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Facile Synthesis and Global Aromaticity of Aza-Superbenzene and Aza-Supernaphthalene at Different Oxidation States. | LitMetric

AI Article Synopsis

  • The study discusses the synthesis of fully π-conjugated macrocycle 1 and bismacrocycle 2, which incorporate quinoidal units to affect their electronic properties.
  • Both compounds exhibit planar geometries and their different oxidation states lead to varying aromatic and anti-aromatic behaviors based on their electron conjugation pathways.
  • NMR analyses provide insights into their dynamic properties, highlighting restricted ring flipping in the phenyl rings, while X-ray crystallography supports their structural similarities to benzene and naphthalene.

Article Abstract

All-benzenoid polycyclic aromatic hydrocarbons or macrocycles usually display localized aromaticity. On the other hand, incorporation of quinoidal units into the skeleton could lead to effective electron delocalization and global (anti)aromaticity. In this work, fully π-conjugated macrocycle 1 and bismacrocycle 2 containing both para-quinodimethane and triphenylamine units are efficiently synthesized mainly through intermolecular Friedel-Crafts alkylation reaction. They can be considered as a tetraazasuperbenzene and a hexaazasupernaphthalene, respectively, due to their similar geometry and electronic structures to the benzene and naphthalene. X-ray crystallographic analyses reveal a largely planar geometry for both 1 and 2 and variable-temperature NMR measurements disclose slow dynamic processes owing to restricted ring flipping of the phenyl rings. 1 and 2 can be easily oxidized into higher-oxidation-state species. NMR and theoretical calculations indicate that 1 and 1 show global anti-aromaticity and aromaticity, respectively, with a dominant 32π and 30π conjugation pathway, while for the bismacrocycle 2, its dication 2, tetracation 2 and hexacation 2 exhibit global aromaticity, antiaromaticity, and aromaticity with a 54π, 52π and 50π conjugation pathway along the outermost backbone, respectively.

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Source
http://dx.doi.org/10.1002/anie.202407990DOI Listing

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