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Imprinted Apportionment of Functional Groups in Multivariate Metal-Organic Frameworks

机译:多元金属有机框架中官能团的印迹分配

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Sophisticated chemical processes widely observed in biological cells require precise apportionment regulation of building units, which inspires researchers to develop tailorable architectures with controllable heterogeneity for replication, recognition and information storage. However, it remains a substantial challenge to endow multivariate materials with internal sequences and controllable apportionments. Herein, we introduce a novel strategy to manipulate the apportionment of functional groups in multivariate metal-organic frameworks (MTV-MOFs) by preincorporating interlocked linkers into framework materials. As a proof of concept, the imprinted apportionment of functional groups within ZIF-8 was achieved by exchanging imine-based linker templates with original linkers initially. The removal of linker fragments by hydrolysis can be achieved via postsynthetic labilization, leading to the formation of architectures with controlled heterogeneity. The distributions of functional groups in the resulting imprinted MOFs can be tuned by judicious control of the interlocked chain length, which was further analyzed by computational methods. This work provides synthetic tools for precise control of pore environment and functionality sequences inside multi-component materials.
机译:在生物细胞中广泛观察到的复杂化学过程需要对建筑单元进行精确的分配调节,这激发了研究人员开发具有可控异质性的可定制架构,以进行复制,识别和信息存储。然而,赋予多元材料内部序列和可控的分配仍然是一个巨大的挑战。在这里,我们介绍了一种通过将互锁的连接子预先纳入框架材料来控制多元金属有机框架(MTV-MOF)中官能团分配的新策略。作为概念的证明,ZIF-8中功能基团的印迹分配是通过最初将基于亚胺的接头模板与原始接头进行交换而实现的。通过水解去除接头片段可以通过合成后的通透作用来实现,从而导致形成具有受控异质性的结构。可以通过对连锁链长度的明智控制来调整生成的印迹MOF中官能团的分布,并通过计算方法对其进行进一步分析。这项工作提供了用于精确控制多组分材料内部孔隙环境和功能序列的合成工具。

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