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Photochemical Povarov-type Reactions: Electron Donor–Acceptor Photoactivation by Visible Light

This report investigates the mechanism of photochemical Povarov-type reactions of N,N-dialkylanilines and maleimides in polar solvents (DMF or dioxane) in the presence of light. Fundamental aspects of the electron donor–acceptor (EDA) photoactivation pathway proposed to underpin this chemistry are e...

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Bibliographic Details
Published in:Journal of organic chemistry 2024-02, Vol.89 (4), p.2683-2690
Main Authors: Tang, Meiqiong, Draper, Felicity, Pham, Le Nhan, Ho, Curtis C., Huang, Hai, Sun, Jianwei, Thickett, Stuart C., Coote, Michelle L., Connell, Timothy U., Bissember, Alex C.
Format: Article
Language:English
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Summary:This report investigates the mechanism of photochemical Povarov-type reactions of N,N-dialkylanilines and maleimides in polar solvents (DMF or dioxane) in the presence of light. Fundamental aspects of the electron donor–acceptor (EDA) photoactivation pathway proposed to underpin this chemistry are examined through integrated experimental and computational studies. This approach provided evidence supporting the involvement of an EDA complex in facilitating this chemistry via a reaction mechanism that does not involve a triplet manifold. Most notably, our findings indicate that relying solely on UV–vis absorption spectroscopic data to either account for or predict reactivity in synthetic experiments may not always provide the complete picture. More specifically, this relates to considering UV–vis absorption spectroscopic data, calculated values for association constants (K EDA) and molar extinction coefficients (ε), with the reactivity observed in associated synthetic reactions in practice.
ISSN:0022-3263
1520-6904
DOI:10.1021/acs.joc.3c02746