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End-on and side-on peroxo derivatives of non-heme iron complexes with pentadentate ligands: Models for putative intermediates in biological iron/dioxygen chemistry

机译:具有五齿配体的非血红素铁配合物的末端和侧面过氧衍生物:生物铁/双氧化学中假定的中间体模型

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摘要

Mononuclear iron(III) species with end-on and side-on peroxide have been proposed or identified in the catalytic cycles of the antitumor drug bleomycin and a variety of enzymes, such as cytochrome P450 and Rieske dioxygenases, Only recently have biomimetic analogues of such reactive species been, generated and characterized at low temperatures. We report the synthesis and characterization of a series of iron(II) complexes with pentadentate N5 ligands that react with H(2)O(2) to generate transient low-spin Fe(III)-OOH intermediates. These intermediates have low-spin iron(III) centers exhibiting hydroperoxo-to-iron(III) charge-transfer bands in the 500-600-nm region. Their resonance Raman frequencies, nu(O-O), near 800 cm(-1) are significantly lower than those observed for high-spin counterparts. The hydroperoxo-to-iron(III) charge-transfer transition blue-shifts and the nu(O-O) of the Fe-OOH unit decreases as the N5 ligand becomes more electron donating. Thus, increasing electron density at the low-spin Fe(III) center weakens the O-O bond, in accord with conclusions drawn from published DFT calculations, The parent [(N4Py)Fe(III)(eta(1)-OOH)](2+) (1a) ion in this series (N4Py = NN-bis(2-pyridylmethyl)-N-bis(2-pyridyl)methylamine) can be converted to its conjugate base, which is demonstrated to be a high-spin iron(III) complex with a side-on peroxo ligand, [(N4Py)Fe(III)(eta(2)-O(2))](+) (1b). A detailed analysis of 1a and 1b by EPR and Mossbauer spectroscopy provides insights into their electronic properties. The orientation of the observed (57)Fe A-tensor of 1 a can be explained with the frequently employed Griffith model provided the rhombic component of the ligand field, determined by the disposition of the hydroperoxo ligand, is 45degrees rotated relative to the octahedral field. EXAFS studies of la and 1b reveal the first metrical details of the iron-peroxo units in this family Of complexes: [(N4Py)Fe(III)(eta(1)-OOH)](2+) has an Fe-O bond of 1.76 Angstrom, while [(N4Py)Fe(III)(eta(2)-O(2))]- has two Fe-O bonds of 1.93 Angstrom, values which are in very good agreement with results obtained from DFT calculations
机译:在抗肿瘤药博来霉素和多种酶(例如细胞色素P450和Rieske双加氧酶)的催化循环中,已经提出或鉴定了具有端基和侧基过氧化物的单核铁(III)物种,直到最近才有类似的类似生物类似物。在低温下产生,生成和表征了反应性物质。我们报告与五齿N5配体与H(2)O(2)反应生成瞬态低旋铁(III)-OOH中间体的一系列铁(II)配合物的合成和表征。这些中间体具有低自旋铁(III)中心,在500-600 nm区域内显示氢过氧-铁(III)电荷转移带。他们的共振拉曼频率nu(O-O)接近800 cm(-1),远低于高旋转频率对应的共振拉曼频率。随着N5配体的供电子增多,氢过氧-铁(III)的电荷转移跃迁蓝移,Fe-OOH单元的nu(O-O)降低。因此,根据自发DFT计算得出的结论,低旋转的Fe(III)中心电子密度的增加会削弱OO键,[[N4Py)Fe(III)(eta(1)-OOH)](该系列中的2+)(1a)离子(N4Py = NN-双(2-吡啶基甲基)-N-双(2-吡啶基)甲胺)可以转化为其共轭碱,已证明是高自旋铁(III)与侧面过氧配体[[N4Py)Fe(III)(eta(2)-O(2))](+)的配合物(1b)。通过EPR和Mossbauer光谱对1a和1b进行的详细分析提供了对其电子特性的见解。如果配体场的菱形分量(由氢过氧配体的位置确定)相对于八面体场旋转了45度,则可以使用常用的Griffith模型解释观察到的1a的(57)Fe A张量的方向。 1a和1b的EXAFS研究揭示了该络合物家族中铁-过氧单元的第一个度量细节:[(N4Py)Fe(III)(eta(1)-OOH)](2+)具有Fe-O键为1.76埃,而[(N4Py)Fe(III)(eta(2)-O(2))]-具有两个1.93埃的Fe-O键,其值与DFT计算得出的结果非常吻合

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