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首页> 外文期刊>Macromolecular chemistry and physics >Hyperbranched poly(arylene ether amide) via nucleophilic aromatic substitution reaction
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Hyperbranched poly(arylene ether amide) via nucleophilic aromatic substitution reaction

机译:通过亲核芳香取代反应的超支化聚(亚芳基醚酰胺)

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摘要

New hyperbranched poly(arylene ether amides) with fluorine or hydroxy end groups were synthesized from AB(2) or A(2)B type monomers via a nucleophilic aromatic substitution (SNAr) reaction. Monomer syntheses were facilitated by chemo-selective amidation reactions, and even a direct synthesis of hyperbranched polymer was possible without isolation of the monomer. The resulting hyperbranched poly(arylene ether amides) showed highly branched characteristics (DB=0.43-0.53), high glass transition temperatures (T-g > 220 degrees C), and high thermal stability (Td(10) > 420 degrees C). All hyperbranched polymers were readily soluble in aprotic polar solvents such as DMF, DMSO, and NMP regardless of the end groups. Such a similar solubility pattern may result from the high amide contents and longer branching distances between adjacent branching points in these hyperbranched polymer backbones.
机译:新型的具有氟或羟基端基的超支化聚(亚芳基醚酰胺)是由AB(2)或A(2)B型单体通过亲核芳香族取代(SNAr)反应合成的。化学选择性酰胺化反应促进了单体的合成,甚至无需分离单体也可以直接合成超支化聚合物。所得的超支化聚(亚芳基醚酰胺)显示出高度支化的特性(DB = 0.43-0.53),高玻璃化转变温度(T-g> 220摄氏度)和高热稳定性(Td(10)> 420摄氏度)。无论端基如何,所有超支化聚合物都易于溶于非质子极性溶剂(如DMF,DMSO和NMP)中。这种相似的溶解度模式可能是由于酰胺含量高以及这些超支化聚合物主链中相邻分支点之间的分支距离更长。

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