Issue 26, 2022

Synthesis of oxaboranes via nickel-catalyzed dearylative cyclocondensation

Abstract

We report Ni-catalyzed dearylative cyclocondensation of aldehydes, alkynes, and triphenylborane. The reaction is initiated by oxidative cyclization of the aldehyde and alkyne coupling partners to generate an oxanickelacyclopentene which reacts with triphenylborane to form oxaboranes. This formal dearylative cyclocondensation reaction generates oxaboranes in moderate-to-high yields (47–99%) with high regioselectivities under mild reaction conditions. This approach represents a direct and modular synthesis of oxaboranes which are difficult to access using current methods. These oxaboranes are readily transformed into valuable building blocks for organic synthesis and an additional class of boron heterocycles. Selective homocoupling forms oxaboroles, oxidation generates aldol products, and reduction and arylation form substituted allylic alcohols.

Graphical abstract: Synthesis of oxaboranes via nickel-catalyzed dearylative cyclocondensation

Supplementary files

Article information

Article type
Edge Article
Submitted
30 Mar 2022
Accepted
19 May 2022
First published
20 May 2022
This article is Open Access

All publication charges for this article have been paid for by the Royal Society of Chemistry
Creative Commons BY-NC license

Chem. Sci., 2022,13, 7790-7795

Synthesis of oxaboranes via nickel-catalyzed dearylative cyclocondensation

M. T. Koeritz, H. K. Banovetz, S. A. Prell and L. M. Stanley, Chem. Sci., 2022, 13, 7790 DOI: 10.1039/D2SC01840C

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