AI Article Synopsis

  • The study investigates the effects of combining benzofurans with s-indacene and dicyclopenta[b,g]naphthalene to influence their antiaromaticity and diradical properties.
  • Synthesizing the compounds results in two types: syn-IDBF, which shows high paratropicity, and syn-IIDBF, which displays strong diradical character.
  • Comparing these to benzothiophene-fused compounds reveals that the presence of oxygen enhances antiaromatic characteristics and paratropicity, while the diradical character of syn-IIDBF increases due to a rearrangement in its naphthalene structure.

Article Abstract

We examine the effects of fusing two benzofurans to s-indacene (indacenodibenzofurans, IDBFs) and dicyclopenta[b,g]naphthalene (indenoindenodibenzofurans, IIDBFs) to control the strong antiaromaticity and diradical character of these core units. Synthesis via 3-functionalized benzofuran yields syn-IDBF and syn-IIDBF. syn-IDBF possesses a high degree of paratropicity, exceeding that of the parent hydrocarbon, which in turn results in strong diradical character for syn-IIDBF. In the case of the anti-isomers, synthesized via 2-substituted benzofurans, these effects are decreased; however, both derivatives undergo an unexpected ring-opening reaction during the final dearomatization step. All the results are compared to the benzothiophene-fused analogues and show that the increased electronegativity of oxygen in the syn-fused derivatives leads to enhancement of the antiaromatic core causing greater paratropicity. For syn-IIDBF increased diradical character results from rearomati-zation of the core naphthalene unit in order to relieve this paratropicity.

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Source
http://dx.doi.org/10.1002/anie.202107855DOI Listing

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