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Free Volume and Oxygen Permeability in Polymers Related to Polymer Electrolyte Fuel Cells

机译:与聚合物电解质燃料电池相关的聚合物的自由体积和透氧性

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The mechanism of gas permeation in sulfonated polymers such as Nafion and sulfonated polyethersulfone (SPES) for polymer electrolyte fuel cells has been investigated from the viewpoint of free volume. Free volume was quantified using the positron annihilation lifetime (PAL) technique and O2 permeability was measured as a function of temperature or ion exchange capacity (IEC). Good linear correlations between the logarithm of the permeabilities and reciprocal free volume indicate that gas permeation in the sulfonated polymers depends strongly on the free volume. Comparison of Nafion with SPES and other relatively flexible chain polymers showed that the stiff chains of the perfluoroethylene backbone in Nafion make the O2 permeability much smaller than the corresponding flexible chain polymer with a similar free volume size. The O2 permeability in the K+-form of Nafion is systematically smaller than the H+-form, showing that the chain stiffness is enhanced by the ion exchange.
机译:从自由体积的角度,已经研究了用于聚合物电解质燃料电池的磺化聚合物如Nafion和磺化聚醚砜(SPES)中的气体渗透机理。使用正电子an灭寿命(PAL)技术对自由体积进行定量,并根据温度或离子交换容量(IEC)来测量O2渗透性。渗透率的对数与自由体积的倒数之间的良好线性相关性表明,磺化聚合物中的气体渗透强烈依赖于自由体积。 Nafion与SPES和其他相对柔性链状聚合物的比较表明,Nafion中全氟乙烯骨架的刚性链使O2的渗透性比具有类似自由体积尺寸的相应柔性链状聚合物小得多。 Nafion的K +形式的O2渗透性系统地小于H +形式,表明通过离子交换可以增强链刚度。

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