Energy-transfer-induced [3+2] cycloadditions of N–N pyridinium ylides

Photocycloaddition is a powerful reaction to enable the conversion of alkenes into high-value synthetic materials that are normally difficult to obtain under thermal conditions. Lactams and pyridines, both prominent in pharmaceutical applications, currently lack effective synthetic strategies to com...

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Veröffentlicht in:Nature chemistry 2023-08, Vol.15 (8), p.1091-1099
Hauptverfasser: Lee, Wooseok, Koo, Yejin, Jung, Hoimin, Chang, Sukbok, Hong, Sungwoo
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Sprache:eng
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Zusammenfassung:Photocycloaddition is a powerful reaction to enable the conversion of alkenes into high-value synthetic materials that are normally difficult to obtain under thermal conditions. Lactams and pyridines, both prominent in pharmaceutical applications, currently lack effective synthetic strategies to combine them within a single molecular structure. Here we describe an efficient approach to diastereoselective pyridyl lactamization via a photoinduced [3+2] cycloaddition, based on the unique triplet-state reactivity of N–N pyridinium ylides in the presence of a photosensitizer. The corresponding triplet diradical intermediates allow the stepwise radical [3+2] cycloaddition with a broad range of activated and unactivated alkenes under mild conditions. This method exhibits excellent efficiency, diastereoselectivity and functional group tolerance, providing a useful synthon for ortho -pyridyl γ- and δ-lactam scaffolds with syn -configuration in a single step. Combined experimental and computational studies reveal that the energy transfer process leads to a triplet-state diradical of N–N pyridinium ylides, which promotes the stepwise cycloaddition. There is currently a lack of effective synthetic strategies for combining lactams and pyridines within a single molecular structure. Now, diastereoselective pyridyl lactamization has been developed using a photoinduced [3+2] cycloaddition of triplet diradical N–N pyridinium ylides with pendant alkenes. This method provides a useful synthon for preparing pyridyl γ- and δ-lactam scaffolds with syn -configuration.
ISSN:1755-4330
1755-4349
DOI:10.1038/s41557-023-01258-2