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Controlled multistep synthesis in a three-phase droplet reactor

机译:三相液滴反应器中的受控多步合成

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摘要

Channel-fouling is a pervasive problem in continuous flow chemistry, causing poor product control and reactor failure. Droplet chemistry, in which the reaction mixture flows as discrete droplets inside an immiscible carrier liquid, prevents fouling by isolating the reaction from the channel walls. Unfortunately, the difficulty of controllably adding new reagents to an existing droplet stream has largely restricted droplet chemistry to simple reactions in which all reagents are supplied at the time of droplet formation. Here we describe an effective method for repeatedly adding controlled quantities of reagents to droplets. The reagents are injected into a multiphase fluid stream, comprising the carrier liquid, droplets of the reaction mixture and an inert gas that maintains a uniform droplet spacing and suppresses new droplet formation. The method, which is suited to many multistep reactions, is applied to a five-stage quantum dot synthesis wherein particle growth is sustained by repeatedly adding fresh feedstock.
机译:通道结垢是连续流化学过程中普遍存在的问题,导致不良的产品控制和反应器故障。液滴的化学作用(其中反应混合物以离散的液滴形式在不溶混的载液内部流动)通过将反应与通道壁隔离来防止结垢。不幸的是,可控地将新试剂添加到现有液滴流中的困难极大地将液滴化学限制在简单的反应中,在该简单的反应中,在液滴形成时提供所有试剂。在这里,我们描述了一种有效的方法,用于将受控量的试剂重复添加到液滴中。将试剂注入多相流体流中,该多相流体流包含载液,反应混合物的液滴和惰性气体,该惰性气体保持均匀的液滴间距并抑制新的液滴形成。该方法适用于许多多步反应,适用于五阶段量子点合成,其中通过反复添加新鲜原料来维持颗粒生长。

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