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首页> 外文期刊>Molecules >Direct Selective Oxidative Functionalization of C-H Bonds with H2O2: Mn-Aminopyridine Complexes Challenge the Dominance of Non-Heme Fe Catalysts
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Direct Selective Oxidative Functionalization of C-H Bonds with H2O2: Mn-Aminopyridine Complexes Challenge the Dominance of Non-Heme Fe Catalysts

机译:具有H2O2:Mn-氨基吡啶配合物的C-H键的直接选择性氧化官能化挑战了非血红素铁催化剂的主导地位

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摘要

Non-heme iron(II) complexes are widespread synthetic enzyme models, capable of conducting selective C-H oxidation with H2O2 in the presence of carboxylic acid additives. In the last years, structurally similar manganese(II) complexes have been shown to catalyze C-H oxidation with similarly high selectivity, and with much higher efficiency. In this mini-review, recent catalytic and mechanistic data on the selective C-H oxygenations with H2O2 in the presence of manganese complexes are overviewed. A distinctive feature of catalyst systems of the type Mn complex/H2O2/carboxylic is the existence of two alternative reaction pathways (as found for the oxidation of cumenes), one leading to the formation of alcohol, and the other to ester. The mechanisms of formation of the alcohol and the ester are briefly discussed.
机译:非血红素铁(II)配合物是广泛使用的合成酶模型,能够在羧酸添加剂存在下用H2O2进行选择性C-H氧化。近年来,结构相似的锰(II)络合物已显示出以相似的高选择性和更高的效率催化C-H氧化。在本小型综述中,概述了有关在锰配合物存在下用H2O2选择性进行C-H氧化的近期催化和机理数据。 Mn络合物/ H2O2 /羧酸类型的催化剂体系的一个显着特征是存在两种替代反应途径(如枯烯的氧化反应),一种导致醇的形成,另一种导致酯的形成。简要讨论了醇和酯的形成机理。

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