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Synthesis and physical properties of highly branched perfluorinated polymers from AB and AB(2) monomers

机译:AB和AB(2)单体的高支化全氟化聚合物的合成和物理性质

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Highly branched perfluorinated aromatic polyether copolymers were prepared from the polycondensation of the AB(2) monomer, 3,5-bis[(pentafluorobenzyl)oxy]benzyl alcohol with a variety of fluoroaryl and alkyl bromide AB comonomers. The structures and comonomer distribution of the resulting polymers were characterized in detail. H-1 NMR data from kinetic trials illustrated that perfluoroaryl AB comonomer distribution correlated to AB comonomer sterics. F-19 NMR data revealed that fluorinated AB monomers and 3-bromo-1-propanol AB monomers were distributed within the AB(2) polymer backbone, while longer alkyl bromide AB monomers, 6-bromo-1-hexanol, were mostly distributed along hyperbranched polymer chain ends. In general, as AB comonomer incorporation increased for nonsterically hindered copolymers, thermal decomposition onset increased and glass transition temperatures decreased. The combined data demonstrated the effect of comonomer distribution and sterics on physical properties of AB(2)-based polymer systems. The resulting materials were used to cast thin polymer films for measurement of contact angle, which were shown to be directly related to comonomer content. (c) 2015 Wiley Periodicals, Inc. J. Polym. Sci., Part A: Polym. Chem. 2015, 53, 1880-1894
机译:高度支化的全氟化芳族聚醚共聚物是由AB(2)单体,3,5-双[(五氟苄基)氧基]苄醇与各种氟芳基和烷基溴化物AB共聚单体缩聚制备的。详细描述了所得聚合物的结构和共聚单体分布。动力学试验的H-1 NMR数据表明,全氟芳基AB共聚单体分布与AB共聚单体空间相关。 F-19 NMR数据表明,氟化AB单体和3-溴-1-丙醇AB单体分布在AB(2)聚合物主链中,而较长的烷基溴AB单体6-溴-1-己醇则主要分布在超支化聚合物链端。通常,随着非空间位阻共聚物的AB共聚单体掺入增加,热分解开始增加,玻璃化转变温度降低。组合的数据表明共聚单体分布和空间对基于AB(2)的聚合物系统的物理性能的影响。所得材料用于流延聚合物薄膜以测量接触角,该薄膜显示出与共聚单体含量直接相关。 (c)2015 Wiley Periodicals,Inc. J. Polym。科学,A部分:Polym。化学2015,53,1880-1894

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