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Physico-chemical study of sulfonated polystyrene pore-filled electrolyte membranes by electrons induced grafting

机译:电子诱导接枝的磺化聚苯乙烯多孔填充电解质膜的理化研究

摘要

Pore-filled polymer electrolyte membranes have been prepared as a potential proton exchange membrane by radiation induced grafting using simultaneous technique. The porous substrate films were grafted in a subsequent step after flooding the membranes pores with styrene monomer. The grafted films were then sulfonated in a post-grafting reactions. The influence of grafting conditions, i.e. irradiation dose and monomer concentration in correlation with the grafting yield (Y) have been investigated. The results showed that the grafting yield is increased for both conditions. The resulting membranes were then characterized by evaluating their physico-chemical properties such as ion exchange capacity, water uptake and proton conductivity as a function of grafting yield. The overall results showed that polystyrene grafts is successfully anchored within the pores of PTFE films during grafting and subsequently transformed into hygroscopic proton exchange regions after being sulfonated. The measured conductivity of the sulfonated polystyrene pore-filled electrolyte PTFE membranes achieved were approximately within the magnitude of 10-3 and 10-2 S cm-1 at room temperature and at higher operating temperature, respectively.
机译:通过使用同步技术通过辐射诱导接枝,已将孔隙填充的聚合物电解质膜制备为潜在的质子交换膜。在用苯乙烯单体淹没膜孔之后,在随后的步骤中接枝多孔基材膜。然后在接枝后反应中将接枝的膜磺化。已经研究了接枝条件的影响,即辐照剂量和单体浓度与接枝产率(Y)的关系。结果表明,两种条件下的接枝率均提高。然后通过评估其物理化学性质(如离子交换容量,吸水率和质子传导率)作为接枝产率的函数来表征所得膜。总体结果表明,聚苯乙烯接枝物在接枝过程中成功地锚固在PTFE膜的孔中,并在被磺化后转变为吸湿性质子交换区域。在室温和更高的操作温度下,所获得的磺化聚苯乙烯多孔填充电解质PTFE膜的电导率分别约为10-3和10-2 S cm-1。

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