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Catalyst-controlled aliphatic C—H oxidations

机译:催化剂控制的脂肪族CH的氧化

摘要

The invention provides simple small molecule, non-heme iron catalyst systems with broad substrate scope that can predictably enhance or overturn a substrate's inherent reactivity preference for sp3-hybridized C—H bond oxidation. The invention also provides methods for selective aliphatic C—H bond oxidation. Furthermore, a structure-based catalyst reactivity model is disclosed that quantitatively correlates the innate physical properties of the substrate to the site-selectivities observed as a function of the catalyst. The catalyst systems can be used in combination with oxidants such as hydrogen peroxide to effect highly selective oxidations of unactivated sp3 C—H bonds over a broad range of substrates.
机译:本发明提供了具有宽范围的底物范围的简单的小分子,非血红素铁催化剂体系,其可以可预测地增强或推翻底物固有的对sp3-杂化的CH键氧化的固有反应性。本发明还提供了用于选择性脂族CH键氧化的方法。此外,公开了基于结构的催化剂反应性模型,其将底物的固有物理性质与根据催化剂观察到的位点选择性定量相关。催化剂体系可与氧化剂(如过氧化氢)结合使用,以在广泛的基材上实现未活化的sp3 CH键的高度选择性氧化。

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