A trityl-cation-initiated annulation of benzyl-substituted vinylcyclopropanes (VCPs) with hydrosilanes is reported. Two Si-C(sp3) bonds and one C(sp2)-C(sp3) bond are formed in this process where an intramolecular 6-endo-tet Friedel-Crafts alkylation of...
A hydrosilylation
of vinylcyclopropanes (VCPs) catalyzed by the
strong boron Lewis acid B(C6F5)3 is
reported. For the majority of VCPs, little or no ring opening of the
cyclopropyl unit is observed. Conversely, for VCPs with bulky R groups,
such as ortho-substituted aryl rings or branched alkyl residues, ring
opening is the exclusive reaction pathway. This finding is explained
by the thwarted hydride delivery to a sterically shielded, β-silicon-stabilized
cyclopropylcarbinyl cation intermediate.
Catalytic silicon‐carbon or silicon‐heteroatom bond‐forming hydrosilylation has become increasingly important in synthetic chemistry, catalysis and organosilicon chemistry. Herein we report a platinum‐catalyzed one‐pot and tandem hydrosilylation/cyclization of OH‐containing alkynes with dihydrosilanes, allowing for facile synthesis of six‐membered organosilicon compounds, including silyloxycycles and cyclic siloxanes in high yields and with good stereoselectivities.magnified image
A formal (4 + 1)-cycloaddition of vinylcyclopropanes and Et 2 SiH 2 to afford 3,4-disubstituted silolanes is reported. The reaction sequence commences with the known B(C 6 F 5 ) 3catalyzed alkene hydrosilylation with dihydrosilanes. Cleavage of the remaining Si−H bond in the hydrosilylation product assisted by B(C 6 F 5 ) 3 leads to formation of a cyclopropane-stabilized silylium ion. The activated cyclopropane ring is then opened by the in situ-generated borohydride accompanied by ring closure to the silolane. The diastereoselectivity is rationalized by a mechanistic model.
Pd-catalyzed AAA of 1,2-bifunctional nucleophiles and one-pot tandem allylic cyclization/reduction gave corresponding heterocycle products with promising enantioselectivity in good yields.
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