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通过氢键对的协同堆积形成的螺旋自组装聚合物。

Helical self-assembled polymers from cooperative stacking of hydrogen-bonded pairs.

作者信息

Hirschberg J H, Brunsveld L, Ramzi A, Vekemans J A, Sijbesma R P, Meijer E W

机构信息

Laboratory of Macromolecular and Organic Chemistry and Dutch Polymer Institute, Eindhoven University of Technology, The Netherlands.

出版信息

Nature. 2000 Sep 14;407(6801):167-70. doi: 10.1038/35025027.

Abstract

The double helix of DNA epitomizes this molecule's ability to self-assemble in aqueous solutions into a complex chiral structure using hydrogen bonding and hydrophobic interactions. Non-covalently interacting molecules in organic solvents are used to design systems that similarly form controlled architectures. Peripheral chiral centres in assemblies and chiral side chains attached to a polymer backbone, have been shown to induce chirality at the supramolecular level, and highly ordered structures stable in water are also known. However, it remains difficult to rationally exploit non-covalent interactions for the formation of chiral assemblies that are stable in water, where solvent molecules can compete effectively for hydrogen bonds. Here we describe a general strategy for the design of functionalized monomer units and their association in either water or alkanes into non-covalently linked polymeric structures with controlled helicity and chain length. The monomers consist of bifunctionalized ureidotriazine units connected by a spacer and carrying solubilizing chains at the periphery. This design allows for dimerization through self-complementary quadruple hydrogen bonding between the units and solvophobically induced stacking of the dimers into columnar polymeric architectures, whose structure and helicity can be adjusted by tuning the nature of the solubilizing side chains.

摘要

DNA的双螺旋结构体现了这种分子在水溶液中利用氢键和疏水相互作用自组装成复杂手性结构的能力。有机溶剂中通过非共价相互作用的分子被用于设计能类似地形成可控结构的体系。已表明组装体中的外围手性中心以及连接在聚合物主链上的手性侧链能在超分子水平诱导手性,并且在水中稳定的高度有序结构也是已知的。然而,要合理利用非共价相互作用来形成在水中稳定的手性组装体仍然很困难,因为溶剂分子能有效地竞争氢键。在此,我们描述了一种设计功能化单体单元的通用策略,以及它们在水或烷烃中缔合形成具有可控螺旋度和链长的非共价连接聚合物结构的过程。单体由通过间隔基连接且在周边带有增溶链的双功能化脲基三嗪单元组成。这种设计允许通过单元之间的自互补四重氢键进行二聚化,并通过溶剂化诱导二聚体堆积成柱状聚合物结构,其结构和螺旋度可通过调节增溶侧链的性质来调整。

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