Mechanism of the Stoltz–Grubbs (KO <i> <sup>t</sup> </i> Bu/Et <sub>3</sub> SiH) Silylation: Single‐Electron Transfer is the Missing Link between the Heterolytic and Radical Pathways

I Ian D. Jenkins (Institute for Biomedicine and Glycomics Griffith University Nathan QLD 4111 Australia) K Ka Ho Chow (School of Chemistry and Molecular Biosciences The University of Queensland Brisbane QLD 4072 Australia) E Elizabeth H. Krenske (School of Chemistry and Molecular Biosciences The University of Queensland Brisbane QLD 4072 Australia)

Abstract

Abstract A new mechanism for the Stoltz–Grubbs (KO t Bu/Et 3 SiH) silylation of heteroarenes is reported that successfully resolves the important unexplained experimental features of the reaction. The mechanism combines hydride transfer, hydrogen atom transfer (HAT), and single electron transfer (SET) steps (with the substrate hydride adduct being identified as a new SET donor) and is supported by extensive theoretical calculations. Previously proposed heterolytic and radical mechanisms do not involve SET. The discovery of a mechanistic role for SET explains why the silylation reaction simultaneously displays both heterolytic and radical character, and why it does not require free silyl radicals. Previously unexplained experimental results from reactions of isotopically labelled reactants and on the inhibitory effects of electron‐accepting additives can also be understood based on the SET mechanism.

Article Details

Volume / Issue Vol. 64, Issue 49
Published December 01, 2025
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (3)

I

Ian D. Jenkins

Institute for Biomedicine and Glycomics Griffith University Nathan QLD 4111 Australia

K

Ka Ho Chow

School of Chemistry and Molecular Biosciences The University of Queensland Brisbane QLD 4072 Australia

E

Elizabeth H. Krenske

School of Chemistry and Molecular Biosciences The University of Queensland Brisbane QLD 4072 Australia