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REVIEW

脱硫氟化构建N-氟烷基化合物的研究进展

汪静莉a, 陈曦b, 马立业a, 易文斌*,a   

  1. a南京理工大学化学与化工学院 南京 210014;
    b南京理工大学新能源学院 江阴 214443
  • 收稿日期:2026-06-03 修回日期:2026-06-24
  • 基金资助:
    国家自然科学基金(No. 22108124)资助项目.

Research Progress on the Construction of N-Fluoroalkyl Compounds via Desulfurative Fluorination

Wang Jinglia, Chen Xib, Ma Liyea, Yi Wenbina,*   

  1. aSchool of Chemistry and Chemical Engineering, Nanjing University of Science and Technology, Nanjing 210014;
    aSchool of New Energy, Nanjing University of Science and Technology, Jiangyin 214443
  • Received:2026-06-03 Revised:2026-06-24
  • Contact: *E-mail: yiwb@njust.edu.cn
  • Supported by:
    National Natural Science Foundation of China (No. 22108124).

N-Fluoroalkyl compounds are important functional molecules in the fields of medicine, agrochemicals, and functional materials. The introduction of fluoroalkyl groups onto the nitrogen atom of amines can precisely modulate the physicochemical properties and biological activities of molecules, and has become a research hotspot in drug-structure modification. Desulfurative fluorination, as an efficient strategy for constructing N-fluoroalkyl structures, employs thiocarbonyl compounds such as thioamides, dithiocarbamates, thiocarbamoyl fluorides, and isothiocyanates as precursors. In the presence of fluorinating reagents, Lewis acids, or oxidizing additives, this strategy enables desulfurative transformation of C=S bonds, thereby efficiently constructing N-CF3, N-CF2H, N-CH2F, and perfluoroalkyl functional groups. This review systematically summarizes recent advances in the synthesis of diverse N-fluoroalkyl compounds via desulfurative fluorination, concludes the reaction rules, mechanisms and substrate scope of various thiocarbonyl precursors, and discusses the merits and limitations of different synthetic strategies. The advantages and limitations of various synthetic strategies are also discussed. In addition, the applications of these compounds in the synthesis of antibacterial molecules, heterocyclic drugs, and functional building blocks are introduced. Current challenges, including insufficient substrate generality and the lack of industrially scalable processes, are analyzed. Finally, future directions, such as the development of novel catalytic systems, green fluorination technologies, and scalable synthetic methods, are discussed, with the aim of providing guidance for the design and synthesis of functional fluorinated amine molecules.

Key words: Desulfurative fluorination, N-Fluoroalkyl compounds, Thiocarbonyl compounds, Trifluoromethylation, Difluoromethylation