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Ag₃PO₄ enables the generation of long-lived radical cations for visible light-driven [2+2] and [4+2] pericyclic reactions

Chemistry

Ag₃PO₄ enables the generation of long-lived radical cations for visible light-driven [2+2] and [4+2] pericyclic reactions

L. Guo, R. Chu, et al.

Discover how Ag₃PO₄ acts as a remarkable catalyst for both intramolecular and intermolecular [2+2] and Diels-Alder cycloadditions, utilizing visible-light irradiation. This groundbreaking research by Lirong Guo and colleagues presents an innovative, additive-free method that generates long-lived radical cations, showcasing the potential of inorganic semiconductors for radical cation-mediated synthesis powered by sunlight.

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Abstract
Photocatalytic redox reactions are important for synthesizing fine chemicals from olefins, but the limited lifetime of radical cation intermediates severely restricts semiconductor photocatalysis efficiency. Here, we report that Ag₃PO₄ can efficiently catalyze intramolecular and intermolecular [2+2] and Diels-Alder cycloadditions under visible-light irradiation. The approach is additive-free, catalyst-recyclable. Mechanistic studies indicate that visible-light irradiation on Ag₃PO₄ generates holes with high oxidation power, which oxidize aromatic alkene adsorbates into radical cations. In photoreduced Ag₃PO₄, the conduction band electron (eCB−) has low reduction power due to the delocalization among the Ag-lattices, while the particle surfaces have a strong electrostatic interaction with the radical cations, which considerably stabilize the radical cations against recombination with eCB−. The radical cation on the particle's surfaces has a lifetime of more than 2 ms, 75 times longer than homogeneous systems. Our findings highlight the effectiveness of inorganic semiconductors for challenging radical cation-mediated synthesis driven by sunlight.
Publisher
Nature Communications
Published On
Feb 01, 2024
Authors
Lirong Guo, Rongchen Chu, Xinyu Hao, Yu Lei, Haibin Li, Dongge Ma, Guo Wang, Chen-Ho Tung, Yifeng Wang
Tags
Ag₃PO₄
catalysis
cycloaddition
visible-light irradiation
radical cations
inorganic semiconductors
synthesis
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