Ferrocene-Mediated Photocatalytic Annulation of N‑Sulfonyl Ketimines on a Polycrystalline WSe2 Semiconductor Photocatalyst

A merger of heterogeneous polycrystalline WSe2 semiconductor photocatalysis and homogeneous ferrocene redox catalysis for the cascade radical coupling-annulation reactions was established. In the redox-mediated photocatalysis, ferrocene can improve the separation of photogenerated hole–electron pair...

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Veröffentlicht in:ACS catalysis 2023-10, Vol.13 (19), p.13071-13076
Hauptverfasser: Lu, Yu-Han, Wu, Chao, Hou, Jia-Cheng, Wu, Zhi-Lin, Zhou, Min-Hang, Huang, Xiao-Jun, He, Wei-Min
Format: Artikel
Sprache:eng
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Zusammenfassung:A merger of heterogeneous polycrystalline WSe2 semiconductor photocatalysis and homogeneous ferrocene redox catalysis for the cascade radical coupling-annulation reactions was established. In the redox-mediated photocatalysis, ferrocene can improve the separation of photogenerated hole–electron pairs on WSe2 by consuming the hole via the formation of a ferrocene cation, which triggered the molecular transformations. Various benzo­[e]­imidazo­[1,5-c]­[1,2,3]­oxathiazine 5,5-dioxides were formed through semiheterogeneous three-component reaction of N-sulfonyl ketimines, N-arylglycines, and formaldehyde.
ISSN:2155-5435
2155-5435
DOI:10.1021/acscatal.3c02268