With
pyrimidine as the directing group, we achieved the meta-selective
difluoromethylation of phenol derivatives using ruthenium as a catalyst.
This synthetic scheme provided an efficient method for the syntheses
of fluorine-containing phenol derivatives. A wide variety of phenol
derivatives were well-suited, affording the corresponding products
in moderate-to-good yields.
A novel and efficient
approach for direct carbonation of aromatic
acids with ethyl bromodifluoroacetate as the carbonyl source is reported.
A broad range of substrates bearing various functional groups were
tolerated, leading to monoalkyl phthalate derivatives in moderate
to good yields.
Highly efficient
alkylation of β-chloro ketones and their
derivatives was achieved by means of domino dehydrochlorination/Mn-enabled
radical-based alkyl–alkyl cross-coupling reaction. In situ-generated
α,β-unsaturated ketones and their analogues were identified
as the reaction intermediates. Known bioactive compounds, such as
melperone and azaperone, could be easily prepared from β-chloropropiophenone
in two steps.
A direct, para-selective, radical-based alkylation
of aromatic ketones with alkanes has been developed using a nickel
catalyst with oxamide as the ligand. Acetophenones bearing electron-withdrawing
substituents were functionalized directly with simple alkanes with
high para-selectivity while acetophenones with electron-donating
groups were mainly para-functionalized. A mechanistic
study indicated that C–H bond activation of the aromatic ring
may be the rate-determining step of the reaction.
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