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Arm-First Synthesis of Star Polymers with Polywedge Arms Using Ring-Opening Metathesis Polymerization and Bifunctional Crosslinkers

机译:开环易位聚合和双功能交联剂的多臂臂星形聚合物的手臂优先合成。

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摘要

This work presents a two-step, one-pot process to make star polymers with polywedge arms. In a one-pot reaction, after the polywedge arms are synthesized, crosslinker species are added to the reaction, rapidly forming star polymers. Crosslinker species with different degrees of conformational freedom were designed and synthesized and their capacity to generate star polymers was evaluated. Mass conversions up to 92% and stars with up to 17 arms were synthesized with the most rigid crosslinker. The effects of arm molecular weight and molar ratio of crosslinker to arm on mass conversion and arms per star were explored further. Finally, the size-molecular weight scaling relationship for polywedges with linear and star architectures was compared, corroborating theoretical results regarding star polymers with arms much larger than their core.
机译:这项工作提出了一个两步一锅法,用多楔臂制备星形聚合物。在一锅法反应中,在合成了多楔臂之后,将交联剂物种添加到反应中,迅速形成星形聚合物。设计并合成了具有不同构象自由度的交联剂,并评估了其生成星形聚合物的能力。使用最刚性的交联剂合成了高达92%的质量转化率和多达17个臂的恒星。进一步探讨了臂的分子量和交联剂与臂的摩尔比对质量转化率和每颗星臂的影响。最后,比较了具有线性和星形结构的楔形物的尺寸-分子量缩放关系,从而证实了有关臂远大于其核的星形聚合物的理论结果。

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