| Literature DB >> 30216578 |
Daniel Petzold1, Philipp Nitschke1, Fabian Brandl1, Veronica Scheidler1, Bernhard Dick1, Ruth M Gschwind1, Burkhard König1.
Abstract
The first example for the photocatalytic generation of a highly electrophilic intermediate that is not based on radical reactivity is reported. The single-electron reduction of bench-stable and commercially available 4-(trifluoromethoxy)benzonitrile by an organic photosensitizer leads to its fragmentation into fluorophosgene and benzonitrile. The in situ generated fluorophosgene was used for the preparation of carbonates, carbamates, and urea derivatives in moderate to excellent yields via an intramolecular cyclization reaction. Transient spectroscopic investigations suggest the formation of a catalyst charge-transfer complex-dimer as the catalytic active species. Fluorophosgene as a highly reactive intermediate, was indirectly detected via its next downstream carbonyl fluoride intermediate by NMR. Furthermore, detailed NMR analyses provided a comprehensive reaction mechanism including a water dependent off-cycle equilibrium.Entities:
Keywords: CT-complex; NMR spectroscopy; fluorophosgene; photocatalysis; trifluoromethoxyarenes
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Year: 2018 PMID: 30216578 DOI: 10.1002/chem.201804603
Source DB: PubMed Journal: Chemistry ISSN: 0947-6539 Impact factor: 5.236