Site‐Selective B─H Activation via HAT Toward Xanthyl‐ <i>closo</i> ‐Carboranes as Bench‐Stable Precursors of Organosulfur Boron Clusters

M Marco Rusconi (Department of Chemistry University of Torino Torino Italy) E Eugenia Magi (Department of Chemistry University of Torino Torino Italy) P Polyssena Renzi (Department of Chemistry University of Torino Torino Italy) E Emanuele Azzi (Centro Singular de Investigación en Química Biolóxica e Materiais Moleculares (CiQUS), Departamento de Química Orgánica, Universidade de Santiago de Compostela, Rúa de Jenaro de la Fuente, s/n, 15705 Santiago de Compostela, A Coruña, Spain) V Valeria Lagostina E Enrico Salvadori (Department of Chemistry, University of Torino, Via Giuria 9, Torino 10125, Italy) M Mario Chiesa (Department of Chemistry, University of Torino, Via Giuria 9, Torino 10125, Italy) B Birgit Hischa (Department of X‐ray Structure Analysis University of Regensburg Regensburg Germany) G Giovanni Ghigo (Department of Chemistry University of Torino Torino Italy) A Annamaria Deagostino (Department of Chemistry University of Torino Torino Italy)

Abstract

ABSTRACT In this work, a light mediated direct regioselective B─H functionalization to afford unexplored xanthyl‐ closo ‐carboranes is described by a nitrogen‐centered radical (NCR)‐mediated hydrogen atom transfer (HAT) process. To directly activate a B─H bond in an icosahedral carborane, which contains 10 B─H with very similar electronic properties, represents a challenging goal. The reaction is applied to several mono and disubstituted o ‐ and m ‐carboranes affording, in discrete to good yields, boryl xanthates which act as novel bench‐stable and versatile platforms for the functionalization of the carborane cage with sulfur‐containing functionalities: alkyl‐ and aryl sulfides, thiols, thioesters and sulfonyl chlorides are readily obtained. The reaction has also been scaled up and an analogue of the pesticide Chlorbenside has been synthesized. EPR studies, additionally to deuteration experiments, confirm the formation of an NCR as the promoter of a HAT process to the most electron‐rich boron vertex with the lowest B─H bond dissociation energy (BDE), to produce a B(9)‐centered radical. A deep computational study contributes to the mechanism proposal.

Article Details

Volume / Issue Vol. 65, Issue 24
Published June 08, 2026
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (10)

M

Marco Rusconi

Department of Chemistry University of Torino Torino Italy

E

Eugenia Magi

Department of Chemistry University of Torino Torino Italy

P

Polyssena Renzi

Department of Chemistry University of Torino Torino Italy

E

Emanuele Azzi

Centro Singular de Investigación en Química Biolóxica e Materiais Moleculares (CiQUS), Departamento de Química Orgánica, Universidade de Santiago de Compostela, Rúa de Jenaro de la Fuente, s/n, 15705 Santiago de Compostela, A Coruña, Spain

V

Valeria Lagostina

E

Enrico Salvadori

Department of Chemistry, University of Torino, Via Giuria 9, Torino 10125, Italy

M

Mario Chiesa

Department of Chemistry, University of Torino, Via Giuria 9, Torino 10125, Italy

B

Birgit Hischa

Department of X‐ray Structure Analysis University of Regensburg Regensburg Germany

G

Giovanni Ghigo

Department of Chemistry University of Torino Torino Italy

A

Annamaria Deagostino

Department of Chemistry University of Torino Torino Italy