de Windt Lafayette N J, Fernández Zulema, Fernández-Míguez Manuel, Freire Félix, Palmans Anja R A
Laboratory of Macromolecular and Organic Chemistry, Institute for Complex Molecular Systems, Eindhoven University of Technology, P.O. Box 513, 5600 MB, Eindhoven, The Netherlands.
Centro Singular de Investigación en Química Biolóxica e Materiais Moleculares and, Departamento de Química Orgánica, Universidade de Santiago de Compostela, 15782, Santiago de Compostela, Spain.
Chemistry. 2022 Jan 3;28(1):e202103691. doi: 10.1002/chem.202103691. Epub 2021 Dec 2.
An in-depth study of the supramolecular copolymerization behavior of N- and C-centered benzene-1,3,5-tricarboxamides (N- and C-BTAs) has been conducted in methylcyclohexane and in the solid state. The connectivity of the amide groups in the BTAs differs, and mixing N- and C-BTAs results in supramolecular copolymers with a blocky microstructure in solution. The blocky microstructure results from the formation of weaker and less organized, antiparallel hydrogen bonds between N- and C-BTAs. In methylcyclohexane, the helical threefold hydrogen-bonding network present in C- and N-BTAs is retained in the mixtures. In the solid state, in contrast, the hydrogen bonds of pure BTAs as well as their mixtures organize in a sheet-like pattern, and in the mixtures long-range order is lost. Drop-casting to kinetically trap the solution microstructures shows that C-BTAs retain the helical hydrogen bonds, but N-BTAs immediately adopt the sheet-like pattern, a direct consequence of the lower stabilization energy of the helical hydrogen bonds. In the copolymers, the stability of the helical aggregates depends on the copolymer composition, and helical aggregates are only preserved when a high amount of C-BTAs is present. The method outlined here is generally applicable to elucidate the copolymerization behavior of supramolecular monomers both in solution as well as in the solid state.
对 N 中心和 C 中心的苯 -1,3,5 -三羧酰胺(N -和 C -BTA)的超分子共聚行为进行了深入研究,研究是在甲基环己烷中以及固态下进行的。BTA 中酰胺基团的连接方式不同,将 N -和 C -BTA 混合会在溶液中形成具有嵌段微观结构的超分子共聚物。这种嵌段微观结构是由 N -和 C -BTA 之间形成较弱且组织性较差的反平行氢键导致的。在甲基环己烷中,C -和 N -BTA 中存在的螺旋三重氢键网络在混合物中得以保留。相比之下,在固态下,纯 BTA 及其混合物的氢键以片状模式排列,并且在混合物中长程有序性丧失。通过滴铸动力学捕获溶液微观结构表明,C -BTA 保留了螺旋氢键,但 N -BTA 立即采用了片状模式,这是螺旋氢键较低稳定能的直接结果。在共聚物中,螺旋聚集体的稳定性取决于共聚物组成,并且只有当存在大量 C -BTA 时螺旋聚集体才得以保留。这里概述的方法通常适用于阐明超分子单体在溶液以及固态下的共聚行为。