Direct Decarboxylative Borylation

Abstract Decarboxylative borylation provides a powerful route for converting abundant aliphatic carboxylic acids to synthetically versatile alkyl boronates. However, existing radical approaches require substrate preactivation, typically as redox-active esters, which prevents their application in the decarboxylative borylation of free carboxylic acids. Herein, we report an iron ligand-to-metal charge-transfer (LMCT) photocatalytic strategy that enables the direct decarboxylative borylation of nonactivated carboxylic acids. By harnessing the photoinduced inner-sphere electron-transfer reactivity of iron carboxylate complexes, this strategy provides direct access to alkyl boronates from native carboxylic acids, including those embedded in structurally complex and industrially relevant molecules. The method exhibits reactivity orthogonal to established redox-active ester borylation strategies and provides a scalable route to valuable organoboron reagents from chemical feedstocks.

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Publication Details

Journal
Journal of the American Chemical Society
Published
2026-09-17
DOI
https://doi.org/10.1021/jacs.6c13635
Primary Topic
Organoboron and organosilicon chemistry
Type
article
Field-Weighted Citation Impact
0.00

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article

Direct Decarboxylative Borylation

Francisco Juliá‐Hernández, Sarah‐Jayne Burlingham, Paula Visiedo-Jiménez, Quentin Ordan
Journal of the American Chemical Society
Organoboron and organosilicon chemistry
article

Direct Decarboxylative Borylation

Francisco Juliá‐Hernández, Sarah‐Jayne Burlingham, Paula Visiedo-Jiménez, Quentin Ordan
article en

Abstract

Abstract Decarboxylative borylation provides a powerful route for converting abundant aliphatic carboxylic acids to synthetically versatile alkyl boronates. However, existing radical approaches require substrate preactivation, typically as redox-active esters, which prevents their application in the decarboxylative borylation of free carboxylic acids. Herein, we report an iron ligand-to-metal charge-transfer (LMCT) photocatalytic strategy that enables the direct decarboxylative borylation of nonactivated carboxylic acids. By harnessing the photoinduced inner-sphere electron-transfer reactivity of iron carboxylate complexes, this strategy provides direct access to alkyl boronates from native carboxylic acids, including those embedded in structurally complex and industrially relevant molecules. The method exhibits reactivity orthogonal to established redox-active ester borylation strategies and provides a scalable route to valuable organoboron reagents from chemical feedstocks.

Journal of the American Chemical Society
Universidad de Murcia (ES)
Fundación Séneca, European Commission, European Regional Development Fund, Agencia Estatal de Investigación, NextGenerationEU
Openalex Percentile: Top 21%
Organoboron and organosilicon chemistry
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