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May 20, 2026Smart Molecules2 citationsOpen Access

Visible‐light‐promoted catalyst‐free benzylic C‐H oxidation using molecular oxygen as a green oxidant

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JLJianing LiSWSuwen WangHSHuinan Sun

Key Points

  • This study aims to develop a catalyst-free method for the oxidation of benzylic C-H bonds using molecular oxygen.
  • Catalyst- and additive-free strategy using visible light and molecular oxygen as oxidant.
  • Mechanistic studies reveal the formation of a substrate-oxygen charge-transfer complex.
  • Developed a continuous-flow photoreactor to enhance efficiency significantly over traditional batch processes.
  • Successfully converted a variety of aromatic alkanes into ketones using the proposed method.
  • Achieved a greater than 150-fold efficiency increase in the photoreactor compared to batch methods.

Abstract

Abstract Herein, we report a catalyst‐ and additive‐free strategy for the visible‐light‐promoted carbonylative oxidation of benzylic C‐H bonds employing molecular oxygen as the sole oxidant. This operationally simple protocol enables the conversion of a broad range of aromatic alkanes into valuable ketones, including complex drug derivatives and intermediates under mild conditions using ethyl acetate as a green solvent. Mechanistic studies reveal that the reaction proceeds via a substrate‐oxygen charge‐transfer (CT) complex upon photoexcitation, generating reactive oxygen species (singlet oxygen and superoxide anion) and a key benzylic radical. Interestingly, the carbonyl product can further accelerate the transformation by participating in a separate CT complex with the starting material. To address the scalability limitations, a novel solvent‐free continuous‐flow photoreactor was developed, which demonstrated a significant efficiency enhancement of over 150‐fold compared to batch processes. This work presents a green, practical, and scalable method for benzylic oxidation, underpinned by a detailed mechanistic understanding of the photoinduced CT process.

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Cite This Study

Li et al. (2026) studied this question.

synapsesocial.com/papers/6a0d50f3f03e14405aa9d14bhttps://doi.org/10.1002/smo2.70058
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