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Effects of Polymer Structure on Properties of Sulfonated Polyimide/ Protic Ionic Liquid Composite Membranes for Nonhurnidified Fuel Cell Applications

机译:聚合物结构对非加氢燃料电池用磺化聚酰亚胺/质子离子液体复合膜性能的影响

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To investigate the effects of polymer structure on the properties of composite membranes including a protic ionic liquid, [dema][TfO] (diethylme-thylammonium trifluoromethanesulfonate), for nonhurnidified fuel cell applications, we synthesized sulfonated polyimides (SPIs) with different structures as matrix polymers, which have different magnitudes of ion-exchange capacities (IECs), different sequence distributions of ionic groups, and positions of sulfonate groups in the main chain or side chain. Despite having similar IECs, multiblock copolymer SPI and random copolymer SPI having sulfonate groups in the side chain exhibit higher ionic conductivity than random copolymer SPI having sulfonate groups in the main chain, indicating that the flexibility of sulfonic acid groups and the sequence distribution of ionic groups greatly affect the ion conduction. Atomic force microscopy observation revealed that the multiblock copolymer SPI forms more developed phase separation than the others. These results indicate that the flexibility of sulfonic acid groups and the connectivity of the ion conduction channel, which greatly depends on the sequence distribution, affect the ion conduction.
机译:为了研究聚合物结构对质子离子液体,[dema] [TfO](二乙基-三氟甲磺酸二乙基-thyrammonium三氟甲磺酸盐)复合膜性能的影响,我们合成了具有不同结构的磺化聚酰亚胺(SPI)作为基质具有不同大小的离子交换容量(IEC),离子基团的序列分布以及磺酸盐基团在主链或侧链中的位置的聚合物。尽管具有相似的IEC,但侧链上具有磺酸盐基团的多嵌段共聚物SPI和无规共聚物SPI的离子传导性高于主链中具有磺酸盐基团的无规共聚物SPI,这表明磺酸基的柔韧性和离子基团的序列分布大大影响离子的传导。原子力显微镜观察显示,多嵌段共聚物SPI比其他嵌段共聚物形成更发达的相分离。这些结果表明,在很大程度上取决于序列分布的磺酸基团的柔韧性和离子传导通道的连通性会影响离子传导。

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