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首页> 外文期刊>Fuel cells >Pore Size Distribution and Water Uptake in Hydrocarbon and Perfluorinated Proton-Exchange Membranes as Studied by NMR Cryoporometry
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Pore Size Distribution and Water Uptake in Hydrocarbon and Perfluorinated Proton-Exchange Membranes as Studied by NMR Cryoporometry

机译:NMR和超低温法研究碳氢化合物和全氟化质子交换膜的孔径分布和吸水率

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Sulfonated polysulfone (sPSU) membranes were analysed by nuclear magnetic resonance (NMR) cryoporometry, conventional gravimetric water uptake measurements as well as by differential scanning calorimetry (DSC). NMR cryoporometry is based on the relation between the pore size and the melting point depression of the pore-filling liquid, i.e. water in fuel cell membranes; thus providing a relation between the amount of molten water and the temperature shift, i.e. the pore size, in hydrated membranes. An sPSU membrane with high ion-exchange capacity (IEC 1.45 mequiv. G{sup}(-1)) possessed a significant amount of large pores after hydrothermal pretreatment at 80℃, which was related to its high hydrophilicity and low resistance towards swelling. An sPSU membrane with low IEC (0.95 mequiv. G{sup}(-1)) showed a significant fraction of small pores (r ~ 1 nm) after hydrothermal pre-treatment at 80℃, implying a controlled water uptake of the membrane. NMR cryoporometry was also carried out on Nafion membranes, the results were found to be in agreement with the water uptake measurements and revealed a pore size distribution peak at r ~ 1 nm. The NMR cryoporometry, gravimetric water uptake and DSC results are also discussed in terms of the state of the water and methodological differences.
机译:磺化聚砜(sPSU)膜通过核磁共振(NMR)低温法,常规重量法吸水率测量以及差示扫描量热法(DSC)进行分析。 NMR低温计量法是基于孔尺寸和孔填充液体(即燃料电池膜中的水)的熔点降低之间的关系。因此,在水合膜中提供了熔融水量与温度变化即孔径的关系。具有高离子交换能力的sPSU膜(IEC 1.45 mequiv。G {sup}(-1))在80℃水热处理后具有大量的大孔,这与其亲水性高和抗溶胀性有关。具有低IEC(0.95 mequiv。G {sup}(-1))的sPSU膜在80℃水热预处理后显示出很大一部分小孔(r〜1 nm),这意味着该膜的吸水率受到控制。在Nafion膜上也进行了NMR低温测量,结果与吸水率测量结果一致,并且在r〜1 nm处出现了孔径分布峰值。还根据水的状态和方法上的差异讨论了NMR低温法,重量法吸水率和DSC结果。

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