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空间位阻三角烯的合成、结构、固态自组装及意外的手性光学性质。

Sterically Crowded Trianglimines-Synthesis, Structure, Solid-State Self-Assembly, and Unexpected Chiroptical Properties.

机构信息

Department of Chemistry, Adam Mickiewicz University, Umultowska 89B, 61 614, Poznan, Poland.

Centre for Advanced Technologies AMU, Umultowska 89C, 61 614, Poznań, Poland.

出版信息

Chem Asian J. 2018 Sep 17;13(18):2691-2699. doi: 10.1002/asia.201800938. Epub 2018 Aug 8.

Abstract

The chiral, triangular-shape hexaimine macrocycles (trianglimines), bearing bulky alkynyl or aryl substituents were synthesized and studied by means of experimental and theoretical methods. The macrocyclization reactions are driven by the extraordinary stability of the trianglimine ring and provided products with high yields. Electrostatic repulsion between imine nitrogen atoms and the substituents forced an anti conformation of the aromatic linkers. Although the DFT-optimized structure of 7 is D symmetrical, in the crystal, the macrocycle adopts a bowl-like molecular shape. The macrocycle self-assembles into tail-to-tail dimers by mutual interdigitation of aromatic moieties. In contrast, macrocycle 8 adopts a rigid pillararene-like conformation. The nature of the substituent significantly affects the electronic properties of the linker. As a result, unexpectedly high exciton Cotton effects are observed in the electronic circular dichroism (ECD) spectra. The origin of these effects was subject of an in-depth study.

摘要

具有大体积炔基或芳基取代基的手性三角形状六亚甲胺大环(三角啉)通过实验和理论方法进行了合成和研究。大环化反应由三角啉环的非凡稳定性驱动,提供了高产率的产物。亚胺氮原子和取代基之间的静电排斥迫使芳构链接的反式构象。尽管 DFT 优化的 7 的结构是 D 对称的,但在晶体中,大环采用碗状分子形状。大环通过芳基部分的相互交织自组装成尾对尾二聚体。相比之下,大环 8 采用刚性的支柱芳烃样构象。取代基的性质显著影响连接体的电子性质。结果,在电子圆二色性(ECD)光谱中观察到出乎意料的高激子 Cotton 效应。这些效应的起源是深入研究的主题。

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