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Updated: Feb 26, 2026

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Hypervalent Iodine Diazo Esters as C1 Synthons in [3+2+1] Cascade Cyclization: Access to Fully Substituted Pyridines
1Henan Key Laboratory of Chemical Biology and Organic Chemistry, Key Laboratory of Applied Chemistry of Henan Universities, State Key Laboratory of Coking Coal Resources Green Exploitation, Pingyuan Laboratory and College of Chemistry, Zhengzhou University, Zhengzhou 450052, P. R. China.
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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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