| Literature DB >> 25246108 |
Sumit Sahu1, Matthew G Quesne, Casey G Davies, Maximilian Dürr, Ivana Ivanović-Burmazović, Maxime A Siegler, Guy N L Jameson, Sam P de Visser, David P Goldberg.
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.Entities:
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Year: 2014 PMID: 25246108 PMCID: PMC4183621 DOI: 10.1021/ja507346t
Source DB: PubMed Journal: J Am Chem Soc ISSN: 0002-7863 Impact factor: 15.419
Figure 1FeII complexes of 2a–b (left), and displacement ellipsoid plot (50% probability) for the cation of 2a (right). H-atoms were omitted for clarity.
Figure 2Overall scheme for aromatic hydroxylation (top), UV–vis spectral changes for 2a + IBX-ester over 50 min in CH3CN at 23 °C (bottom left), displacement ellipsoid plot (50% probability) for the dication of 3b (bottom right). H-atoms were omitted for clarity.
Figure 3Mössbauer spectra (data collected at 5.8 K) for 2a, 5a and the final solution after warming 5a (left) and time-dependent conversion of 5a to 3a (right).
Figure 4Potential energy diagram for the initial electrophilic attack of 5. The numbers in parentheses are ΔG at 298 K.