Chen Mark S, White M Christina
Department of Chemistry, Roger Adams Laboratory, University of Illinois, Urbana, IL 61801, USA.
Science. 2007 Nov 2;318(5851):783-7. doi: 10.1126/science.1148597.
Realizing the extraordinary potential of unactivated sp3 C-H bond oxidation in organic synthesis requires the discovery of catalysts that are both highly reactive and predictably selective. We report an iron (Fe)-based small molecule catalyst that uses hydrogen peroxide (H2O2) to oxidize a broad range of substrates. Predictable selectivity is achieved solely on the basis of the electronic and steric properties of the C-H bonds, without the need for directing groups. Additionally, carboxylate directing groups may be used to furnish five-membered ring lactone products. We demonstrate that these three modes of selectivity enable the predictable oxidation of complex natural products and their derivatives at specific C-H bonds with preparatively useful yields. This type of general and predictable reactivity stands to enable aliphatic C-H oxidation as a method for streamlining complex molecule synthesis.
要在有机合成中实现未活化的sp3 C-H键氧化的非凡潜力,需要发现兼具高反应活性和可预测选择性的催化剂。我们报道了一种基于铁(Fe)的小分子催化剂,它利用过氧化氢(H2O2)氧化多种底物。仅基于C-H键的电子和空间性质就能实现可预测的选择性,无需导向基团。此外,羧酸根导向基团可用于制备五元环内酯产物。我们证明,这三种选择性模式能够以具有制备价值的产率,对复杂天然产物及其衍生物的特定C-H键进行可预测的氧化。这种通用且可预测的反应性有望使脂肪族C-H氧化成为简化复杂分子合成的一种方法。