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共价连接的双(酰胺基卟啉):分子间和分子内氢键驱动的超分子组装

Covalently Linked Bis(Amido-Corroles): Inter- and Intramolecular Hydrogen-Bond-Driven Supramolecular Assembly.

作者信息

Orłowski Rafał, Cichowicz Grzegorz, Staszewska-Krajewska Olga, Schilf Wojciech, Cyrański Michał K, Gryko Daniel T

机构信息

Institute of Organic Chemistry, Polish Academy of Sciences, 44/52 Kasprzaka str., 01224, Warsaw, Poland.

Faculty of Chemistry, University of Warsaw, Pasteura 1, 02093, Warsaw, Poland.

出版信息

Chemistry. 2019 Jul 22;25(41):9658-9664. doi: 10.1002/chem.201901254. Epub 2019 Jun 11.

Abstract

Four bis-corroles linked by diamide bridges were synthesized through peptide-type coupling of a trans-A B-corrole acid with aliphatic and aromatic diamines. In the solid state, the hydrogen-bond pattern in these bis-corroles is strongly affected by the type of solvent used in the crystallization process. Although intramolecular hydrogen bonds play a decisive role, they are supported by intermolecular hydrogen bonds and weak N-H⋅⋅⋅π interactions between molecules of toluene and the corrole cores. In an analogy to mono(amido-corroles), both in crystalline state and in solutions, the aliphatic or aromatic bridge is located directly above the corrole ring. When either ethylenediamine or 2,3-diaminonaphthalene are used as linkers, incorporation of polar solvents into the crystalline lattice causes a roughly parallel orientation of the corrole rings. At the same time, both NHCO⋅⋅⋅NH corrole hydrogen bonds are intramolecular. In contrast, solvation in toluene causes a distortion with one of the hydrogen bonds being intermolecular. Interestingly, intramolecular hydrogen bonds are always formed between the -NHCO- functionality located further from the benzene ring present at the position 10-meso. In solution, the hydrogen-bonds pattern of the bis(amido-corroles) is strongly affected by the type of the solvent. Compared with toluene (strongly high-field shifted signals), DMSO and pyridine disrupt self-assembly, whereas hexafluoroisopropanol strengthens intramolecular hydrogen bonds.

摘要

通过反式 A B - 二吡咯酸与脂肪族和芳香族二胺的肽型偶联反应,合成了由二酰胺桥连接的四个双二吡咯。在固态中,这些双二吡咯中的氢键模式受到结晶过程中所用溶剂类型的强烈影响。尽管分子内氢键起决定性作用,但它们得到分子间氢键以及甲苯分子与二吡咯核之间弱的 N - H⋅⋅⋅π 相互作用的支持。类似于单(酰胺基二吡咯),在结晶态和溶液中,脂肪族或芳香族桥都直接位于二吡咯环上方。当使用乙二胺或 2,3 - 二氨基萘作为连接基时,将极性溶剂引入晶格会导致二吡咯环大致平行排列。同时,两个 NHCO⋅⋅⋅NH 二吡咯氢键都是分子内的。相比之下,在甲苯中的溶剂化会导致扭曲,其中一个氢键是分子间的。有趣的是,分子内氢键总是在远离 10 - 中位存在的苯环的 -NHCO- 官能团之间形成。在溶液中,双(酰胺基二吡咯)的氢键模式受到溶剂类型的强烈影响。与甲苯(信号强烈高场位移)相比,二甲基亚砜和吡啶会破坏自组装,而六氟异丙醇会加强分子内氢键。

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