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生色团-肽缀合物的位置异构体自组装成不同的形态。

Positional Isomers of Chromophore-Peptide Conjugates Self-Assemble into Different Morphologies.

机构信息

Laboratory of Organic Chemistry, ETH Zürich, Vladimir-Prelog-Weg 3, 8093, Zürich, Switzerland.

Max Planck Institute for Polymer Research, Ackermannweg 10, 55128, Mainz, Germany.

出版信息

Chemistry. 2018 Aug 27;24(48):12623-12629. doi: 10.1002/chem.201801545. Epub 2018 Jul 18.

Abstract

Ordering π-systems into defined supramolecular structures is important for the development of organic functional materials. In recent years, peptides with defined secondary structures and/or self-assembly properties were introduced as powerful tools to order peptide-chromophore conjugates into different morphologies. This work explores whether or not the directionality of peptides can be used to control the self-assembly. The position of the π-system in conjugates between oligoprolines and perylene monoimide (PMI) chromophores was varied by attaching the PMI moiety to the second-to-last residue from the C- and N-termini, respectively. Microscopic and diffraction analysis revealed that the positional isomers form distinctly different supramolecular architectures that extend into the micrometer regime. NMR spectroscopic studies in solution phase allowed correlation of the self-assembly properties with markedly different conformational preferences of the isomeric building blocks. These insights enabled the design of building blocks with predictable self-assembly properties. Thus, the directionality of peptides offers exciting opportunities for controlling the self-assembly and electronic properties of π-systems.

摘要

将π-体系有序排列成特定的超分子结构对于有机功能材料的发展非常重要。近年来,具有明确二级结构和/或自组装特性的肽被引入作为将肽-生色团缀合物有序排列成不同形态的有力工具。这项工作探讨了肽的方向性是否可以用于控制自组装。通过将 PMI 部分分别连接到 C 端和 N 端倒数第二个残基上,改变寡脯氨酸和苝单酰亚胺(PMI)生色团之间的缀合物中π-体系的位置。微观和衍射分析表明,位置异构体形成明显不同的超分子结构,延伸到微米级。溶液相中的 NMR 光谱研究允许将自组装性质与异构体构建块明显不同的构象偏好相关联。这些见解使设计具有可预测自组装性质的构建块成为可能。因此,肽的方向性为控制π-体系的自组装和电子性质提供了令人兴奋的机会。

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