Directed, Palladium(II)-Catalyzed Enantioselective anti-Carboboration of Alkenyl Carbonyl Compounds

11 January 2019, Version 1
This content is a preprint and has not undergone peer review at the time of posting.

Abstract

A substrate-directed enantioselective anti-carboboration reaction of alkenes has been developed, wherein a carbon based nucleophile and a boron moiety are installed across the C=C bond through a 5- or 6-membered palladacycle intermediate. The reaction is promoted by a palladium(II) catalyst and a mondentate oxzazoline ligand. A range of enantioenriched secondary alkylboronate products were obtained with moderate to high enantioselectivity that could be further upgraded by recrystallization. This work represents a new method to synthesize versatile and valuable alkylboronate building blocks. Building on an earlier mechanistic proposal by Peng, He, and Chen, a revised model is proposed to account for the stereoconvergent nature of this transformation.

Keywords

Palladium
Directing Group
Carboboration
Enantioselective Catalysis
MOX Ligand

Supplementary materials

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Supporting Info
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4f
Description
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4g
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Pd-I
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