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首页> 外文期刊>Macromolecular rapid communications: Publishing the newsletters of the European Polymer Federation >Synthesis of branched polymers under continuous-flow microprocess: An improvement of the control of macromolecular architectures
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Synthesis of branched polymers under continuous-flow microprocess: An improvement of the control of macromolecular architectures

机译:连续流微工艺下支链聚合物的合成:高分子结构控制的改进

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Polymerization reactions can benefit from continuous-flow microprocess in terms of kinetics control, reactants mixing or simply efficiency when high-throughput screening experiments are carried out. In this work, we perform for the first time the synthesis of branched macromolecular architecture through a controlled/'living' polymerization technique, in tubular microreactor. Just by tuning process parameters, such as flow rates of the reactants, we manage to generate a library of polymers with various macromolecular characteristics. Compared to conventional batch process, polymerization kinetics shows a faster initiation step and more interestingly an improved branching efficiency. Due to reduced diffusion pathway, a characteristic of microsystems, it is thus possible to reach branched polymers exhibiting a denser architecture, and potentially a higher functionality for later applications.
机译:当进行高通量筛选实验时,就动力学控制,反应物混合或简单地效率而言,聚合反应可受益于连续流微工艺。在这项工作中,我们首次在管状微反应器中通过受控/“活”聚合技术进行了支链大分子结构的合成。仅通过调整工艺参数(例如反应物的流速),我们就可以生成具有各种大分子特性的聚合物库。与常规间歇方法相比,聚合动力学显示出更快的引发步骤,更有趣的是,其支化效率得到了提高。由于减少的扩散途径,是微系统的特征,因此有可能达到具有更致密结构和更高功能性的支化聚合物,以用于以后的应用。

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