Nehru Kasi, Seo Mi Sook, Kim Jinheung, Nam Wonwoo
Department of Chemistry, Division of Nano Sciences, and Center for Biomimetic Systems, Ewha Womans University, Seoul 120-750, Korea.
Inorg Chem. 2007 Jan 8;46(1):293-8. doi: 10.1021/ic0614014.
Nonheme and heme iron monooxygenases participate in oxidative N-dealkylation reactions in nature, and high-valent oxoiron(IV) species have been invoked as active oxidants that effect the oxygenation of organic substrates. The present study describes the first example of the oxidative N-dealkylation of N,N-dialkylamines by synthetic nonheme oxoiron(IV) complexes and the reactivity comparisons of nonheme and heme oxoiron(IV) complexes. Detailed mechanistic studies were performed with various N,N-dialkylaniline substrates such as para-substituted N,N-dimethylanilines, para-chloro-N-ethyl-N-methylaniline, para-chloro-N-cyclopropyl-N-isopropylaniline, and deuteriated N,N-dimethylanilines. The results of a linear free-energy correlation, inter- and intramolecular kinetic isotope effects, and product analysis studied with the mechanistic probes demonstrate that the oxidative N-dealkylation reactions by nonheme and heme oxoiron(IV) complexes occur via an electron transfer-proton transfer (ET-PT) mechanism.
非血红素和血红素铁单加氧酶在自然界中参与氧化N-脱烷基化反应,高价氧代铁(IV)物种被认为是影响有机底物氧化的活性氧化剂。本研究描述了合成的非血红素氧代铁(IV)配合物对N,N-二烷基胺进行氧化N-脱烷基化的首个实例,以及非血红素和血红素氧代铁(IV)配合物的反应活性比较。使用各种N,N-二烷基苯胺底物进行了详细的机理研究,如对取代的N,N-二甲基苯胺、对氯-N-乙基-N-甲基苯胺、对氯-N-环丙基-N-异丙基苯胺和氘代N,N-二甲基苯胺。用机理探针进行的线性自由能相关性、分子间和分子内动力学同位素效应以及产物分析结果表明,非血红素和血红素氧代铁(IV)配合物的氧化N-脱烷基化反应通过电子转移-质子转移(ET-PT)机制发生。