| Literature DB >> 23834409 |
Sumit Sahu1, Leland R Widger, Matthew G Quesne, Sam P de Visser, Hirotoshi Matsumura, Pierre Moënne-Loccoz, Maxime A Siegler, David P Goldberg.
Abstract
The new biomimetic ligands N4Py(2Ph) (1) and N4Py(2Ph,amide) (2) were synthesized and yield the iron(II) complexes [Fe(II)(N4Py(2Ph))(NCCH3)](BF4)2 (3) and [Fe(II)(N4Py(2Ph,amide))](BF4)2 (5). Controlled orientation of the Ph substituents in 3 leads to facile triplet spin reactivity for a putative Fe(IV)(O) intermediate, resulting in rapid arene hydroxylation. Addition of a peripheral amide substituent within hydrogen-bond distance of the iron first coordination sphere leads to stabilization of a high-spin Fe(III)OOR species which decays without arene hydroxylation. These results provide new insights regarding the impact of secondary coordination sphere effects at nonheme iron centers.Entities:
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Year: 2013 PMID: 23834409 PMCID: PMC3746373 DOI: 10.1021/ja402688t
Source DB: PubMed Journal: J Am Chem Soc ISSN: 0002-7863 Impact factor: 15.419
Figure 1Structures of new ligands 1 and 2.
Scheme 1
Figure 2Displacement ellipsoid plots (50% probability) of the cations of 3 and 4. H atoms are omitted for clarity.
Figure 3UV–vis spectral changes (0–17 min) (left) and LDIMS(+) (inset: calcd for 4) (right) for 3 + BuOOH (5 equiv) in CH3CN.
Scheme 2
Figure 4Potential energy landscape (kcal/mol) for arene hydroxylation of [FeIV(O)(N4Py2Ph)]2+ (a) and molecular orbitals for the electron transfer pathways (b).
Figure 5Generation of the FeIII(OOBu) complex 6.