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Laboratory of the future: a modular flow platform with multiple integrated PAT tools for multistep reactions

机译:未来的实验室:一个模块化流量平台,具有多个集成的PAT工具,用于多体反应

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摘要

Currently, the monitoring of multistep continuous flow processes by multiple analytical sources is still seen as a resource intensive and specialized activity. In this article, the coupling of a modular microreactor platform with real-time monitoring by inline IR and NMR, in addition to online UPLC, is described. Using this platform, we rapidly generated experimental data (17 iterations in under 2 hours) to access information on the different chemical species at multiple points within the reactor and to generate process under- standing. We highlight the application of the platform in the optimization of a multistep organolithium transformation. The optimized continuous flow conditions were demonstrated in a scale-out experiment with in-process monitoring to afford the desired product in 70% isolated yield and provided a throughput of 4.2 g h-1 .
机译:目前,通过多个分析来源监测多步骤连续流程仍然被视为资源密集型和专业活动。 在本文中,描述了模块化微反应器平台与内联IR和NMR的实时监测的耦合,除了在线ULLC,还将。 使用该平台,我们快速生成了实验数据(2小时内的17次迭代),以在反应器内的多个点处获取不同化学物质的信息,并产生过程介绍。 我们突出了平台在优化多学期有机锂转化中的应用。 优化的连续流动条件在略微监测中,在略微监测中证明了以70%分离的产量提供所需产物,并提供4.2g H-1的产量。

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