posted on 2023-12-29, 17:06authored byAyan Dasgupta, Subrata Bhattacharjee, Zixuan Tong, Avishek Guin, Ryan E. McNamee, Kirsten E. Christensen, Akkattu T. Biju, Edward A. Anderson
Bicyclo[1.1.0]butanes
(BCBs), strained carbocycles comprising two
fused cyclopropane rings, have become well-established building blocks
in organic synthesis, medicinal chemistry, and chemical biology due
to their diverse reactivity profile with radicals, nucleophiles, cations,
and carbenes. The constraints of the bicyclic ring system confer high
p-character on the interbridgehead C–C bond, leading to this
broad reaction profile; however, the use of BCBs in pericyclic processes
has to date been largely overlooked in favor of such stepwise, non-concerted
additions. Here, we describe the use of BCBs as substrates for ene-like
reactions with strained alkenes and alkynes, which give rise to cyclobutenes
decorated with highly substituted cyclopropanes and arenes. The former
products are obtained from highly stereoselective reactions with cyclopropenes,
generated in situ from vinyl diazoacetates under blue light irradiation
(440 nm). Cyclobutenes featuring a quaternary aryl-bearing carbon
atom are prepared from equivalent reactions with arynes, which proceed
in high yields under mild conditions. Mechanistic studies highlight
the importance of electronic effects in this chemistry, while computational
investigations support a concerted pathway and rationalize the excellent
stereoselectivity of reactions with cyclopropenes.