Vicinal
quaternary–tertiary carbon stereocenters were constructed
with excellent stereoselectivity via aza-enolization of enantioenriched
acyclic N-tert-butanesulfinyl ketimines
bearing two sterically similar α-linear alkyl substituents followed
by conjugate addition to nitroalkenes. Further changes of the absolute
configuration of the sulfinyl group and/or the α-stereocenter
in the ketimine allowed the facile stereodivergent synthesis of all
four diastereomers of the Michael-type alkylation adducts. This reaction
is a successful example of acyclic stereocontrol based on stereoselective
α-deprotonation for the formation of fully substituted aza-enolates
from ketone derivatives.
α-Tertiary hydroxyimines were
stereoselectively synthesized
from enantioenriched N-tert-butanesulfinyl
ketimines using potassium tert-butoxide, molecular
oxygen, and trimethyl phosphite. The stereoselective hydroxylation
of acyclic ketimines bearing two sterically similar α-substituents
was achieved by controlling the geometry of the metalloenamine intermediates
and the facial selectivity of hydroxylation. The synthetic utility
of the resulting α-tertiary hydroxyimines was demonstrated through
the successful diastereoselective synthesis of highly substituted
β-amino alcohols.
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