 1,4-苯二甲酸,bpy = 4,4'-联吡啶)。复制系统的详细表征表明,结构化在确定复制系统的吸附性能中起着重要作用,并且高阶结构中晶体的固定化也影响其结构和动态性能。还发现聚丙烯酰胺聚合物对于维持整体系统的结构化以及提供手动处理所需的机械强度至关重要。总而言之,此处讨论的结果证明了配位复制策略范围的显着扩展,并进一步证实了其作为制备多孔配位聚合物的功能性三维超结构的高度通用平台的实用性。

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