首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >In-chain multi-functionalized polystyrene by living anionic copolymerization with 1,1-bis(4-dimethylaminophenyl)ethylene: Synthesis and effect on the dispersity of carbon black in polymer-based composites
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In-chain multi-functionalized polystyrene by living anionic copolymerization with 1,1-bis(4-dimethylaminophenyl)ethylene: Synthesis and effect on the dispersity of carbon black in polymer-based composites

机译:通过与1,1-双(4-二甲基氨基苯基)乙烯的阴离子共聚进行链内多官能化聚苯乙烯:合成及其对炭黑在聚合物基复合材料中的分散性的影响

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摘要

In-chain multi-functionalized polystyrene possessing definite geminal dimethylamino groups along the polymer backbone, poly(styrene-co-1,1-bis(4- dimethylaminophenyl)ethylene) (poly(styrene-co-BDADPE)), has been designed and synthesized via living anionic copolymerization of styrene with 1,1-bis(4-dimethylanimophenyl)ethylene in benzene at 50 C, using sec-butyllithium as initiator. The amine functionality was readily controlled by the monomer feed ratio and molecular weight. Compositions of styrene/BDADPE were 9.0-57.9 when ratios of styrene/BDADPE = 0.45-7.79 and Mn = 4.7-15.5 kg/mol. The incorporation of 1,1-bis(4-dimethylanimophenyl)ethylene unit resulted in an increase in glass transition temperature of copolymer and was hindered in the presence of Lewis base. The monomer reactivity ratio for styrene, r1 = 53.4, was obtained. Such in-chain multi-functionalized polystyrene significantly improved the dispersity of carbon black in the corresponding composites, as verified by SEM observation. This in-chain multi-functionalization of matrix polymer via anionic copolymerization employing 1,1-bis(4-dimethylaminophenyl)ethylene as comonomer provides a facile and effective method to prepare carbon black-based polymer composites with good dispersity.
机译:设计了沿聚合物主链具有确定的双甲基二甲基氨基基团的链内多官能化聚苯乙烯,聚(苯乙烯-co-1,1-双(4-二甲基氨基苯基)乙烯)(聚(苯乙烯-co-BDADPE)),使用仲丁基锂作为引发剂,通过在50℃下苯乙烯与1,1-双(4-二甲基苯胺基苯基)乙烯的阴离子进行阴离子共聚反应合成。胺官能度易于通过单体进料比和分子量来控制。当苯乙烯/ BDADPE的比率= 0.45-7.79且Mn = 4.7-15.5kg / mol时,苯乙烯/ BDADPE的组成为9.0-57.9。 1,1-双(4-二甲基苯胺基苯基)乙烯单元的引入导致共聚物的玻璃化转变温度升高,并且在路易斯碱的存在下受到阻碍。得到的苯乙烯单体反应率r1 = 53.4。通过SEM观察证实,这种链内多官能化聚苯乙烯显着改善了炭黑在相应复合物中的分散性。通过使用1,1-双(4-二甲基氨基苯基)乙烯作为共聚单体的阴离子共聚,基体聚合物的链内多官能化为制备具有良好分散性的炭黑基聚合物复合材料提供了一种简便而有效的方法。

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