An efficient protocol for the synthesis of hybrid flavonoids was achieved via a bio-inspired tandem reaction of 2-hydroxychalcone with various nucleophiles.
Herein, we developed an enantioselective addition of aliphatic aldehydes to 2-hydroxychalcone promoted by cooperative organocatalysts, giving access to hybrid flavonoids in excellent enantioselectivities.
The
asymmetric synthesis of ent-fissistigmatin
C is successively accomplished in 12 steps (longest linear sequence
(LLS)). Relying on the enantioselective coupling of aliphatic aldehyde
with 2-hydroxychalcone promoted by cooperative organocatalysts, the
pivotal linkage of ent-fissistigmatin C between the
flavonoid and the sesquiterpenoid fragment was stereoselectively established.
An unprecedented final-stage radical cascade was also featured in
this synthesis, which enabled the simultaneous establishment of the trans-decalin framework via forging two consecutive C–C
bonds in one step.
A tandem asymmetric Michael-addition/cyclization of cyclic 1,3-dicarbonyl compounds to β,γ-unsaturated α-ketoesters catalyzed by chiral phosphoric acid is presented.
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