Herein,
a dual nickel/ruthenium strategy is developed for photoinduced
decarboxylative cross-coupling between α,β-unsaturated
carboxylic acids and cycloketone oxime esters. The reaction mechanism
is distinct from previous photoinduced decarboxylation of α,β-unsaturated
carboxylic acids. This reaction might proceed through a nickelacyclopropane
intermediate. The C(sp2)–C(sp3) bond
constructed by the aforementioned reaction provides an efficient approach
to obtaining various cyanoalkyl alkenes, which are synthetically valuable
organic skeletons in organic and medicinal chemistry, under mild reaction
conditions. The protocol tolerates many critical functional groups
and provides a route for the modification of complex organic molecules.
Herein,
a new strategy for the synthesis of monofluoroalkenes via
employing α-fluoroacrylic acids and N-hydroxyphthalimide
(NHPI) redox-active esters as coupling partners has been developed.
This decarboxylative reaction enabled the formation of C(sp2)–C(sp3) bonds to provide a practical and efficient
approach for the construction of a variety of monofluoroalkenes, which
are key structural motifs in organic chemistry, under mild reaction
conditions. The protocol exhibited excellent functional group compatibility
and delivered monofluoroalkene products with excellent Z-stereoselectivity. This work also provides a platform for the modification
of complex biologically active molecules containing carboxylic acids.
Herein, an iron(II)-catalyzed decarboxylative and oxidative decarbonylative cross-coupling of α-fluoroacrylic acids with aliphatic aldehydes is presented. This methodology provided a novel and practical strategy for the construction of the monofluoroalkenes...
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