Nishiyama Akihide, Fukuda Masaya, Mori Shigeki, Furukawa Ko, Fliegl Heike, Furuta Hiroyuki, Shimizu Soji
Department of Chemistry and Biochemistry, Graduate School of Engineering, Kyushu University, Fukuoka, 819-0395, Japan.
Advanced Research Support Center (ADRES), Ehime University, Matsuyama, 790-8577, Japan.
Angew Chem Int Ed Engl. 2018 Jul 26;57(31):9728-9733. doi: 10.1002/anie.201804648. Epub 2018 Jul 13.
5,15-Dioxaporphyrin was synthesized for the first time by a nucleophilic aromatic substitution reaction of a nickel bis(α,α'-dibromodipyrrin) complex with benzaldoxime, followed by an intramolecular annulation of the α-hydroxy-substituted intermediate. This unprecedented molecule is a 20π-electron antiaromatic system, in terms of Hückel's rule of aromaticity, because lone pair electrons of oxygen atoms are incorporated into the 18π-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 β,β-linked dimer upon oxidation was also revealed.
5,15-二氧杂卟啉首次通过镍双(α,α'-二溴二吡咯)配合物与苯甲醛肟的亲核芳香取代反应合成,随后α-羟基取代中间体进行分子内环化反应。根据休克尔芳香性规则,这个前所未有的分子是一个20π电子的反芳香体系,因为氧原子的孤对电子被纳入卟啉的18π电子共轭体系。基于包含规范的磁诱导电流方法的理论分析证实了其反芳香性以及环电流的主要内环路径。还揭示了5,15-二氧杂卟啉在氧化时形成β,β-连接二聚体的独特反应性。