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铁(III)[键合]萨伦配合物作为酶模型:氧代(萨伦)铁配合物对有机硫化物氧化的机理研究

Iron(III) [bond] Salen complexes as enzyme models: mechanistic study of oxo(salen)iron complexes oxygenation of organic sulfides.

作者信息

Sivasubramanian Veluchamy Kamaraj, Ganesan Muniyandi, Rajagopal Seenivasan, Ramaraj Ramasamy

机构信息

School of Chemistry, Madurai Kamaraj University, Madurai-625 021, India.

出版信息

J Org Chem. 2002 Mar 8;67(5):1506-14. doi: 10.1021/jo010878o.

Abstract

The oxidation of a series of para-substituted phenyl methyl sulfides was carried out with several oxo(salen)iron (salen = N,N'-bis(salicylidine)ethylenediaminato) complexes in acetonitrile. The oxo complex O=Fe(IV)(salen), generated from an iron(III) [bond] salen complex and iodosylbenzene, effectively oxidizes the organic sulfides to the corresponding sulfoxides. The formation of O [double bond] Fe(IV)(salen) as the active oxidant is supported by resonance Raman studies. The kinetic data indicate that the reaction is first-order in the oxidant and fractional-order with respect to sulfide. The observed saturation kinetics of the reaction and spectral data indicate that the substrate binds to the oxidant before the rate-controlling step. The rate constant (k) values for the product formation step determined using Michaelis-Menten kinetics correlate well with Hammett sigma constants, giving reaction constant (rho) values in the range of -0.65 to -1.54 for different oxo(salen)iron complexes. The log k values observed in the oxidation of each aryl methyl sulfide by substituted oxo(salen)iron complexes also correlate with Hammett sigma constants, giving positive rho values. The substituent effect, UV-vis absorption, and EPR spectral studies indicate oxygen atom transfer from the oxidant to the substrate in the rate-determining step.

摘要

在乙腈中,用几种氧代(salen)铁(salen = N,N'-双(水杨醛)乙二胺)配合物对一系列对取代苯甲基硫醚进行氧化反应。由铁(III)-salen配合物和碘苯生成的氧代配合物O=Fe(IV)(salen)能有效地将有机硫醚氧化为相应的亚砜。共振拉曼研究支持了O=Fe(IV)(salen)作为活性氧化剂的形成。动力学数据表明,该反应对氧化剂为一级反应,对硫醚为分数级反应。观察到的反应饱和动力学和光谱数据表明,底物在速率控制步骤之前与氧化剂结合。使用米氏动力学测定的产物形成步骤的速率常数(k)值与哈米特σ常数有很好的相关性,不同的氧代(salen)铁配合物的反应常数(ρ)值在-0.65至-1.54范围内。在取代的氧代(salen)铁配合物氧化每种芳基甲基硫醚时观察到的log k值也与哈米特σ常数相关,给出正的ρ值。取代基效应、紫外可见吸收和电子顺磁共振光谱研究表明,在速率决定步骤中氧原子从氧化剂转移到底物。

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