Harnessing ketyl-type radicals using palladium photocatalysis
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Publisher
Springer Science and Business Media LLC
Link
https://www.nature.com/articles/s44160-022-00086-5.pdf
Reference5 articles.
1. Péter, Á., Agasti, S., Knowles, O., Pye, E. & Procter, D. Recent advances in the chemistry of ketyl radicals. Chem. Soc. Rev. 50, 5349–5365 (2021). A review article that compares classical and more modern — for instance, photoredox —approaches to ketyl radicals.
2. Chuentragool, P., Kurandina, D. & Gevorgyan, V. Catalysis with palladium complexes photoexcited by visible light. Angew. Chem. Int. Ed. 58, 11586–11598 (2019). A review article offering an overview of visible-light-induced palladium photocatalysis.
3. Huang, H.-M. et al. Catalytic radical generation of π-allylpalladium complexes. Nat. Catal. 3, 393–400 (2020). This paper reports the combination of palladium photogenerated radicals with the Tsuji–Trost reaction.
4. Ulich, L. H. & Adams, R. The reaction between acid halides and aldehydes. III. J. Am. Chem. Soc. 43, 660–667 (1921). Seminal report of α-oxy bromide generation from aldehydes and acyl bromides.
5. Wang, L., Lear, J. M., Rafferty, S. M., Fosu, S. C. & Nagib, D. A. Ketyl radical reactivity via atom transfer catalysis. Science 362, 225–229 (2018). This paper reports the generation of ketyl-type radicals from α-oxy iodides under atom transfer catalysis.
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