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单核铁(V)氧代配合物的反应性。

On the reactivity of mononuclear iron(V)oxo complexes.

机构信息

Department of Chemistry, Carnegie Mellon University, 4400 Fifth Avenue, Pittsburgh, Pennsylvania 15213, USA.

出版信息

J Am Chem Soc. 2011 Nov 23;133(46):18546-9. doi: 10.1021/ja208007w. Epub 2011 Oct 27.

Abstract

Ferric tetraamido macrocyclic ligand (TAML)-based catalysts [Fe{C(6)H(4)-1,2-(NCOCMe(2)NCO)(2)CR(2)}(OH(2))]PPh(4) [1; R = Me (a), Et (b)] are oxidized by m-chloroperoxybenzoic acid at -40 °C in acetonitrile containing trace water in two steps to form Fe(V)oxo complexes (2a,b). These uniquely authenticated Fe(V)(O) species comproportionate with the Fe(III) starting materials 1a,b to give μ-oxo-(Fe(IV))(2) dimers. The comproportionation of 1a-2a is faster and that of 1b-2b is slower than the oxidation by 2a,b of sulfides (p-XC(6)H(4)SMe) to sulfoxides, highlighting a remarkable steric control of the dynamics. Sulfide oxidation follows saturation kinetics in [p-XC(6)H(4)SMe] with electron-rich substrates (X = Me, H), but changes to linear kinetics with electron-poor substrates (X = Cl, CN) as the sulfide affinity for iron decreases. As the sulfide becomes less basic, the Fe(IV)/Fe(III) ratio at the end of reaction for 2b suggests a decreasing contribution of concerted oxygen-atom transfer (Fe(V) → Fe(III)) concomitant with increasing electron transfer oxidation (Fe(V) → Fe(IV)). Fe(V) is more reactive toward PhSMe than Fe(IV) by 4 orders of magnitude, a gap even larger than that known for peroxidase Compounds I and II. The findings reinforce prior work typecasting TAML activators as faithful peroxidase mimics.

摘要

基于四氨基金属大环配体(TAML)的催化剂 [Fe{C(6)H(4)-1,2-(NCOCMe(2)NCO)(2)CR(2)}(OH(2))]PPh(4) [1; R = Me (a), Et (b)] 在乙腈中于 -40°C 下用间氯过氧苯甲酸在痕量水存在下分两步氧化,形成 Fe(V)氧配合物(2a,b)。这些独特鉴定的 Fe(V)(O)物种与 Fe(III)起始原料 1a,b 反歧化形成 μ-氧-(Fe(IV))(2)二聚体。1a-2a 的反歧化比 2a,b 氧化硫醚(p-XC(6)H(4)SMe)为亚砜更快,1b-2b 的反歧化比其更慢,突出了动力学的显著空间位阻控制。硫醚氧化遵循富电子底物(X = Me,H)的饱和动力学,但当硫醚与铁的亲和力降低时,电子缺底物(X = Cl,CN)的动力学变为线性。随着硫醚变得不那么碱性,反应结束时 2b 的 Fe(IV)/Fe(III)比值表明协同氧原子转移(Fe(V) → Fe(III))的贡献减少,同时电子转移氧化(Fe(V) → Fe(IV))增加。Fe(V)比 Fe(IV)对 PhSMe 的反应性高 4 个数量级,这一差距甚至大于已知的过氧化物酶化合物 I 和 II。这些发现加强了先前将 TAML 激活剂归类为忠实过氧化物酶模拟物的工作。

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