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February 5, 2026Organic Letters5 citations

Strain-Release Asymmetric Multicomponent Reaction to Access Diverse N -α-Bisaryl-C3-quaternary Azetidines

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SMSuparna MondalDGDebu GhoraiSKSaleha Khatun

Key Points

  • The aim is to develop an efficient method to synthesize chiral N-α-bisaryl-C3-quaternary azetidines.
  • Utilized a strain-release multicomponent Petasis borono-Mannich reaction.
  • Employs azabicyclo[1.1.0]butane-carbinols, arylboronic acids, and aldehydes.
  • Achieved asymmetry using a BINOL-derived catalyst.
  • Successfully synthesized N-α-bisaryl-C3-quaternary azetidines.
  • Demonstrated high enantiomeric purity for the chiral compounds.
  • Process is mild and tolerates diverse bisaryl combinations.

Abstract

Azetidines are valuable motifs in drug discovery, yet access to densely substituted N-α-bisaryl-C3-quaternary azetidines remains limited. We report a strain-release multicomponent Petasis borono-Mannich reaction that enables the modular synthesis of N-α-bisaryl-C3-quaternary azetidines from readily available azabicyclo1.1.0butane (ABB)-carbinols, arylboronic acids, and aldehydes. This mild, operationally simple process tolerates diverse bisaryl combinations and overcomes the multistep constraints of existing methods. Importantly, an asymmetric variant was achieved using a BINOL-derived catalyst, providing the first access to chiral N-α-bisaryl-C3-quaternary azetidines in high enantiomeric purity.

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Cite This Study

Mondal et al. (2026) studied this question.

synapsesocial.com/papers/69843383f1d9ada3c1fb0bf9https://doi.org/10.1021/acs.orglett.5c05228
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