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February 14, 2026Nature Communications5 citationsOpen Access

Photochemical thiocarbonyl difluoride generation enables azetidine synthesis

RRRicardo I. RodríguezJPJulien PautGAGiona Armellin

Key Points

  • The aim is to develop a photochemical method for generating thiocarbonyl difluoride to enable azetidine synthesis.
  • In situ generation of thiocarbonyl difluoride from N-trifluoromethylthiophthalimide using visible light and organic reductants.
  • Synthesis of azetidines from strained azabicyclo[1.1.0]butanes through TCF-mediated ring opening and nucleophilic additions.
  • Mechanistic studies to support a single-electron reduction pathway.
  • Successful synthesis of spiro- and fluorinated TCarbF-azetidines in a single step.
  • Observation of selectivity influenced by the choice of photocatalyst.
  • Demonstrated activation of amines using a milder photochemical approach.

Abstract

The activation of amines into thiocarbamoyl fluorides (TCarbFs) provides access to valuable nitrogen-based functionalities. However, their broader use has been hindered by the reliance on harsh reagents and conditions. Here we report a photochemical method for in situ generation of thiocarbonyl difluoride (TCF) from N-trifluoromethylthiophthalimide (Phth-SCF₃) using visible light and organic reductants. This strategy allows the synthesis of structurally complex azetidines from strained azabicyclo1.1.0butanes (ABBs). TCF-mediated ring opening followed by semipinacol rearrangement or nucleophilic additions enables direct access to spiro- and fluorinated TCarbF-azetidines in a single step. Mechanistic studies support a single-electron reduction pathway and rationalize the impact of the photocatalyst on the observed selectivity. The discovery offers a general platform for amine activation and addresses a long-standing gap in azetidine functionalization.

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Cite This Study

Rodríguez et al. (2026) studied this question.

synapsesocial.com/papers/699010942ccff479cfe56e8chttps://doi.org/10.1038/s41467-026-69464-3
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