Selective Cleavage of Carbon–Carbon Bonds of Aryl Ketones by Photocatalysis

Abstract Selective cleavage of inert C─C bonds in unstrained molecules under mild conditions remains a long-standing challenge in synthetic chemistry. In preorganized unstrained aryl ketones, Ar─C(O) bonds are particularly recalcitrant because of their high bond dissociation energy and low polarization, and their selective activation typically requires strained rings, directing groups, or harsh conditions. Here, we report a visible-light-driven triplet energy-transfer strategy that enables selective cleavage of the Ar─C(O) bond in these preorganized aryl ketones through intramolecular 1,3-acyl migration, thereby providing direct access to aliphatic ketones embedded in 9,10-dihydrophenanthrene scaffolds under mild conditions. Mechanistic experiments and density functional theory (DFT) calculations support a sequence involving triplet-state 6π photocyclization, dearomatization, and rearomatization-driven 1,3-acyl migration. This work provides a conceptually distinct photochemical solution to Ar─C(O) bond cleavage in preorganized unstrained aryl ketones and highlights rearomatization-enabled acyl migration as a useful design principle for C─C bond activation.

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Publication Details

Journal
ACS Catalysis
Published
2026-10-06
DOI
https://doi.org/10.1021/acscatal.6c05776
Primary Topic
Radical Photochemical Reactions
Type
article
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0.00
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article

Selective Cleavage of Carbon–Carbon Bonds of Aryl Ketones by Photocatalysis

Xiu‐Long Yang, Xiaoying Niu, Qingyuan Meng, Hao-Yuan Li et al.
ACS Catalysis
Radical Photochemical Reactions
article

Selective Cleavage of Carbon–Carbon Bonds of Aryl Ketones by Photocatalysis

Xiu‐Long Yang, Xiaoying Niu, Qingyuan Meng, Hao-Yuan Li, Ke-Hang Zhang
article en

Abstract

Abstract Selective cleavage of inert C─C bonds in unstrained molecules under mild conditions remains a long-standing challenge in synthetic chemistry. In preorganized unstrained aryl ketones, Ar─C(O) bonds are particularly recalcitrant because of their high bond dissociation energy and low polarization, and their selective activation typically requires strained rings, directing groups, or harsh conditions. Here, we report a visible-light-driven triplet energy-transfer strategy that enables selective cleavage of the Ar─C(O) bond in these preorganized aryl ketones through intramolecular 1,3-acyl migration, thereby providing direct access to aliphatic ketones embedded in 9,10-dihydrophenanthrene scaffolds under mild conditions. Mechanistic experiments and density functional theory (DFT) calculations support a sequence involving triplet-state 6π photocyclization, dearomatization, and rearomatization-driven 1,3-acyl migration. This work provides a conceptually distinct photochemical solution to Ar─C(O) bond cleavage in preorganized unstrained aryl ketones and highlights rearomatization-enabled acyl migration as a useful design principle for C─C bond activation.

ACS Catalysis
Chinese Academy of Sciences (CN), Institute of Chemistry (CN), University of Chinese Academy of Sciences (CN), Hebei University (CN)
Openalex Percentile: Top 24%
Radical Photochemical Reactions
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Selective Cleavage of Carbon–Carbon Bonds of Aryl Ketones by Photocatalysis — Xiu‐Long Yang, Xiaoying Niu, et al. · ACS Catalysis (2026) | TGRS Research Map | TGRS