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水相中超分子聚合物:基于定向疏水相互作用的合理设计。

Supramolecular polymers in aqueous medium: rational design based on directional hydrophobic interactions.

机构信息

Department of Organic Chemistry, Weizmann Institute of Science, Rehovot 76100, Israel.

出版信息

J Am Chem Soc. 2011 Oct 12;133(40):16201-11. doi: 10.1021/ja2066225. Epub 2011 Sep 20.

Abstract

Self-assembly in aqueous medium is of primary importance and widely employs hydrophobic interactions. Yet, unlike directional hydrogen bonds, hydrophobic interactions lack directionality, making difficult rational self-assembly design. Directional hydrophobic motif would significantly enhance rational design in aqueous self-assembly, yet general approaches to such interactions are currently lacking. Here, we show that pairwise directional hydrophobic/π-stacking interactions can be designed using well-defined sterics and supramolecular multivalency. Our system utilizes a hexasubstituted benzene scaffold decorated with 3 (compound 1) or 6 (compound 2) amphiphilc perylene diimides. It imposes a pairwise self-assembly mode, leading to well-defined supramolecular polymers in aqueous medium. the assemblies were characterized using cryogenic electron microscopy, small-angle X-ray scattering, optical spectroscopy, and EPR. Supramolecular polymerization studies in the case of 2 revealed association constants in 10(8) M(-1) range, and significant enthalpic contribution to the polymerization free energy. The pairwise PDI motif enables exciton confinement and localized emission in the polymers based on 1 and 2's unique photonic behavior, untypical of the extended π-stacked systems. Directional pairwise hydrophobic interactions introduce a novel strategy for rational design of noncovalent assemblies in aqueous medium, and bring about a unique photofunction.

摘要

在水相介质中,自组装具有重要意义,并广泛利用疏水相互作用。然而,与有向氢键不同,疏水相互作用缺乏方向性,使得合理的自组装设计变得困难。有向疏水基序将显著增强水相自组装的合理设计,但目前缺乏一般的此类相互作用方法。在这里,我们展示了使用定义明确的立体化学和超分子多价性,可以设计成对的有向疏水/π-堆积相互作用。我们的系统利用六取代苯骨架,用 3(化合物 1)或 6(化合物 2)个两亲性苝二酰亚胺进行修饰。它采用了一种成对的自组装模式,在水相中导致了明确的超分子聚合物。使用低温电子显微镜、小角 X 射线散射、光学光谱和 EPR 对组装体进行了表征。在 2 的情况下进行超分子聚合研究表明,结合常数在 10(8) M(-1)范围内,并且对聚合自由能有显著的焓贡献。基于 1 和 2 的独特光子行为,即不典型的扩展 π-堆积系统,对 PDI 的这种两两相互作用基序能够实现聚合物中的激子限制和局域发射。有向的两两疏水相互作用为在水相介质中合理设计非共价组装提供了一种新策略,并带来了独特的光功能。

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