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Chemoselective oxidation of aryl organoboron systems enabled by boronic acid-selective phase transfer.


ABSTRACT: We report the direct chemoselective Brown-type oxidation of aryl organoboron systems containing two oxidizable boron groups. Basic biphasic reaction conditions enable selective formation and phase transfer of a boronic acid trihydroxyboronate in the presence of boronic acid pinacol (BPin) esters, while avoiding speciation equilibria. Spectroscopic investigations validate a base-promoted phase-selective discrimination of organoboron species. This phenomenon is general across a broad range of organoboron compounds and can also be used to invert conventional protecting group strategies, enabling chemoselective oxidation of BMIDA species over normally more reactive BPin substrates. We also demonstrate the selective oxidation of diboronic acid systems with chemoselectivity predictable a priori. The utility of this method is exemplified through the development of a chemoselective oxidative nucleophile coupling.

SUBMITTER: Molloy JJ 

PROVIDER: S-EPMC5452267 | biostudies-literature | 2017 Feb

REPOSITORIES: biostudies-literature

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Chemoselective oxidation of aryl organoboron systems enabled by boronic acid-selective phase transfer.

Molloy John J JJ   Clohessy Thomas A TA   Irving Craig C   Anderson Niall A NA   Lloyd-Jones Guy C GC   Watson Allan J B AJB  

Chemical science 20161027 2


We report the direct chemoselective Brown-type oxidation of aryl organoboron systems containing two oxidizable boron groups. Basic biphasic reaction conditions enable selective formation and phase transfer of a boronic acid trihydroxyboronate in the presence of boronic acid pinacol (BPin) esters, while avoiding speciation equilibria. Spectroscopic investigations validate a base-promoted phase-selective discrimination of organoboron species. This phenomenon is general across a broad range of orga  ...[more]

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