Development of a flow photochemical process for a π-Lewis acidic metal-catalyzed cyclization/radical addition sequence: in situ-generated 2-benzopyrylium as photoredox catalyst and reactive intermediate

A flow photochemical reaction system for a π-Lewis acidic metal-catalyzed cyclization/radical addition sequence was developed, which utilizes in situ-generated 2-benzopyrylium intermediates as the photoredox catalyst and electrophilic substrates. The key 2-benzopyrylium intermediates were generated...

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Veröffentlicht in:Beilstein journal of organic chemistry 2024-08, Vol.20 (1), p.1973-1980
Hauptverfasser: Terada, Masahiro, Iwasaki, Zen, Yazaki, Ryohei, Umemiya, Shigenobu, Kikuchi, Jun
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Sprache:eng
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Zusammenfassung:A flow photochemical reaction system for a π-Lewis acidic metal-catalyzed cyclization/radical addition sequence was developed, which utilizes in situ-generated 2-benzopyrylium intermediates as the photoredox catalyst and electrophilic substrates. The key 2-benzopyrylium intermediates were generated in the flow reaction system through the intramolecular cyclization of -carbonyl alkynylbenzene derivatives by the π-Lewis acidic metal catalyst AgNTf and the subsequent proto-demetalation with trifluoroacetic acid. The 2-benzopyrylium intermediates underwent further photoreactions with benzyltrimethylsilane derivatives as the donor molecule in the flow photoreactor to provide 1 -isochromene derivatives in higher yields in most cases than the batch reaction system.
ISSN:1860-5397
1860-5397
DOI:10.3762/bjoc.20.173