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首页> 外文期刊>Angewandte Chemie >Rational Synthesis of Antiaromatic 5,15-Dioxaporphyrin and Oxidation into beta,beta-Linked Dimers
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Rational Synthesis of Antiaromatic 5,15-Dioxaporphyrin and Oxidation into beta,beta-Linked Dimers

机译:抗真菌5,15-二氧水合物的合理合成,氧化成β,β连接二聚体

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摘要

5,15-Dioxaporphyrin was synthesized for the first time by a nucleophilic aromatic substitution reaction of a nickel bis(,-dibromodipyrrin) complex with benzaldoxime, followed by an intramolecular annulation of the -hydroxy-substituted intermediate. This unprecedented molecule is a 20-electron antiaromatic system, in terms of Huckel's rule of aromaticity, because lone pair electrons of oxygen atoms are incorporated into the 18-electron conjugated system of the porphyrin. A theoretical analysis based on the gauge-including magnetically induced current method confirmed its antiaromaticity and a dominant inner ring pathway for the ring current. The unique reactivity of 5,15-dioxaporphyrin forming a ,-linked dimer upon oxidation was also revealed.
机译:第一次通过与苯甲肟的镍双(,二溴吡啶)复合物的亲核芳族取代反应合成5,15-二氧水解,其次是 - 羟基取代中间体的分子内环化。 该前所未有的分子是一种20 - 电子抗星动动系统,就哈哈的芳香性规则而言,因为氧气原子的孤立对电子掺入卟啉的18-电子共轭系统中。 基于仪表的磁感应电流方法的理论分析证实了其抗环状性和主环电流的主要内环通路。 还揭示了在氧化时形成的5,15-二恶英的独特反应性。

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