1,2-Boron Shifts of β-Boryl Radicals Generated from Bis-Boronic Esters using Photoredox Catalysis.

1,2-Boron Shifts of β-Boryl Radicals Generated from Bis-Boronic Esters using Photoredox Catalysis.

Kaiser, Daniel;Noble, Adam;Fasano, Valerio;Aggarwal, Varinder K;
Journal of the American Chemical Society 2019
357
kaiser201912boronjournal

Abstract

1,2-Bis-boronic esters are versatile intermediates that enable the rapid elaboration of simple alkene precursors. Previous reports on their selective mono-functionalization have targeted the most accessible position, retaining the more hindered secondary boronic ester. In contrast, we have found that photoredox-catalyzed mono-deboronation generates primary β-boryl radicals that undergo rapid 1,2-boron shift to form thermodynamically favored secondary radicals, allowing for selective transformation of the more hindered boronic ester. The pivotal 1,2-boron shift, which has been demonstrated to be stereoretentive, enables access to a wide range of functionalized boronic esters and has been applied to highly diastereoselective fragmentation and transannular cyclization reactions. Furthermore, its generality has been shown in a radical cascade reaction with an allylboronic ester.

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