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      Recent Progresses in the Catalytic Stereoselective Dearomatization of Pyridines.

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          Abstract

          1,2- and 1,4-dihydropyridines and N-substituted 2-pyridones are very important structural motifs due to their synthetic versatility and vast presence in a variety of alkaloids and bioactive molecules. In this article, we gather and summarize the catalytic and stereoselective synthesis of partially hydrogenated pyridines and pyridones via the dearomative reactions of pyridine derivatives up to mid-2023. The material is fundamentally organized according to the type of reactivity (electrophilic/nucleophilic) of the pyridine nucleus. The material is further sub-divided taking into account the nucleophilic species when dealing with electrophilic pyridines and considering the reactivity manifold of pyridine derivatives behaving as nucleophiles at the nitrogen site. The latter more recent approach allows for an unconventional entry to chiral N-substituted 2- and 4-pyridones in non-racemic form.

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          Author and article information

          Journal
          Molecules
          Molecules (Basel, Switzerland)
          MDPI AG
          1420-3049
          1420-3049
          Aug 22 2023
          : 28
          : 17
          Affiliations
          [1 ] Department of Pharmacy, University of Pisa, Via Bonanno 33, 56126 Pisa, Italy.
          Article
          molecules28176186
          10.3390/molecules28176186
          10488975
          37687015
          1173e476-fb28-4dc7-8d63-682245439c02
          History

          piperidine,pyridine,pyridinium salt,tetrahydropyridine,dearomatization,dihydropyridine,asymmetric catalysis,4-pyridone,2-pyridone

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