Photoredox Annulation of Polycyclic Aromatic Hydrocarbons

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Abstract

The rise of interest in using polycyclic aromatic hydrocarbons (PAHs) and molecular graphenoids in optoelectronics has recently stimulated the growth of modern synthetic methodologies giving access to intramolecular aryl-aryl couplings. Here, we show that a radical-based annulation protocol allows expansion of the planarization approaches to prepare functionalized molecular graphenoids. The enabler of this reaction is peri-xanthenoxanthene, the photocatalyst which undergoes photoinduced single electron transfer with an ortho-oligoarylenyl precursor bearing electron-withdrawing and nucleofuge groups. Dissociative electron transfer enables the formation of persistent aryl radical intermediates, the latter undergoing intramolecular C-C bond formation, allowing the planarization reaction to occur. The reaction conditions are mild and compatible with various electron-withdrawing and -donating substituents on the aryl rings as well as heterocycles and PAHs. The method could be applied to induce double annulation reactions, allowing the synthesis of π-extended scaffolds with different edge peripheries.

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APA

Zanetti, D., Matuszewska, O., Giorgianni, G., Pezzetta, C., Demitri, N., & Bonifazi, D. (2023). Photoredox Annulation of Polycyclic Aromatic Hydrocarbons. JACS Au, 3(11), 3045–3054. https://doi.org/10.1021/jacsau.3c00438

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