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通过蔷薇花状介导的随机超分子共聚以及通过光交联的单体自分类来协调自组装纤维的拓扑特征。

Harmonizing Topological Features of Self-Assembled Fibers by Rosette-Mediated Random Supramolecular Copolymerization and Self-Sorting of Monomers by Photo-Cross-Linking.

机构信息

Division of Advanced Science and Engineering, Graduate School of Science and Engineering, Chiba University, 1-33 Yayoi-cho, Inage-ku, Chiba 263-8522, Japan.

Institute for Advanced Academic Research (IAAR), Chiba University, 1-33, Yayoi-cho, Inage-ku, Chiba 263-8522, Japan.

出版信息

J Am Chem Soc. 2022 Jul 27;144(29):13374-13383. doi: 10.1021/jacs.2c05484. Epub 2022 Jul 14.

Abstract

Random copolymerization is an effective approach to synthesize the desired polymers by harmonizing distinct properties of different monomers. For supramolecular polymers in which monomer binding is inherently dynamic, it is difficult to achieve random copolymerization of monomers with distinct molecular structures and properties due to an enthalpic advantage upon self-recognition (self-sorting). Herein, we demonstrate an example of thermodynamically controlled random supramolecular copolymerization of two monomers functionalized with barbituric acid via the formation of six-membered hydrogen-bonded rosette intermediates to exhibit structural harmonization of the two main-chain motifs, i.e., intrinsically curved and linear motifs. One monomer based on naphthalene chromophore exclusively forms toroidal fibers, whereas another one bearing additional photoreactive diacetylene moiety affords linearly elongated fibers. Supramolecular copolymerization of the two monomers is achieved by cooling hot monomer mixtures in a nonpolar solvent, which results in the formation of thermodynamically stable spirally folded yet elongated fibers. Atomic force microscopic observations and theoretical simulations of the experimental data obtained by absorption spectroscopy reveal the homopolymerization of the diacetylene-functionalized monomer in the high-temperature region, followed by the incorporation of the naphthalene monomer in the medium-temperature region to form supramolecular copolymers with random monomer sequence. Finally, we demonstrate that the random copolymerization process can be switched to a narcissistically self-sorting one by deactivating monomer exchange through the photo-cross-linking of the diacetylene-functionalized monomers.

摘要

无规共聚是一种通过协调不同单体的独特性质来合成所需聚合物的有效方法。对于单体结合本身是动态的超分子聚合物,由于自识别(自分类)的焓优势,很难实现具有不同分子结构和性质的单体的无规共聚。在此,我们通过形成六元氢键冠醚中间体,展示了两个功能化有巴比妥酸的单体的热力学控制的无规超分子共聚的例子,从而表现出两个主链模体(即固有弯曲和线性模体)的结构协调。一个基于萘生色团的单体专门形成环形纤维,而另一个带有额外光反应二炔基部分的单体则提供线性伸长纤维。通过在非极性溶剂中冷却热单体混合物来实现两个单体的超分子共聚,这导致热力学稳定的螺旋折叠但伸长的纤维的形成。原子力显微镜观察和吸收光谱获得的实验数据的理论模拟揭示了在高温区域中二炔基功能化单体的均聚物的形成,随后在中温区域中萘单体的掺入,以形成具有无规单体序列的超分子共聚物。最后,我们证明通过光交联二炔基功能化单体来使单体交换失活,可以将无规共聚过程切换为自恋的自分类过程。

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