Kleespies Scott T, Oloo Williamson N, Mukherjee Anusree, Que Lawrence
Department of Chemistry and Center for Metals in Biocatalysis, University of Minnesota, Minneapolis, Minnesota 55455, United States.
Inorg Chem. 2015 Jun 1;54(11):5053-64. doi: 10.1021/ic502786y. Epub 2015 Mar 9.
The development of efficient and selective hydrocarbon oxidation processes with low environmental impact remains a major challenge of the 21st century because of the strong and apolar nature of the C-H bond. Naturally occurring iron-containing metalloenzymes can, however, selectively functionalize strong C-H bonds on substrates under mild and environmentally benign conditions. The key oxidant in a number of these transformations is postulated to possess an S = 2 Fe(IV)═O unit in a nonheme ligand environment. This oxidant has been trapped and spectroscopically characterized and its reactivity toward C-H bonds demonstrated for several nonheme iron enzyme classes. In order to obtain insight into the structure-activity relationships of these reactive intermediates, over 60 synthetic nonheme Fe(IV)(O) complexes have been prepared in various laboratories and their reactivities investigated. This Forum Article summarizes the current status of efforts in the characterization of the C-H bond cleavage reactivity of synthetic Fe(IV)(O) complexes and provides a snapshot of the current understanding of factors that control this reactivity, such as the properties of the supporting ligands and the spin state of the iron center. In addition, new results on the oxidation of strong C-H bonds such as those of cyclohexane and n-butane by a putative S = 2 synthetic Fe(IV)(O) species that is generated in situ using dioxygen at ambient conditions are presented.
由于碳氢键的强极性和非极性性质,开发高效、选择性且对环境影响小的烃类氧化过程仍然是21世纪的一项重大挑战。然而,天然存在的含铁金属酶能够在温和且环境友好的条件下,选择性地使底物上的强碳氢键官能化。在许多此类转化反应中,关键氧化剂被假定在非血红素配体环境中具有一个S = 2的Fe(IV)═O单元。这种氧化剂已被捕获并通过光谱进行了表征,并且其对碳氢键的反应活性已在几种非血红素铁酶类别中得到证实。为了深入了解这些反应中间体的构效关系,各个实验室已制备了60多种合成非血红素Fe(IV)(O)配合物,并对其反应活性进行了研究。这篇论坛文章总结了目前在表征合成Fe(IV)(O)配合物的碳氢键裂解反应活性方面所做努力的现状,并提供了当前对控制该反应活性的因素(如配体性质和铁中心自旋态)的理解概况。此外,还展示了关于在环境条件下使用氧气原位生成的假定S = 2合成Fe(IV)(O)物种对环己烷和正丁烷等强碳氢键进行氧化的新结果。