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O−O Bond Formation and Liberation of Dioxygen Mediated by N5‐Coordinate Non‐Heme Iron(IV) Complexes.

Authors :
Kroll, Nicole
Speckmann, Ina
Schoknecht, Marc
Gülzow, Jana
Diekmann, Marek
Pfrommer, Johannes
Stritt, Anika
Schlangen, Maria
Grohmann, Andreas
Hörner, Gerald
Source :
Angewandte Chemie International Edition. 9/16/2019, Vol. 58 Issue 38, p13472-13478. 7p.
Publication Year :
2019

Abstract

Formation of the O−O bond is considered the critical step in oxidative water cleavage to produce dioxygen. High‐valent metal complexes with terminal oxo (oxido) ligands are commonly regarded as instrumental for oxygen evolution, but direct experimental evidence is lacking. Herein, we describe the formation of the O−O bond in solution, from non‐heme, N5‐coordinate oxoiron(IV) species. Oxygen evolution from oxoiron(IV) is instantaneous once meta‐chloroperbenzoic acid is administered in excess. Oxygen‐isotope labeling reveals two sources of dioxygen, pointing to mechanistic branching between HAT (hydrogen atom transfer)‐initiated free‐radical pathways of the peroxides, which are typical of catalase‐like reactivity, and iron‐borne O−O coupling, which is unprecedented for non‐heme/peroxide systems. Interpretation in terms of [FeIV(O)] and [FeV(O)] being the resting and active principles of the O−O coupling, respectively, concurs with fundamental mechanistic ideas of (electro‐) chemical O−O coupling in water oxidation catalysis (WOC), indicating that central mechanistic motifs of WOC can be mimicked in a catalase/peroxidase setting. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
14337851
Volume :
58
Issue :
38
Database :
Academic Search Index
Journal :
Angewandte Chemie International Edition
Publication Type :
Academic Journal
Accession number :
138688726
Full Text :
https://doi.org/10.1002/anie.201903902