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空间位阻反芳香性双BODIPY大环和扩展缺电子BODIPY前体中中碳原子核亲核进攻敏感性

Meso-Carbon Atom Nucleophilic Attack Susceptibility in the Sterically Strained Antiaromatic Bis-BODIPY Macrocycle and Extended Electron-Deficient BODIPY Precursor.

作者信息

Zatsikha Yuriy V, Schrage Briana R, Blesener Tanner S, Harrison Laurel A, Ziegler Christopher J, Nemykin Victor N

机构信息

Department of Chemistry, University of Manitoba, Winnipeg MB, R3T 2N2, Canada.

Enamine Ltd, Chervonotkatska Street 78, Kyiv, 02094, Ukraine.

出版信息

Chemistry. 2022 Sep 27;28(54):e202201261. doi: 10.1002/chem.202201261. Epub 2022 Aug 9.

Abstract

A sterically strained 32π-electron antiaromatic bis-BODIPY macrocycle in which two BODIPY fragments are linked by p-divinylbenzene groups was prepared and characterized. Unlike regular BODIPYs, the fluorescence in this macrocycle is quenched. The broad signals in the NMR spectra of the macrocycle were explained by the vibronic freedom of the p-divinylbenzene fragments. The possible diradicaloid nature of the macrocycle was excluded on the basis of variable-temperature EPR spectra in solution and in solid state, which is indicative of its closed-shell quinoidal structure. The meso-C-H bond in the macrocycle and its precursor BODIPY dialdehyde 3 forms a weak hydrogen bond with THF and is susceptible for the nucleophilic attack by organic amines and cyanide anion. The reaction products of such a nucleophilic attack have meso-sp carbon atoms and were characterized by NMR, mass spectrometry and, in one case, X-ray crystallography. Unlike the initial bis-BODIPY macrocycle, the adducts have strong fluorescence in the 400 nm region. The electronic structure and spectroscopic properties of new chromophores were probed by density functional theory (DFT) and time-dependent DFT (TDDFT) calculations and correlate well with the experimental data.

摘要

制备并表征了一种空间位阻的32π电子反芳香性双硼二吡咯大环化合物,其中两个硼二吡咯片段通过对二乙烯基苯基团相连。与常规硼二吡咯不同,该大环化合物中的荧光被猝灭。大环化合物核磁共振谱中的宽信号是由对二乙烯基苯片段的振动自由度所解释的。基于溶液和固态下的变温电子顺磁共振谱排除了大环化合物可能的双自由基性质,这表明其具有闭壳醌式结构。大环化合物及其前体硼二吡咯二醛3中的中-C-H键与四氢呋喃形成弱氢键,并且易受有机胺和氰根阴离子的亲核攻击。这种亲核攻击的反应产物具有中-sp碳原子,并通过核磁共振、质谱进行了表征,在一个实例中还通过X射线晶体学进行了表征。与初始的双硼二吡咯大环化合物不同,加合物在400 nm区域具有强荧光。通过密度泛函理论(DFT)和含时密度泛函理论(TDDFT)计算探究了新发色团的电子结构和光谱性质,其与实验数据具有良好的相关性。

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