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January 22, 2026Chemistry - A European Journal0 citations

Photoactive H‐Bonding EDA Complex in Radical Chemistry

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MZMing‐Zhong ZhangJYJianjing YangKDKe‐Yu Dai

Key Points

  • The aim is to explore the principles and applications of hydrogen-bonding EDA complexes in radical chemistry.
  • Review of foundational principles and mechanistic insights of H-EDA complexes.
  • Analysis of synthetic applications in radical photochemistry.
  • Discussion of future research trajectories in radical chemistry.
  • H-EDA complexes facilitate electron transfer effectively under mild conditions.
  • They exhibit broad substrate compatibility and tunable selectivity.
  • H-EDA complexes are seen as environmentally friendly alternatives in synthetic processes.

Abstract

ABSTRACT Electron donor–acceptor (EDA) complexes have emerged as powerful tools in radical chemistry, enabling diverse transformations under mild conditions. Among various EDA models, hydrogen‑bonding EDA (H‐EDA) complexes, which utilize hydrogen‑bonding interactions to facilitate electron transfer between donors and acceptors, have attracted considerable attention in recent years. Owing to their unique advantages, broad substrate compatibility, tunable selectivity, and environmental friendliness, H‑EDA complexes represent promising candidates for advancing the fields of radical photochemistry and synthetic chemistry. This concept review delves into the foundational principles, mechanistic insights, and synthetic applications of H‐EDA complexes in radical chemistry, and forward‐looking perspectives on the future research trajectories of this field.

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Cite This Study

Zhang et al. (2026) studied this question.

synapsesocial.com/papers/6971be6b642b1836717e31a3https://doi.org/10.1002/chem.70708
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