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Composite Electrolyte Membranes from Partially Fluorinated Polymer and Hyperbranched Sulfonated Polysulfone

机译:部分氟化聚合物和超支化磺化聚砜的复合电解质膜

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摘要

Macromolecular modification of poly(vinylidene fluoride-co-hexafluoropropylene) (PVDF) was done with various proportions of sulfonic acid terminated, hyperbranched polysulfone (HPSU) with a view to prepare ion conducting membranes. The PVDF-co-HFP was first chemically modified by dehydrofluorination and chlorosulfonation in order to make the membrane more hydrophilic as well as to introduce unsaturation, which would allow crosslinking of the PVDF-co-HFP matrix to improve the stability of the membrane. The modified samples were characterized for ion exchange capacity, morphology, and performance. The HPSU modified S-PVDF membrane shows good stability and ionic conductivity of 5.1 mS cm−1 at 80 °C and 100% RH for blends containing 20% HPSU, which is higher than the literature values for equivalent blend membranes using Nafion. SEM analysis of the blend membranes containing 15% or more HPSU shows the presence of spherical domains with a size range of 300–800 nm within the membranes, which are believed to be the HPSU-rich area.
机译:为了制备离子传导膜,用各种比例的磺酸封端的超支化聚砜(HPSU)对聚偏二氟乙烯-共-六氟丙烯(PVDF)进行了大分子改性。首先通过脱氟化氢和氯磺化对PVDF-co-HFP进行化学修饰,以使膜更具亲水性并引入不饱和度,这将允许PVDF-co-HFP基质交联以提高膜的稳定性。改性样品的离子交换能力,形态和性能进行了表征。 HPSU改性的S-PVDF膜在80°C和100%RH的条件下,对于含有20%HPSU的混合物,显示出良好的稳定性和5.1 mS cm -1 的离子电导率,高于等效值使用Nafion混合膜。含有15%或更多HPSU的共混膜的SEM分析显示,膜内存在球形区域,尺寸范围为300–800 nm,这被认为是HPSU丰富的区域。

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