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一种嵌段超分子聚合物及其动力学增强稳定性

A Block Supramolecular Polymer and Its Kinetically Enhanced Stability.

作者信息

Jung Sung Ho, Bochicchio Davide, Pavan Giovanni M, Takeuchi Masayuki, Sugiyasu Kazunori

机构信息

National Institute for Materials Science (NIMS) , 1-2-1 Sengen , Tsukuba , Ibaraki 305-0047 , Japan.

Department of Innovative Technologies , University of Applied Sciences and Arts of Southern Switzerland , CH-6928 Manno , Switzerland.

出版信息

J Am Chem Soc. 2018 Aug 22;140(33):10570-10577. doi: 10.1021/jacs.8b06016. Epub 2018 Aug 14.

Abstract

Biomolecular systems serve as an inspiration for the creation of multicomponent synthetic supramolecular systems that can be utilized to develop functional materials with complexity. However, supramolecular systems rapidly reach an equilibrium state through dynamic and reversible noncovalent bonds, resulting in a disorganized mixture of components rather than a system in which individual components function cooperatively and/or independently. Thus, efficient synthetic strategies and characterization methods for intricate multicomponent supramolecular assemblies need to be developed. Herein, we report the synthesis of porphyrin-based supramolecular polymers (SPs) in which two distinct block segments consisting of different metal porphyrins are connected: i.e., block supramolecular polymers (BSPs). BSPs with a controlled length and narrow polydispersity were achieved through seeded-growth by a solvent mixing protocol. Interestingly, the block structure permitted the SP as an inner block to coexist with a reagent that was otherwise incompatible with the SP alone. We infer that the inner SP block is compartmentalized in the block structure and endowed with the kinetic stability. Molecular simulations revealed that monomer exchange occurs from the termini of the SP, which corroborated the enhanced stability of the BSP. These results are expected to pave the way for the design of more complex multicomponent supramolecular systems.

摘要

生物分子系统为创建多组分合成超分子系统提供了灵感,这些超分子系统可用于开发具有复杂性的功能材料。然而,超分子系统通过动态可逆的非共价键迅速达到平衡状态,导致组分形成杂乱的混合物,而非单个组分协同和/或独立发挥功能的系统。因此,需要开发针对复杂多组分超分子组装体的高效合成策略和表征方法。在此,我们报道了基于卟啉的超分子聚合物(SPs)的合成,其中由不同金属卟啉组成的两个不同嵌段相连,即嵌段超分子聚合物(BSPs)。通过溶剂混合方案的种子生长实现了具有可控长度和窄多分散性的BSPs。有趣的是,嵌段结构使作为内部嵌段的SP能够与单独的SP不相容的试剂共存。我们推断内部SP嵌段在嵌段结构中被分隔开并具有动力学稳定性。分子模拟表明单体从SP的末端发生交换,这证实了BSP稳定性的增强。这些结果有望为设计更复杂的多组分超分子系统铺平道路。

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