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3D-printed PEEK reactors and development of a complete continuous flow system for chemical synthesis

机译:3D印刷PEEK反应堆和开发完整的连续流动系统,用于化学合成

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摘要

The possibility of 3D printing high temperature and chemically resistant polymers creates opportunities for applications in flow chemistry. Herein we describe the development of milli- and microfluidic reactors made of polyether ether ketone (PEEK) with a high temperature 3D printer and examine their mixing performance and suitability for flow reactions at elevated temperatures. Additionally, we present a 3D- printed separator, back pressure regulator and continuous syringe pump, which provide a complete flow system for a fraction of the cost of commercially available flow equipment. Different 3D printed mixing geometries were tested and the influence of mixing on fluorination of a ribose derivative was evaluated. To demonstrate the usability of our self-made flow equipment we performed a multistep reaction of a ribose derivative in excellent yield which could be used as a precursor for the synthesis of nucleoside anti-cancer drugs.
机译:3D印刷高温和化学抗性聚合物的可能性为流动化学应用创造了机会。 在此,我们描述了用高温3D打印机由聚醚醚酮(PEEK)制成的毫米和微流体反应器的发展,并检查它们在升高温度下的流动反应的混合性能和适合性。 此外,我们提供了一种3D印刷的隔板,背压调节器和连续注射器泵,其提供完整的流量系统,用于商业上可获得的流量设备的成本。 测试了不同的3D印刷混合几何形状,评价混合对核糖衍生物的氟化的影响。 为了证明我们的自制流动设备的可用性,我们以优异的产量进行了核糖衍生物的多步骤反应,其可以用作合成核苷抗癌药物的前体。

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