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首页> 外文期刊>Materials Chemistry Frontiers >Supramolecular polymerization and cyclization of dioxynaphthalene motif bridged bifunctional UPys: minor variations in the molecular skeleton and drastic differences in self-assembly
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Supramolecular polymerization and cyclization of dioxynaphthalene motif bridged bifunctional UPys: minor variations in the molecular skeleton and drastic differences in self-assembly

机译:超分子聚合、环化dioxynaphthalene主题架桥双官能UPys:小分子骨架和变化极端不同的自组装

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摘要

The relationship between molecular structure and macroscopic characteristics is a fundamental issue for materials design. Some minor changes in molecular structure may have a great impact on the molecular self-assembly process. Therefore, it is of interest to design new isomeric building blocks for supramolecular self-assembly, offering inspiration for the development of smart materials by supramolecular engineering. In this study, two dioxynaphthalene (DNP) group bridged bifunctional ureidopyrimidinone (UPy) monomers (DNP1 and DNP2) were synthesized. The chemical structures of the two isomers are very similar and the only difference is that DNP1 is 2,6-substituted and DNP2 is 1,5-substituted on the DNP motif. Interestingly, these two isomers exhibit completely different supramolecular self-assembly behaviors. Highly viscous supramolecular polymers were obtained in a concentrated solution of DNP1, while crystals based on highly stable cyclic monomers were precipitated from a concentrated solution of DNP2. Since DNP is an electron rich group, the host–guest behaviors of DNP1 and DNP2 with a blue-box were further studied, which also showed different ring-threading capabilities.
机译:与分子结构之间的关系是一项基本的宏观特征材料设计问题。分子结构可能产生巨大的影响分子自组装过程。它是设计新的异构建筑感兴趣的块超分子自组装,提供灵感来源智能的发展超分子材料的工程。研究中,两个dioxynaphthalene (DNP)组桥接双官能ureidopyrimidinone (UPy)单体(DNP1和DNP2)是合成的。两个同分异构体的结构非常相似唯一的区别是DNP12、6-substituted和DNP2是1,5-substitutedDNP图案。表现出完全不同的超分子自组装行为。超分子聚合物被获得DNP1的浓溶液,而晶体基于高度稳定的环状单体从浓溶液的沉淀DNP2。主-客体DNP1和DNP2的行为蓝盒子被进一步研究,这也显示不同ring-threading功能。

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