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Catalytic Aerobic Oxidation of C(sp(3))-H Bonds

机译:C(SP(3)) - H键的催化有氧氧化

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摘要

Oxidation reactions are a key technology to transform hydrocarbons from petroleum feedstock into chemicals of a higher oxidation state, allowing further chemical transformations. These bulk-scale oxidation processes usually employ molecular oxygen as the terminal oxidant as at this scale it is typically the only economically viable oxidant. The produced commodity chemicals possess limited functionality and usually show a high degree of symmetry thereby avoiding selectivity issues. In sharp contrast, in the production of fine chemicals preference is still given to classical oxidants. Considering the strive for greener production processes, the use of O-2, the most abundant and greenest oxidant, is a logical choice. Given the rich functionality and complexity of fine chemicals, achieving regio/chemoselectivity is a major challenge. This review presents an overview of the most important catalytic systems recently described for aerobic oxidation, and the current insight in their reaction mechanism.
机译:氧化反应是将来自石油原料的烃转化为更高氧化态的化学品的关键技术,允许进一步的化学转化。这些散装氧化方法通常使用分子氧作为末端氧化剂,如在这种规模中,通常是唯一的经济上活氧化剂。所生产的商品化学品具有有限的功能,并且通常显示出高度对称性,从而避免了选择性问题。在鲜明的对比中,在精细化学品的生产中,仍然给予典型氧化剂。考虑到更环保的生产过程,使用O-2,最丰富和最绿的氧化剂是逻辑选择。鉴于精细化学品的丰富功能和复杂性,实现Regio / Chemoselectivity是一个主要挑战。本综述概述了最近描述了用于有氧氧化的最重要的催化系统,以及其反应机制的当前洞察力。

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