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棱柱[2]二氢吩嗪:通过外壁相互作用的合成、构型分析及超分子镶嵌

Prism[2]dihydrophenazines: Synthesis, Configurational Analysis, and Supramolecular Tessellation through Exo-Wall Interactions.

作者信息

An Shenglong, Gong Kehui, Yang Chuanxing, Su Jianhua, Zhang Zhiyun

机构信息

Key Laboratory for Advanced Materials and Joint International Research Laboratory of Precision Chemistry and Molecular Engineering, Feringa Nobel Prize Scientist Joint Research Centre, Frontiers Science Center for Materiobiology and Dynamic Chemistry, East China University of Science & Technology, Shanghai, 200237, China.

出版信息

Chemistry. 2024 May 14;30(27):e202400305. doi: 10.1002/chem.202400305. Epub 2024 Mar 15.

Abstract

Macrocyclic arenes have gained considerable attention for their structural diversity and widespread applications. In this research, a new kind of macrocyclic arenes, namely prism[2]dihydrophenazines (anti-P2P20, syn-P2P20, and P2P22), composed of two dihydrophenazine derivatives subunits bridged by methylene groups, were conveniently synthesized by AlCl-catalyzed one-pot condensation in 1,2-dichloroethane. Both anti-P2P20 and its isomer syn-P2P20 exhibited flexible and convertible conformation with narrow cavity, while P2P22 possessed rigid and rhombic-like skeleton due to the more steric hindrance on subunits. In addition, the selection of electron-deficient guest was found to influence the outside binding behavior of syn-P2P20. Fantastic regular supramolecular tessellation was fabricated by tiling of syn-P2P20 with tetrafluoro-1,4-benzoquinone (TFB) through the exo-wall interactions. Using 1,5-difluoro-2,4-dinitrobenzene (DFN) as a linker, only the regular 2D network superstructure with periodic units in a plane was obtained through cocrystallization. This work not only reports the construction of supramolecular tessellations by using prism[2]dihydrophenazines as building blocks, but also provides a new perspective for the design of macrocyclic arenes and fabrication of 2D supramolecular materials.

摘要

大环芳烃因其结构多样性和广泛应用而备受关注。在本研究中,一种新型的大环芳烃,即棱柱[2]二氢吩嗪(反式-P2P20、顺式-P2P20和P2P22),由两个通过亚甲基桥连的二氢吩嗪衍生物亚基组成,通过AlCl催化在1,2-二氯乙烷中一锅缩合方便地合成。反式-P2P20及其异构体顺式-P2P20均表现出具有窄腔的灵活且可转换的构象,而P2P22由于亚基上更大的空间位阻而具有刚性的菱形骨架。此外,发现缺电子客体的选择会影响顺式-P2P20的外部结合行为。通过顺式-P2P20与四氟-1,4-苯醌(TFB)通过外壁相互作用平铺,构建了奇妙的规则超分子镶嵌结构。使用1,5-二氟-2,4-二硝基苯(DFN)作为连接体,通过共结晶仅获得了在平面上具有周期性单元的规则二维网络超结构。这项工作不仅报道了以棱柱[2]二氢吩嗪为构建块构建超分子镶嵌结构,还为大环芳烃的设计和二维超分子材料的制备提供了新的视角。

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