烯丙基重排
催化作用
分子氧
化学
复分解
组合化学
产量(工程)
有机化学
纳米技术
材料科学
聚合
冶金
聚合物
作者
Emil Roduner,Wolfgang Kaim,Biprajit Sarkar,Vlada B. Urlacher,Jürgen Pleiss,Roger Gläser,Wolf‐Dietrich Einicke,Georg A. Sprenger,Uwe Beifuß,Elias Klemm,Christian Liebner,H. Hieronymus,Shih‐Fan Hsu,Bernd Plietker,Sabine Laschat
出处
期刊:Chemcatchem
[Wiley]
日期:2012-10-12
卷期号:5 (1): 82-112
被引量:253
标识
DOI:10.1002/cctc.201200266
摘要
Abstract Although catalytic reductions, cross‐couplings, metathesis, and oxidation of CC double bonds are well established, the corresponding catalytic hydroxylations of CH bonds in alkanes, arenes, or benzylic (allylic) positions, particularly with O 2 , the cheapest, “greenest”, and most abundant oxidant, are severely lacking. Certainly, some promising examples in homogenous and heterogenous catalysis exist, as well as enzymes that can perform catalytic aerobic oxidations on various substrates, but these have never achieved an industrial‐scale, owing to a low space‐time‐yield and poor stability. This review illustrates recent advances in aerobic oxidation catalysis by discussing selected examples, and aims to stimulate further exciting work in this area. Theoretical work on catalyst precursors, resting states, and elementary steps, as well as model reactions complemented by spectroscopic studies provide detailed insight into the molecular mechanisms of oxidation catalyses and pave the way for preparative applications. However, O 2 also poses a safety hazard, especially when used for large scale reactions, therefore sophisticated methodologies have been developed to minimize these risks and to allow convenient transfer onto industrial scale.
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