Lewis Acidity of the SbCl <sub>3</sub> / <i>o</i> ‐chloranil System

F Ferit Şit (Department of Chemistry Texas A&amp;M University College Station TX 77843 USA) N Nathanael H. Hunter (Department of Chemistry Texas A&amp;M University College Station TX 77843 USA) L Logan T. Maltz (Department of Chemistry Texas A&amp;M University College Station TX 77843 USA) F François P. Gabbaï (Department of Chemistry)

Abstract

Abstract While SbCl 3 is typically inert toward oxidation by ortho ‐quinones, we use o ‐chloranil to show that the outcome of such reactions may be altered by the presence of a donor such as triphenylphosphine oxide, which readily traps the SbCl 3 (cat Cl ) synthon (cat Cl  = tetrachlorocatecholate) in the form of the corresponding adduct Ph 3 PO→SbCl 3 (cat Cl ). The same reaction in the presence of a chloride salt affords the corresponding antimonate anion [Cl 4 Sb(cat Cl )] − . Computational studies indicate that the putative SbCl 3 (cat Cl ) synthon has a higher chloride ion affinity than SbCl 5 , suggesting significant Lewis acidity. This property is further demonstrated by the use of the SbCl 3 / o ‐chloranil system for both THF polymerization and a Friedel–Crafts‐type alkylation of benzene using 1‐fluorooctane. Finally, the reaction of E ‐stilbene with o ‐chloranil in the presence of SbCl 3 affords the corresponding benzodioxene, suggesting that SbCl 3 may also operate as a redox‐active catalyst.

Article Details

Volume / Issue Vol. 64, Issue 29
Published July 14, 2025
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (4)

F

Ferit Şit

Department of Chemistry Texas A&amp;M University College Station TX 77843 USA

N

Nathanael H. Hunter

Department of Chemistry Texas A&amp;M University College Station TX 77843 USA

L

Logan T. Maltz

Department of Chemistry Texas A&amp;M University College Station TX 77843 USA

F

François P. Gabbaï

Department of Chemistry