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Peptide-tethered monodentate and chelating histidylidene metal complexes: synthesis and application in catalytic hydrosilylation
Author(s)
Date Issued
2013-04-28
Date Available
2015-05-25T09:57:39Z
Abstract
The N-delta,N-epsilon-dimethylated histidinium salt (His*) was tethered to oligopeptides and metallated to form Ir(III) and Rh(I) NHC complexes. Peptide-based histidylidene complexes containing only alanine, Ala-Ala-His*-[M] and Ala-Ala-Ala-His*-[M] were synthesised ([M] = Rh(cod) Cl, Ir(Cp*)Cl-2), as well as oligopeptide complexes featuring a potentially chelating methionine and tyrosine residue, Met-Ala-Ala-His*-Rh(cod)Cl and Tyr-Ala-Ala-His*-Rh(cod)Cl. Chelation of the methionine-containing histidylidene ligand was induced by halide abstraction from the rhodium centre, while tyrosine remained non-coordinating under identical conditions. High catalytic activities in hydrosilylation were achieved with all peptide-based rhodium complexes. The cationic S-Met,C-His*-bidentate peptide rhodium catalyst outperformed the monodentate neutral peptide complexes and constitutes one of the most efficient rhodium carbene catalysts for hydrosilylation, providing new opportunities for the use of peptides as N-heterocyclic carbene ligands in catalysis.
Sponsorship
European Research Council
Other Sponsorship
COST Action
Swiss National Science Foundation
Type of Material
Journal Article
Publisher
Royal Society of Chemistry
Journal
Dalton Transactions
Volume
42
Issue
16
Start Page
5655
End Page
5660
Copyright (Published Version)
2013 The Royal Society of Chemistry
Language
English
Status of Item
Peer reviewed
This item is made available under a Creative Commons License
File(s)
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Name
MT-ART-11-2012-020218_ms.pdf
Size
688.2 KB
Format
Adobe PDF
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