Regioselective Synthesis of Benzylsilanols from Kobayashi‐Type Reagents via C(sp <sup>3</sup> )─H Bond Activating 1,4‐Palladium Migration

R Ryo Shintani (Division of Chemistry Department of Materials Engineering Science Graduate School of Engineering Science The University of Osaka Toyonaka Osaka Japan) K Keisuke Tachibana (Division of Chemistry Department of Materials Engineering Science Graduate School of Engineering Science The University of Osaka Toyonaka Osaka Japan)

Abstract

ABSTRACT Organosilanes constitute a useful class of compounds in various fields of research in modern organic chemistry. Discovery of unexplored reactivity and utility of organosilanes is therefore highly important to further enhance their values. In this context, a palladium‐catalyzed regioselective synthesis of benzylsilanols from Kobayashi‐type reagents has been developed through a mechanistically distinct approach involving 1,4‐palladium migration followed by intramolecular transmetalation instead of conventional aryne formation. The reaction can be combined with various prior transition‐metal‐catalyzed processes and the resulting benzylsilanols have been utilized as effective benzyl nucleophiles for the Hiyama–Denmark cross‐coupling reactions with aryl halides under simple conditions. The mechanistic experiments have also been carried out, showing that the 1,4‐palladium migration goes through a palladacycle intermediate via turnover‐limiting deprotonative C(sp 3 )─H bond activation.

Article Details

Volume / Issue Vol. 65, Issue 21
Published May 18, 2026
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (2)

R

Ryo Shintani

Division of Chemistry Department of Materials Engineering Science Graduate School of Engineering Science The University of Osaka Toyonaka Osaka Japan

K

Keisuke Tachibana

Division of Chemistry Department of Materials Engineering Science Graduate School of Engineering Science The University of Osaka Toyonaka Osaka Japan