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连续流化学合成系统的组装和使用。

The assembly and use of continuous flow systems for chemical synthesis.

机构信息

Department of Chemistry, Massachusetts Institute of Technology, Cambridge, Massachusetts, USA.

出版信息

Nat Protoc. 2017 Nov;12(11):2423-2446. doi: 10.1038/nprot.2017.102. Epub 2017 Oct 26.

Abstract

The adoption of and opportunities in continuous flow synthesis ('flow chemistry') have increased significantly over the past several years. Continuous flow systems provide improved reaction safety and accelerated reaction kinetics, and have synthesised several active pharmaceutical ingredients in automated reconfigurable systems. Although continuous flow platforms are commercially available, systems constructed 'in-lab' provide researchers with a flexible, versatile, and cost-effective alternative. Herein, we describe the assembly and use of a modular continuous flow apparatus from readily available and affordable parts in as little as 30 min. Once assembled, the synthesis of a sulfonamide by reacting 4-chlorobenzenesulfonyl chloride with dibenzylamine in a single reactor coil with an in-line quench is presented. This example reaction offers the opportunity to learn several important skills including reactor construction, charging of a back-pressure regulator, assembly of stainless-steel syringes, assembly of a continuous flow system with multiple junctions, and yield determination. From our extensive experience of single-step and multistep continuous flow synthesis, we also describe solutions to commonly encountered technical problems such as precipitation of solids ('clogging') and reactor failure. Following this protocol, a nonspecialist can assemble a continuous flow system from reactor coils, syringes, pumps, in-line liquid-liquid separators, drying columns, back-pressure regulators, static mixers, and packed-bed reactors.

摘要

连续流合成(“流化学”)在过去几年中的应用和机会显著增加。连续流系统提供了改进的反应安全性和加速的反应动力学,并在自动化可重构系统中合成了几种活性药物成分。虽然连续流平台已经商业化,但实验室构建的系统为研究人员提供了一种灵活、多功能且具有成本效益的替代方案。在这里,我们描述了一种模块化连续流仪器的组装和使用,该仪器仅用 30 分钟即可使用现成的、价格合理的部件组装而成。组装完成后,以单反应盘管和在线淬灭的方式展示了由 4-氯苯磺酰氯与二苄胺反应合成磺胺的过程。这个示例反应提供了学习几个重要技能的机会,包括反应器构建、背压调节阀的装料、不锈钢注射器的组装、带有多个接头的连续流系统的组装以及产率的确定。根据我们在单步和多步连续流合成方面的丰富经验,我们还描述了一些常见技术问题的解决方案,例如固体沉淀(“堵塞”)和反应器故障。按照本方案,非专业人员可以从反应器线圈、注射器、泵、在线液-液分离器、干燥柱、背压调节阀、静态混合器和填充床反应器组装连续流系统。

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