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Development of Microstructured Reactors to Enable Organic Synthesis Rather than Subduing Chemistry

机译:开发微结构反应器以实现有机合成而不是化学合成

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摘要

Micro-reaction technology is entering more and more into chemical process engineering and chemistry, complementing existing technologies. The benefits of microstructured reactors such as enhanced mass and heat transfer, defined residence time setting, and known, highly regular flow profiles give process intensification following standard chemical protocols. These unique features, however, can achieve more, namely to enable process chemistry with novel features. This includes handling of instable intermediates, safe processing in the explosive regime, setting reaction temperature at unusually high level, and more. In this way, the engineering benefits change the chemistry; thus, it has been termed novel chemistry here. While this has been done in a heuristic manner in the past, first deductive approaches were recently developed based on diffusion-reaction calculations and potential energy profiles which provide a mechanistic understanding what the new tool can do. In this context, many examples for organic reactions in microstructured reactors are described to underline the possible means of novel chemistry by using microstructured reactors.
机译:微反应技术正越来越多地进入化学过程工程和化学领域,以补充现有技术。微结构化反应器的优势,例如增强的质量和传热,确定的停留时间设置以及已知的高度规则的流量曲线,可按照标准化学方案进行工艺强化。但是,这些独特的功能可以实现更多目标,即使化学过程具有新颖的功能。这包括处理不稳定的中间体,在爆炸条件下安全处理,将反应温度设置在异常高的水平等等。这样,工程收益改变了化学性质;因此,这里被称为新型化学。尽管过去以启发式的方式完成了这一工作,但最近基于扩散反应计算和势能曲线开发了第一种演绎方法,从而提供了一种机械理解新工具可以做什么的方法。在本文中,描述了许多在微结构反应器中进行有机反应的例子,以强调通过使用微结构反应器进行新化学反应的可能手段。

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