A Hydroxy‐Substituted Trialkyloxonium Ion and Its Oxonium Alkoxide Zwitterion

A Andrew L. Otsuki (Department of Chemistry University of California Davis Davis California USA) G Gizem Atakan Alkan (Department of Chemistry University of California Davis Davis California USA) S Shuhei Manabe (Department of Chemistry University of California Davis Davis California USA) W Wondimagegn T. Shewa (Department of Chemistry University of California Davis Davis California USA) G Gorkem Gunbas (Department of Chemistry University of California Davis Davis California USA) J James C. Fettinger (Department of Chemistry, University of California Davis, One Shields Ave. Davis, Sacramento, California 95616, United States) M Mark Mascal (Department of Chemistry) N Nema Hafezi (Department of Chemistry University of California Davis Davis California USA)

Abstract

ABSTRACT Trialkyl oxonium salts are among the most powerful electrophiles known. They are immediately quenched by nucleophiles like alcohols and halide ions, and are therefore used in unreactive solvents and have non‐nucleophilic counterions. Any proposal to incorporate a nucleophilic hydroxy substituent into a trialkyl oxonium species would thus be ill‐considered, and pairing an R 3 O + cation with an alkoxide counterion would be an abstract notion, at best. Here, we describe how these combinations are made possible within the context of the robust environment of the heterotriquinane ring system. A stable, C 3 symmetric oxatriquinanetriol can be simply accessed by reaction of the tris‐epoxide of 1,4,7‐cyclononatriene with aqueous acid. The three OH groups of this hemispherical cation point into the endo space of the bowl and participate in strong intramolecular hydrogen bonding. A close balance in the dynamics of proton exchange between these hydroxy functions and amine bases is predicted by modeling. In practice, treatment of oxatriquinanetriol with the non‐nucleophilic base 2‐tert‐butyl‐1,1,3,3‐tetramethylguanidine (Barton's base) leads to a zwitterionic oxonium alkoxide.

Article Details

Volume / Issue Vol. 65, Issue 29
Published July 13, 2026
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (8)

A

Andrew L. Otsuki

Department of Chemistry University of California Davis Davis California USA

G

Gizem Atakan Alkan

Department of Chemistry University of California Davis Davis California USA

S

Shuhei Manabe

Department of Chemistry University of California Davis Davis California USA

W

Wondimagegn T. Shewa

Department of Chemistry University of California Davis Davis California USA

G

Gorkem Gunbas

Department of Chemistry University of California Davis Davis California USA

J

James C. Fettinger

Department of Chemistry, University of California Davis, One Shields Ave. Davis, Sacramento, California 95616, United States

M

Mark Mascal

Department of Chemistry

N

Nema Hafezi

Department of Chemistry University of California Davis Davis California USA