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◆ Journal of the American Chemical Society2026-02-17· Chemistry

Potassium Bisulfite’s Role in Developing a Robust Platform for Enantioenriched <i>N</i> -Alkylpyridinium Salts as Piperidine Precursors

Jake D. Selingo, Jacob King, Barbara Pio, Andrew J. Neel, Yu‐hong Lam, R C Paton, Matthew L. Maddess, Andrew McNally

原始摘要(英文原文)· Original abstract
High Resolution Image Download MS PowerPoint Slide Piperidines are prominent scaffolds in medicinal chemistry. However, methods that incorporate chiral N -alkyl substituents on piperidine remain limited. Here, we report a platform for the synthesis of enantioenriched N -(α-chiral)alkylpyridinium salts from commercially available pyridines and enantiopure primary amines; the resulting pyridinium salts serve as versatile precursors to stereoenriched N -(α-chiral)alkylpiperidines via established reduction protocols. We discovered potassium metabisulfite as a reaction additive that significantly enhanced the robustness of the pyridinium formation reaction. Mechanistic and computational studies reveal that potassium metabisulfite deconjugates Zincke imines, enabling a lower-energy polar cyclization pathway to pyridinium formation compared to a pericyclic one. We performed high-throughput experimentation that demonstrated a broad scope for both coupling partners, providing a robust, general platform for generating libraries of piperidine precursors relevant to medicinal chemistry.
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Potassium Bisulfite’s Role in Developing a Robust Platform for Enantioenriched <i>N</i> -Alkylpyridinium Salts as Piperidine Precursors — 科研速览 Science Skim