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Anion Exchange Membranes by Bromination of Benzylmethyl-Containing Poly(sulfone)s

机译:溴化苄基甲基聚砜的阴离子交换膜

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This report details the properties of anion-conducting membranes synthesized by halonlethylation and quaternization of benzylmethyl-containing poly(sulfone)s. The benzylmethyl moieties, which serve as precursors to cationic sites, are introduced during polymer synthesis, thereby circumventing postmodification of the polymer by chloromethylation. By directing the distribution of ionic groups, the anion conductivity and water uptake of the membranes could be tuned over a wide range. For homogeneously distributed cationic groups, the water uptake and anionic conductivity Were high relative to the material's ion exchange capacity. When in unfunctionalizable comonomer was added, the water uptake decreased fora given ion content. A strong correlation between the water uptake and anion conductivity was observed for all materials. Interestingly, as the cation concentration in the membrane decreased due to an increase in water uptake, the anion conductivity increased. This unexpected relationship between the volumetric density of fixed charged sites and the anion conductivity underscores the importance of water uptake in these materials to promote fast anion transport.
机译:该报告详细介绍了通过卤代乙基化和含苄基甲基的聚砜季铵化合成的阴离子导电膜的性能。在聚合物合成过程中引入用作阳离子位点前体的苄基甲基部分,从而避免了通过氯甲基化对聚合物的后改性。通过控制离子基团的分布,可以在很宽的范围内调节膜的阴离子电导率和吸水率。对于均匀分布的阳离子基团,相对于材料的离子交换容量,其吸水率和阴离子电导率较高。当加入不可官能化的共聚单体时,对于给定的离子含量,吸水率降低。对于所有材料,均观察到吸水率与阴离子电导率之间有很强的相关性。有趣的是,由于膜中的阳离子浓度由于吸水量的增加而降低,因此阴离子电导率增加。固定电荷位点的体积密度与阴离子电导率之间的这种出乎意料的关系强调了在这些材料中吸水对促进快速阴离子运输的重要性。

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