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具有多种螺旋态的超分子共组装体的螺旋感偏置。

Biasing the Screw-Sense of Supramolecular Coassemblies Featuring Multiple Helical States.

机构信息

Institute for Complex Molecular Systems and Laboratory of Macromolecular and Organic Chemistry, Eindhoven University of Technology, 5600 MB Eindhoven, The Netherlands.

Chimie Moléculaire, Macromoléculaire, Matériaux, ESPCI Paris, Université PSL, CNRS, 75005 Paris, France.

出版信息

J Am Chem Soc. 2020 Nov 25;142(47):20191-20200. doi: 10.1021/jacs.0c10456. Epub 2020 Nov 10.

Abstract

By enchaining a small fraction of chiral monomer units, the helical sense of a dynamic polymer constructed from achiral monomer units can be disproportionately biased. This phenomenon, known as the sergeants-and-soldiers (S&S) effect, has been found to be widely applicable to dynamic covalent and supramolecular polymers. However, it has not been exemplified with a supramolecular polymer that features multiple helical states. Herein, we demonstrate the S&S effect in the context of the temperature-controlled supramolecular copolymerization of chiral and achiral biphenyl tetracarboxamides in alkanes. The one-dimensional helical structures presented in this study are unique because they exhibit three distinct helical states, two of which are triggered by coassembling with monomeric water that is codissolved in the solvent. The self-assembly pathways are rationalized using a combination of mathematical fitting and simulations with a thermodynamic mass-balance model. We observe an unprecedented case of an "abnormal" S&S effect by changing the side chains of the achiral soldier. Although the molecular structure of these aggregates remains elusive, the coassembly of water is found to have a profound impact on the helical excess.

摘要

通过将一小部分手性单体单元键合,可以使由非手性单体单元构建的动态聚合物的螺旋感产生不成比例的偏向。这种现象被称为“兵和将”(S&S)效应,已被发现广泛适用于动态共价和超分子聚合物。然而,它尚未在具有多种螺旋状态的超分子聚合物中得到例证。在这里,我们在烷烃中手性和非手性联苯四羧酸酰胺的温度控制的超分子共聚的背景下证明了 S&S 效应。本研究中呈现的一维螺旋结构是独特的,因为它们表现出三种不同的螺旋状态,其中两种是通过与共溶解在溶剂中的单体水组装而触发的。使用数学拟合和热力学质量平衡模型的模拟相结合,对自组装途径进行了合理化。通过改变非手性士兵的侧链,我们观察到了一种前所未有的“异常”S&S 效应的情况。尽管这些聚集体的分子结构仍然难以捉摸,但发现水的共组装对螺旋过剩有深远的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b64f/7705959/ce25630cfb75/ja0c10456_0001.jpg

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