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首页> 外文期刊>Macromolecules >Synthesis and Characterization of Branched Water-Soluble Homopolymers and Diblock Copolymers Using Group Transfer Polymerization
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Synthesis and Characterization of Branched Water-Soluble Homopolymers and Diblock Copolymers Using Group Transfer Polymerization

机译:基团转移聚合法制备支链水溶性均聚物和二嵌段共聚物及其表征

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摘要

Group transfer polymerization [GTP] was used to synthesize branched statistical copolymers by copolymerizing either 2-(dimethylamino)ethyl methacrylate)[DMA] or 2-(diethylamino)ethyl meth-acrylate)[DEA] with ethylene glycol dimethacrylate(EGDMA)in THF at 20 deg C.Since GTP has reasonable "living" character,it allows good control over both the primary chain length and the molecular weight distribution compared to previous branched vinyl polymers synthesized using conventional radical polymerization.Using GTP allows a remarkably high proportion of EGDMA brancher to be copolymerized without causing macrogelation.This unexpected result is attributed to a significant amount of intramolecular cyclization occurring(in addition to intermolecular branching)in these syntheses.Branched diblock copolymers based on DMA and DEA were prepared by sequential monomer addition,with EGDMA being used to achieve branching in either the DMA block or the DEA block or in both blocks.The order of monomer addition was varied to examine whether branching affected the "living" character of the polymerization.There was some evidence for better blocking efficiencies if the first block was a linear homopolymer,rather than a branched block copolymer.'H NMR spectroscopy indicated that very high comonomer conversions(>99%)were obtained in all cases.The branched diblock copolymers were characterized in terms of their block compositions and primary chain lengths using ~1H NMR,and their molecular weight distributions were assessed by THF GPC using a light scattering detector to obtain absolute M_w values.The evolution of molecular weight with conversion was assessed by periodic sampling of the polymerizing solution.Dynamic light scattering(DLS)and surface tensiometry data obtained for dilute aqueous solutions of the branched block copolymers were compared to those obtained for a linear diblock copolymer.Similar surface tension profiles were obtained regardless of the block architecture,but DLS studies indicated that larger,more polydisperse micelles were obtained if the coronal block was branched.
机译:通过将甲基丙烯酸2-(二甲氨基)乙酯(DMA)或甲基丙烯酸2-(二乙氨基)乙酯)[DEA]与乙二醇二甲基丙烯酸酯(EGDMA)共聚,使用基团转移聚合[GTP]合成支链统计共聚物。在20摄氏度的条件下。由于GTP具有合理的“活性”特性,与使用常规自由基聚合合成的以前的支链乙烯基聚合物相比,它可以很好地控制主链长度和分子量分布。使用GTP可以显着提高EGDMA的比例这种意外的结果归因于这些合成过程中发生了大量的分子内环化反应(除了分子间支化)。通过顺序添加单体制备了基于DMA和DEA的支化二嵌段共聚物用于在DMA块或DEA块或两个块中实现分支。单体加成的顺序有人检查了支链是否影响聚合反应的“活性”特性。有一些证据表明,如果第一个嵌段是线性均聚物而不是支链嵌段共聚物,嵌段效率会更高。1 H NMR光谱表明非常高的共聚单体在所有情况下均获得转化率(> 99%)。使用〜1H NMR表征支链二嵌段共聚物的嵌段组成和主链长度,并使用光散射检测器通过THF GPC评估其分子量分布,从而获得通过定期取样聚合溶液来评估分子量随转化率的变化。将支化嵌段共聚物的稀水溶液的动态光散射(DLS)和表面张力数据与线性二嵌段的数据进行了比较无论嵌段结构如何,都可获得相似的表面张力曲线,但DLS研究表明表明如果冠状嵌段分支,则可获得更大,更多分散的胶束。

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