3D-printed devices for continuous-flow organic chemistry.

3D-printed devices for continuous-flow organic chemistry.
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DOI:
10.3762/bjoc.9.109
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发表时间:
2013
影响因子:
2.7
通讯作者:
Cronin L
Cronin L
中科院分区:
化学4区
文献类型:
--
作者:
Dragone V;Sans V;Rosnes MH;Kitson PJ;Cronin L

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我们提出了一项研究,其中3d打印的多功能性与流动化学合成有机化合物的加工优势相结合。坚固且廉价的3d打印反应装置可以使用标准配件轻松连接,从而形成复杂的定制流动系统,包括多个串联反应器,使用ATR-IR流动池进行在线实时分析。作为概念的证明,我们使用了两种类型的有机反应,亚胺合成和亚胺还原,以显示不同的反应器配置和底物如何产生不同的产物。
We present a study in which the versatility of 3D-printing is combined with the processing advantages of flow chemistry for the synthesis of organic compounds. Robust and inexpensive 3D-printed reactionware devices are easily connected using standard fittings resulting in complex, custom-made flow systems, including multiple reactors in a series with in-line, real-time analysis using an ATR-IR flow cell. As a proof of concept, we utilized two types of organic reactions, imine syntheses and imine reductions, to show how different reactor configurations and substrates give different products.
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