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Proton exchange membranes prepared by simultaneous radiation grafting of styrene onto poly(tetrafluoroethyleneco- hexafluoropropylene) films. I. Effect of grafting conditions

机译:通过将苯乙烯同时辐射接枝到聚四氟乙烯-六氟丙烯薄膜上而制备的质子交换膜。一,接枝条件的影响

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摘要

The simultaneous radiation grafting of styrene onto poly(tetrafluoroethylene- co-hexafluoropropylene) (FEP) films was studied at room temperature. The effects of grafting conditions (type of solvent, irradiation dose, dose rate, and monomer concentration) were investigated. The degree of grafting was found to be dependent on the investigated grafting conditions. The dependence of the initial rate of grafting on the dose rate and the monomer concentration was found to be of 0.5 and 1.3 orders, respectively. The results suggest that grafting proceeds by the so-called front mechanism in which the grafting front starts at the surface of the film and moves internally toward the middle of the film by successive diffusion of styrene through the grafted layers. Some selected properties of the grafted films were evaluated in correlation with the degree of grafting. We found that the grafted FEP films possess good mechanical stability, which encourages their use for the preparation of proton exchange membranes.
机译:在室温下研究了苯乙烯在聚四氟乙烯-共六氟丙烯(FEP)薄膜上的同时辐射接枝。研究了接枝条件(溶剂类型,辐照剂量,剂量率和单体浓度)的影响。发现接枝程度取决于所研究的接枝条件。发现接枝起始速率对剂量率和单体浓度的依赖性分别为0.5和1.3个数量级。结果表明,接枝是通过所谓的前沿机理进行的,在该机理中,接枝前沿开始于薄膜表面,并通过苯乙烯连续扩散穿过接枝层而向内部向薄膜中间移动。与接枝程度相关地评估了接枝膜的某些选定性能。我们发现,接枝的FEP膜具有良好的机械稳定性,这鼓励它们用于制备质子交换膜。

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