Chinese Journal of Organic Chemistry ›› 2026, Vol. 46 ›› Issue (7): 2683-2700.DOI: 10.6023/cjoc202601041 Previous Articles     Next Articles

REVIEW

配体辅助电荷转移驱动的光促铁催化

吉伟文a, 叶宁b,*(), 金健a,*()   

  1. a 中国科学院上海有机化学研究所 生命过程小分子调控全国重点实验室 上海 200032
    b 宁康瑞珠生物制药(珠海)有限公司 广东珠海 519070
  • 收稿日期:2026-01-24 修回日期:2026-03-14 发布日期:2026-05-07
  • 基金资助:
    国家重点研发计划(2023YFA0914500)

Ligand-Facilitated Ligand-to-Metal Charge Transfer-Driven Photoinduced Iron Catalysis

Weiwen Jia, Ning Yeb,*(), Jian Jina,*()   

  1. a State Key Laboratory of Chemical Biology, Shanghai Institute of Organic Chemistry, Chinese Academy of Sciences, Shanghai 200032
    b Rezubio Pharmaceuticals Co. Ltd., Zhuhai, Guangdong 519070
  • Received:2026-01-24 Revised:2026-03-14 Published:2026-05-07
  • Contact: *E-mail: jjin@sioc.ac.cn;ning.ye@rezubio.com
  • Supported by:
    National Key Research and Development Program of China(2023YFA0914500)

Iron is an abundant metal in the earth’s crust and possesses excellent biocompatibility, making the development of iron photocatalysis highly desirable for green and sustainable chemistry. In recent years, photoinduced iron catalysis driven by ligand-to-metal charge transfer (LMCT) has witnessed significant progress. This strategy involves the photoexcitation of iron-substrate (or reagent) complexes to induce intramolecular electron transfer, generating highly reactive radical species that trigger diverse organic transformations under mild conditions. The recent advances in ligand-facilitated LMCT-driven photo- induced iron catalysis are systematically summarized. The discussions are categorized based on the types of substrates (or reagents) involved in the LMCT process, covering systems such as alkyl carboxylic acids, oxamic acids, fluorinated alkyl carboxylic acids, aryl carboxylic acids, alcohols, water, azides, and chlorides. Special emphasis is placed on the critical role of ligands (e.g., picolinic acids, polypyridyl amines) in tuning the redox properties of the iron center, prolonging excited-state lifetimes, and enhancing visible light absorption. The reaction mechanisms and synthetic applications are also discussed. Finally, the challenges and future prospects of this emerging field are highlighted.

Key words: ligand facilitation, ligand-to-metal charge transfer (LMCT) drive, photoinduction, iron catalysis, radical reaction