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Direct observation of a nonheme iron(IV)-oxo complex that mediates aromatic C-F hydroxylation.


ABSTRACT: The synthesis of a pentadentate ligand with strategically designed fluorinated arene groups in the second coordination sphere of a nonheme iron center is reported. The oxidatively resistant fluorine substituents allow for the trapping and characterization of an Fe(IV)(O) complex at -20 °C. Upon warming of the Fe(IV)(O) complex, an unprecedented arene C-F hydroxylation reaction occurs. Computational studies support the finding that substrate orientation is a critical factor in the observed reactivity. This work not only gives rare direct evidence for the participation of an Fe(IV)(O) species in arene hydroxylation but also provides the first example of a high-valent iron-oxo complex that mediates aromatic C-F hydroxylation.

SUBMITTER: Sahu S 

PROVIDER: S-EPMC4183621 | biostudies-literature | 2014 Oct

REPOSITORIES: biostudies-literature

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Direct observation of a nonheme iron(IV)-oxo complex that mediates aromatic C-F hydroxylation.

Sahu Sumit S   Quesne Matthew G MG   Davies Casey G CG   Dürr Maximilian M   Ivanović-Burmazović Ivana I   Siegler Maxime A MA   Jameson Guy N L GN   de Visser Sam P SP   Goldberg David P DP  

Journal of the American Chemical Society 20140923 39


The synthesis of a pentadentate ligand with strategically designed fluorinated arene groups in the second coordination sphere of a nonheme iron center is reported. The oxidatively resistant fluorine substituents allow for the trapping and characterization of an Fe(IV)(O) complex at -20 °C. Upon warming of the Fe(IV)(O) complex, an unprecedented arene C-F hydroxylation reaction occurs. Computational studies support the finding that substrate orientation is a critical factor in the observed reacti  ...[more]

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