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Modular Synthesis of Functionalisable Alkoxy‐Tethered N‐Heterocyclic Carbene Ligands and an Active Catalyst for Buchwald–Hartwig Aminations
Author(s) -
Krinsky Jamin L.,
Martínez Alberto,
Godard Cyril,
Castillón Sergio,
Claver Carmen
Publication year - 2014
Publication title -
advanced synthesis and catalysis
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.541
H-Index - 155
eISSN - 1615-4169
pISSN - 1615-4150
DOI - 10.1002/adsc.201300903
Subject(s) - chemistry , imes , carbene , alkoxy group , synthon , steric effects , linker , catalysis , aryl , ligand (biochemistry) , combinatorial chemistry , medicinal chemistry , palladium , stereochemistry , organic chemistry , alkyl , receptor , biochemistry , computer science , operating system
Modular syntheses of functionalised, alkoxy‐tethered 1,3‐bis(2,4,6‐trimethylphenyl)imidazolium (IMes⋅H + ) and 1,3‐bis(2,6‐diisopropylphenyl)imidazolium (IPr⋅H + ) derivatives 1,3‐bis(4‐alkyloxy‐2,4,6‐trimethylphenyl)imidazolium (IXyO R ⋅H + ) and 1,3‐bis(4‐alkyloxy‐2,6‐diisopropylphenyl)imidazolium (IPrO R ⋅H + ) are reported. A reliable synthesis of the key starting material 4‐amino‐3,5‐diisopropylphenol is also described. Etherification of hydroxy‐decorated ligand intermediates before formation of the imidazolium core and subsequent modification, or direct etherification of the versatile synthon IPrO H ⋅HCl, allowed access to various linker types including triethoxysilyl, primary amino and norbornenyl, which are not accessible by other methods. An IPrO R –palladium(II) complex was prepared, and its catalytic activity was evaluated in challenging Buchwald–Hartwig aminations of aryl chlorides. This precatalyst displayed excellent activity and selectivity under mild reaction conditions, achieving in some cases a 10‐fold improvement in TOF relative to the IPr‐based version. An unexpected activity profile was observed wherein sterically demanding anilines were coupled more easily than those lacking ortho ‐substitution.