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Intensified synthesis and post-synthetic modification of covalent organic frameworks using a continuous flow of microdroplets technique

机译:使用连续的微滴技术强化共价有机骨架的合成和合成后修饰

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Confining organic building blocks inside a moving system of microdroplets enables high-speed production of catalytic crystals. Covalent organic frameworks are promising for applications such as carbon capture, but it is challenging to rapidly synthesize high-quality, tailored structures. Dong-Pyo Kim from POSTECH, South Korea, and co-workers report that microfluidic devices can produce covalent organic frameworks at a rate of 40 milligrams per hour. This approach injects an aqueous reagent and a carrier oil separately into a capillary and they meet at a T-junction, creating tiny droplets that pass through mixing and heating stages. Energy released by microdroplet flow facilitated β-ketoenamine generation by locking its organic framework in place. The microfluidic setup easily handled post-synthetic modification; the team added palladium to the framework and modified its functional groups to create a catalyst for synthetic coupling reactions.
机译:将有机构件限制在一个微滴的移动系统中,可以高速生产催化晶体。共价有机框架对于碳捕获等应用前景广阔,但快速合成高质量的定制结构具有挑战性。来自韩国POSTECH的Dong-Pyo Kim及其同事报告说,微流体设备可以每小时40毫克的速率生产共价有机骨架。这种方法将水性试剂和载油分别注入毛细管中,它们在T型接头处会合,形成微小的液滴,这些液滴通过混合和加热阶段。微滴流动释放的能量通过将有机骨架锁定在适当的位置,促进了β-酮胺的生成。微流体设置易于处理后合成修饰;该团队将钯添加到骨架中,并修饰了其官能团,以创建用于合成偶联反应的催化剂。

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