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The Use of Molecular Oxygen for Liquid Phase Aerobic Oxidations in Continuous Flow

机译:分子氧在连续流液相好氧氧化中的应用

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摘要

Molecular oxygen (O2) is the ultimate “green” oxidant for organic synthesis. There has been recent intensive research within the synthetic community to develop new selective liquid phase aerobic oxidation methodologies as a response to the necessity to reduce the environmental impact of chemical synthesis and manufacture. Green and sustainable chemical processes rely not only on effective chemistry but also on the implementation of reactor technologies that enhance reaction performance and overall safety. Continuous flow reactors have facilitated safer and more efficient utilization of O2, whilst enabling protocols to be scalable. In this article, we discuss recent advancements in the utilization of continuous processing for aerobic oxidations. The translation of aerobic oxidation from batch protocols to continuous flow processes, including process intensification (high T/p), is examined. The use of “synthetic air”, typically consisting of less than 10% O2 in N2, is compared to pure O2 (100% O2) as an oxidant source in terms of process efficiency and safety. Examples of homogeneous catalysis and heterogeneous (packed bed) catalysis are provided. The application of flow photoreactors for the in situ formation of singlet oxygen (1O2) for use in organic reactions, as well as the implementation of membrane technologies, green solvents and recent reactor solutions for handling O2 are covered.
机译:分子氧(O2)是有机合成的最终“绿色”氧化剂。为了减少化学合成和制造对环境的影响,在合成界内最近进行了深入研究,以开发新的选择性液相好氧氧化方法。绿色和可持续的化学过程不仅依赖于有效的化学方法,而且还依赖于提高反应性能和整体安全性的反应器技术的实施。连续流反应器有助于更安全,更有效地利用O2,同时使协议可扩展。在本文中,我们讨论了有氧氧化的连续处理利用中的最新进展。检查了好氧氧化从批处理方案到连续流程的转化,包括流程强化(高T / p)。就工艺效率和安全性而言,使用通常由N2中的O2组成少于10%的“合成空气”与纯O2(100%O2)作为氧化剂进行比较。提供了均相催化和非均相(填充床)催化的实例。涵盖了流动光反应器在有机反应中原位形成单线态氧( 1 O2)的应用,以及膜技术,绿色溶剂和用于处理O2的最新反应器解决方案的实施。

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