Anti-Selective Cyclopropanation of Non-Conjugated Alkenes with Diverse Pronucleophiles via Directed Nucleopalladation

22 March 2023, Version 1
This content is a preprint and has not undergone peer review at the time of posting.

Abstract

A facile approach to densely functionalized cyclopropanes is described. The reaction proceeds under mild conditions via the directed nucleopalladation of non-conjugated alkenes with readily available pronucleophiles and gives excellent yields and good anti-selectivity using I2 and TBHP as oxidants. Pronucleophiles bearing a diverse collection electron-withdrawing groups, including–CN, –CO2R, –COR, –SO2Ph, -CONHR and –NO2, are well tolerated. Internal alkenes, which are generally challenging substrates in other cyclopropanation methods, provide excellent yields and good diastereoselectivity in this methodology, allowing for controlled access to cyclopropanes substituted at all three C-atoms.

Keywords

cyclopropanation
alkene functionalization
palladium
directing group
C–C coupling

Supplementary materials

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Description
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Title
Supporting Info
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Experimental procedures, characterization data for new compounds, copies of NMR spectra, and X-ray crystallography data tables
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3ac.cif
Description
Crystallographic Information File - Compound 3ac
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3ai.cif
Description
Crystallographic Information File - Compound 3ai
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3bq.cif
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Crystallographic Information File - Compound 3bq
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3k'a
Description
Crystallographic Information File - Compound 3k'a
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3ak
Description
Crystallographic Information File - Compound 3ak
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3ql
Description
Crystallographic Information File - Compound 3ql
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