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Record Broken: A Copper Peroxide Complex with Enhanced Stability and Faster Hydroxylation Catalysis.

Authors :
Liebhäuser, Patricia
Keisers, Kristina
Hoffmann, Alexander
Schnappinger, Thomas
Sommer, Isabella
Thoma, Anne
Wilfer, Claudia
Schoch, Roland
Stührenberg, Kai
Bauer, Matthias
Dürr, Maximilian
Ivanović‐Burmazović, Ivana
Herres‐Pawlis, Sonja
Source :
Chemistry - A European Journal; 9/7/2017, Vol. 23 Issue 50, p12171-12183, 13p
Publication Year :
2017

Abstract

Tyrosinase model systems pinpoint pathways to translating Nature's synthetic abilities for useful synthetic catalysts. Mostly, they use N-donor ligands which mimic the histidine residues coordinating the two copper centres. Copper complexes with bis(pyrazolyl)methanes with pyridinyl or imidazolyl moieties are already reported as excellent tyrosinase models. Substitution of the pyridinyl donor results in the new ligand HC(3- tBuPz)<subscript>2</subscript>(4-CO<subscript>2</subscript>MePy) which stabilises a room-temperature stable μ-η<superscript>2</superscript>:η<superscript>2</superscript>-peroxide dicopper(II) species upon oxygenation. It reveals highly efficient catalytic activity as it hydroxylates 8-hydroxyquinoline in high yields (TONs of up to 20) and much faster than all other model systems (max. conversion within 7.5 min). Stoichiometric reactions with para-substituted sodium phenolates show saturation kinetics which are nearly linear for electron-rich substrates. The resulting Hammett correlation proves the electrophilic aromatic substitution mechanism. Furthermore, density functional theory (DFT) calculations elucidate the influence of the substituent at the pyridinyl donor: the carboxymethyl group adjusts the basicity and nucleophilicity without additional steric demand. This substitution opens up new pathways in reactivity tuning. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
09476539
Volume :
23
Issue :
50
Database :
Complementary Index
Journal :
Chemistry - A European Journal
Publication Type :
Academic Journal
Accession number :
125027548
Full Text :
https://doi.org/10.1002/chem.201700887