A bioinspired synthesis of chiral 3,4-dihydropyranones via S-to-O acyl-transfer reactions is described. Asymmetric Michael addition-lactonization reactions of β,γ-unsaturated α-keto esters with thioesters are catalyzed by proline-derived urea, providing 3,4-dihydropyranones and spiro-3,4-dihydrocoumarin-fused 3',4'-dihydropyranones in high yield (up to 94%) with excellent stereoselectivities (up to >20:1 dr, 99% ee) under catalyst loadings as low as 1 mol %.
l-Proline-derived chiral bifunctional (thio)urea organocatalysts epi-PTU and epi-PU were newly synthesized, and their catalytic performances were compared with their C6 epimeric catalysts PTU and PU in various Michael reactions of nitrostyrene in terms of reactivities and stereoselectivities. The experimental results indicate that a proper relative stereochemistry at C2 and C6 in l-proline-derived bifunctional organocatalysts is important for successful catalysis and that catalysts (PTU and PU) with the 2S,6R configuration are much more efficient.
Disubstituted
2-pyrones and 2-pyridones were obtained by bifunctional
urea-catalyzed Michael addition/lactonization or lactamization followed
by a Hg(OAc)2- or Hg(OAc)2/DBU-mediated hydrolysis/decarboxylation/dehydrogenation
process. This one-pot two-stage protocol enabled the rapid synthesis
of 4,6-disubstituted 2-pyrones and 2-pyridones from dithiomalonate
and β,γ-unsaturated α-keto esters in practical yields
under mild reaction conditions. Additionally, the obtained 2-pyridones
were facilely transformed to 2,4,6-trisubstituted pyridines in excellent
yields.
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