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High Ion-Exchange Capacity Semihomogeneous Cation Exchange Membranes Prepared via a Novel Polymerization and Sulfonation Approach in Porous Polypropylene

机译:高离子交换能力半均匀阳离子交换膜通过多孔聚丙烯的新型聚合和磺化方法制备

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摘要

Semihomogeneous cation exchange membranes with superior ion exchange capacity (IEC) were synthesized via a novel polymerization and sulfonation approach in porous polypropylene support. The IEC of membranes could reach up to 3 mmol/g because of high mass ratio of functional polymer to membrane support. Especially, theoretical IEC threshold value agreed well with experimental threshold value, indicating that IEC could be specifically designed without carrying out extensive experiments. Also, sulfonate groups were distributed both on membrane surface and across the membranes, which corresponded well with high IEC of the synthesized membranes. In addition, the semifinished membrane showed hydrophobic property because of the formation of polystyrene. In contrast, the final membranes demonstrated super hydrophilic property, indicating the adequate sulfonation of polystyrene. Furthermore, when sulfonation reaction time increased, the conductivity of membranes also showed a tendency to increase, revealing the positive relationship between conductivity and IEC. Finally, the final membranes showed sufficient thermal stability for electrodialysis applications such as water desalination.
机译:通过多孔聚丙烯载体的新聚合和磺化方法合成具有优异离子交换能力(IEC)的半均匀阳离子交换膜。由于函数聚合物与膜载体的高质量比,膜的IEC可达到3mmol / g。特别地,理论IEC阈值与实验阈值很好地同意,表明可以在不进行广泛实验的情况下专门设计IEC。此外,磺酸盐基团在膜表面和穿过膜上分布,其对应于合成膜的高IEC良好。此外,由于聚苯乙烯的形成,半成化膜显示出疏水性。相反,最终膜层证明了超亲水性,表明聚苯乙烯的足够磺酸盐。此外,当磺化反应时间增加时,膜的导电性也显示出增加的趋势,揭示电导率和IEC之间的正关系。最后,最终膜显示出电渗析应用的足够的热稳定性,例如水脱盐。

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