Metal-free, visible-light-promoted decarboxylative alkylation of Baylis-Hillman acetates with -(acyloxy)phthalimides

A visible-light-promoted decarboxylative alkylation of Baylis-Hillman acetates with N -(acyloxy)phthalimides to access trisubstituted alkyl acrylates under metal-free and mild reaction conditions was developed. A variety of N -(acyloxy)phthalimides derived from structurally diverse primary, secondar...

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Veröffentlicht in:Green chemistry : an international journal and green chemistry resource : GC 2022-09, Vol.24 (18), p.684-6844
Hauptverfasser: Zhang, De-Run, Hu, Lin-Ping, Liu, Feng-Lin, Huang, Xiao-Hong, Li, Xia, Liu, Bo, Huang, Guo-Li
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Zusammenfassung:A visible-light-promoted decarboxylative alkylation of Baylis-Hillman acetates with N -(acyloxy)phthalimides to access trisubstituted alkyl acrylates under metal-free and mild reaction conditions was developed. A variety of N -(acyloxy)phthalimides derived from structurally diverse primary, secondary and tertiary aliphatic carboxylic acids could all smoothly convert to structurally diverse alkyl acrylates in this protocol. Interestingly, aliphatic carboxylic acids and acrylic esters derived from Baylis-Hillman acetates bearing a smaller steric structure show better stereoselectivity of the E configuration. This work offers an economic and easily handled approach to C(sp2)-C(sp2) and C(sp3)-C(sp3) bond formation in one step. Moreover, this protocol could be applied to the late-stage functionalization of natural products. A visible light-driven metal- and oxidant-free procedure for the decarboxylative alkylation of Baylis-Hillman acetates with N -(acyloxy)phthalimides to access trisubstituted alkyl acrylates under mild reaction conditions is reported.
ISSN:1463-9262
1463-9270
DOI:10.1039/d2gc02562k