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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Synthesis and characterization of soluble, photoluminescent polyamides, polyesters and polyethers containing 9,10-di(4-biphenylyl)anthracene segments in the main chain
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Synthesis and characterization of soluble, photoluminescent polyamides, polyesters and polyethers containing 9,10-di(4-biphenylyl)anthracene segments in the main chain

机译:主链上含9,10-二(4-联苯基)蒽链段的可溶性光致发光聚酰胺,聚酯和聚醚的合成与表征

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New rigid polyamides and polyesters as well as semiflexible polyethers containing substituted 9,10-di(4-biphenylyl)athracene segments in the main chain were synthesized through pyrylium salts. They were characterized by viscosimetry, FT-IR, NMR, X-ray, differential scanning calorimetry, the thermomechanical analysis, UV-vis and luminescence spectroscopy. All polymers were practically amorphous and showed an enhanced solubility. Polyamides, that displayed a very high hydrophilicity, dissolved in polar aprotic solvents, strong acids and pyridine. Polyesters and polyethers were soluble in all tested solvents and even in chloroform and THF. Polyamides had higher T(g)s (165-220 degrees C) than polyesters (100-106 degrees C) and polyethers (98-105 degrees C). The polymers with biphenylyl pendent groups showed lower T(g)s and higher thermal stability than their counterparts with phenyl pendent groups. All polymers displayed violet to blue photoluminescence in solution and in solid state with maxima at 366-422 and 435-463 nm, respectively. The polymers carrying biphenylyl pendent groups exhibited in solution more broad emission spectra and higher quantum yields than the corresponding polymers with phenyl pendent groups. (C) 2000 Elsevier Science Ltd. All rights reserved. [References: 42]
机译:通过吡喃鎓盐合成了新的刚性聚酰胺和聚酯,以及在主链上包含取代的9,10-二(4-联苯基)蒽链段的半柔性聚醚。通过粘度测定,FT-IR,NMR,X射线,差示扫描量热法,热机械分析,紫外可见光谱和发光光谱对它们进行了表征。所有聚合物实际上都是无定形的,并显示出增加的溶解度。聚酰胺具有极高的亲水性,可溶于极性非质子溶剂,强酸和吡啶中。聚酯和聚醚可溶于所有测试的溶剂,甚至可溶于氯仿和THF。聚酰胺的T(g)(165-220摄氏度)比聚酯(100-106摄氏度)和聚醚(98-105摄氏度)高。具有联苯基悬垂基团的聚合物比具有苯基悬垂基团的聚合物显示出更低的T(g)和更高的热稳定性。所有聚合物在溶液和固态下均显示紫色至蓝色光致发光,最大值分别在366-422和435-463 nm处。与相应的具有苯基侧基的聚合物相比,带有联苯基侧基的聚合物在溶液中表现出更宽的发射光谱和更高的量子产率。 (C)2000 Elsevier ScienceLtd。保留所有权利。 [参考:42]

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