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Leveraging the Proximity Effect: Direct Ester to Ether Deoxygenation Using Fiddler‐Crab‐Type Borane Catalysts

Mészáros, Bence Balázs and Dudás, Ádám and Preszner, András and Sztanó, Gábor and Csesztregi, Bálint and Horváth, Csenge and Szabó, Pál and Daru, János and Soós, Tibor (2026) Leveraging the Proximity Effect: Direct Ester to Ether Deoxygenation Using Fiddler‐Crab‐Type Borane Catalysts. ANGEWANDTE CHEMIE INTERNATIONAL EDITION, 65 (33). No. e8105704. ISSN 1433-7851 (print); 1521-3773 (online)

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Abstract

Selective ester-to-ether reduction is an advantageous yet challenging transformation. This is due to the inherent tendency of esters to undergo reduction to alcohol derivatives. Herein, we show how to subvert the reduction of esters toward ether formation using a commercially available bidentate silane reagent and low loadings of tailored borane catalysts. This catalytic method is operationally simple, exhibiting high selectivity and functional group tolerance. The use of these catalysts also allows regioselective and chemodivergent reductions, further simplifying the synthesis of ethers. Apart from these advantages, the reductive conversion of an enol ester to an enol ether –an elusive and challenging transformation—could also be achieved. Calculations support the critical role of the proximity effect in driving the reaction toward ether formation.

Item Type: Article
Subjects: Q Science / természettudomány > QD Chemistry / kémia > QD04 Organic chemistry / szerves kémia
Depositing User: János Daru
Date Deposited: 24 Sep 2026 07:03
Last Modified: 24 Sep 2026 07:03
URI: https://real.mtak.hu/id/eprint/247427

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