Back to Search Start Over

Mechanism of Oxidative Activation of Fluorinated Aromatic Compounds by N‐Bridged Diiron‐Phthalocyanine: What Determines the Reactivity?

Authors :
Colomban, Cédric
Tobing, Anthonio H.
Mukherjee, Gourab
Sastri, Chivukula V.
Sorokin, Alexander B.
Visser, Sam P.
Source :
Chemistry - A European Journal. 11/13/2019, Vol. 25 Issue 63, p14320-14331. 12p.
Publication Year :
2019

Abstract

The biodegradation of compounds with C−F bonds is challenging due to the fact that these bonds are stronger than the C−H bond in methane. In this work, results on the unprecedented reactivity of a biomimetic model complex that contains an N‐bridged diiron‐phthalocyanine are presented; this model complex is shown to react with perfluorinated arenes under addition of H2O2 effectively. To get mechanistic insight into this unusual reactivity, detailed density functional theory calculations on the mechanism of C6F6 activation by an iron(IV)‐oxo active species of the N‐bridged diiron phthalocyanine system were performed. Our studies show that the reaction proceeds through a rate‐determining electrophilic C−O addition reaction followed by a 1,2‐fluoride shift to give the ketone product, which can further rearrange to the phenol. A thermochemical analysis shows that the weakest C−F bond is the aliphatic C−F bond in the ketone intermediate. The oxidative defluorination of perfluoroaromatics is demonstrated to proceed through a completely different mechanism compared to that of aromatic C−H hydroxylation by iron(IV)‐oxo intermediates such as cytochrome P450 Compound I. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
09476539
Volume :
25
Issue :
63
Database :
Academic Search Index
Journal :
Chemistry - A European Journal
Publication Type :
Academic Journal
Accession number :
139645783
Full Text :
https://doi.org/10.1002/chem.201902934