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February 27, 2026Organic Letters2 citations

Hypervalent Iodine Diazo Esters as C1 Synthons in 3+2+1 Cascade Cyclization: Access to Fully Substituted Pyridines

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HDHu DsCPChao PiYLYanqi Li

Key Points

  • The aim is to develop a method for synthesizing fully substituted pyridines using hypervalent iodine diazo esters.
  • Developed a [3+2+1] cascade annulation method
  • Utilized hypervalent iodine diazo reagents as C1 synthons
  • Reacted enaminones to synthesize fully substituted pyridines
  • Conducted reactions without any catalysts or additives
  • Performed scale-up synthesis and late-stage transformations
  • Achieved up to 85% yields for 28 pyridine examples
  • Successfully synthesized fully substituted pyridines under room temperature conditions
  • Demonstrated simplicity and versatility of the protocol

Abstract

Fully substituted pyridines are important cores in natural products, functional materials, and pharmaceuticals. Building such a motif usually requires multiple steps, a transition metal as a catalyst, and external additives. Herein, a 3+2+1 cascade annulation has been developed to synthesize fully substituted pyridines. Hypervalent iodine diazo reagents as highly reactive C1 synthons react with enaminones, leading to a series of fully substituted pyridines in up to 85% yields for 28 examples under catalyst- and additive-free conditions at room temperature. This protocol features easily available substrates and is simple in operation. The versatility of the protocol was showcased by carrying out scale-up synthesis and late-stage transformation of the products.

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Cite This Study

Ds et al. (2026) studied this question.

synapsesocial.com/papers/69a1353eed1d949a99abeeafhttps://doi.org/10.1021/acs.orglett.6c00402
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