Department of Chemistry, Illinois State University, Normal, Illinois 61790-4160, United States.
J Org Chem. 2022 Dec 16;87(24):16276-16296. doi: 10.1021/acs.joc.2c01859. Epub 2022 Dec 2.
Reaction of 6-nitrochrysene with ethyl isocyanoacetate in the presence of a non-nucleophilic base gave a -annulated pyrrole ethyl ester that was used to prepare chrysene-fused tripyrranes and a chrysopyrrole dialdehyde. Chrysene-fused tripyrranes were reacted with a pyrrole dialdehyde, but poor yields of chrysoporphyrins were obtained. However, condensation of the chrysopyrrole dialdehyde with a series of tripyrranes afforded excellent yields of chrysoporphyrins and an acenaphtho-chrysoporphyrin. Iron(III) chloride mediated oxidative cyclization of a dihexylchrysoporphyrin afforded a benzopyrene-fused porphyrin that exhibited a strongly red-shifted electronic absorption spectrum. DFT calculations show that both chrysoporphyrins and the benzopyrene-fused porphyrin have tautomers that possess 34π electron delocalization pathways that pass through the porphyrin nucleus and the fused polycyclic aromatic hydrocarbon (PAH) units. Protonation gave dications that favor 36-atom 34π electron circuits. -Annulated pyrrole dialdehydes were also condensed with a carbatripyrrin to generate PAH-fused carbaporphyrins that retained fully aromatic properties.
在非亲核碱的存在下,6-硝基苝与乙基异氰基乙酸酯反应生成了一个 -稠合吡咯乙酯,该乙酯可用于制备苝稠合三吡咯烷和苝吡咯二醛。苝稠合三吡咯烷与吡咯二醛反应,但得到的苝卟啉产率较低。然而,将苝吡咯二醛与一系列三吡咯烷缩合得到了苝卟啉的高产率和一个薁基-苝卟啉。三氯化铁介导的二己基苝卟啉的氧化环化得到了一个苯并芘稠合的卟啉,其电子吸收光谱强烈红移。DFT 计算表明,苝卟啉和苯并芘稠合卟啉都具有互变异构体,它们具有 34π 电子离域途径,通过卟啉核和稠合的多环芳烃(PAH)单元传递。质子化得到了有利于 36 原子 34π 电子环的二阳离子。-稠合吡咯二醛也与碳三吡咯烷缩合生成保留了完全芳香性质的 PAH-稠合碳卟啉。