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Multijet Oscillating Disc Millireactor: A Novel Approach for Continuous Flow Organic Synthesis

机译:Multijet振荡盘式微粉碎机:一种连续流有机合成的新方法

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This report discloses proof of concept and experimental results from a project involving design, development, and investigation of a novel approach for flow chemistry and the realization of equipment operating according to this new approach. This device is named multijet oscillating disk (MJOD) reactor and is dedicated to continuous flow organic synthesis in milliscale. Characteristics such as the importance of the multijet disk unit, with or without oscillating, and possible limitations, such as back-mixing, have been explored, and the flow system is benchmarked with other technologies. Several well-known reactions and syntheses usefully both in the chemical industry as well as in the research laboratory have been conducted using the new system, which have been benchmarked with batch- and microreactor protocols. In particular the Haloform reaction, the Nef reaction, nucleophilic aromatic substitution, the Paal-Knorr pyrrole synthesis, sodium borohydride reduction, O-allylation, the Suzuki cross-coupling reaction, the Hofmann rearrangement and N-acylation were performed during the study of the MJOD reactor performance. Our investigations revealed that the MJOD millireactor system can produce various organic compounds at a high rate concomitant with an excellent selectivity. A Hofmann rearrangement was conducted, a reaction that involves handling of a slurry of the substrate. This reaction was successfully conducted, achieving a quantitative conversion into, the target molecule.
机译:该报告公开了一个项目的概念和实验结果的证明,该项目涉及设计,开发和研究流化学的新方法以及根据该新方法操作设备的实现。该设备被称为多喷射振荡盘(MJOD)反应器,专门用于连续流有机合成。已经研究了诸如多喷射盘单元有无振荡的重要性之类的特性,以及诸如回混之类的可能限制,并且以其他技术为基准对流量系统进行了基准测试。已使用新系统进行了一些在化学工业和研究实验室中有用的众所周知的反应和合成,这些新反应已通过批处理和微反应器协议进行了基准测试。特别是在研究过程中进行了Haloform反应,Nef反应,亲核芳族取代,Paal-Knorr吡咯合成,硼氢化钠还原,O-烯丙基化,Suzuki交叉偶联反应,Hofmann重排和N-酰化MJOD反应堆性能。我们的研究表明,MJOD毫作用器系统可以高速率生产各种有机化合物,并具有出色的选择性。进行霍夫曼重排,该反应涉及处理衬底的浆料。该反应成功进行,实现了定量转化为目标分子。

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