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首页> 外文期刊>Polymers >Partially Fluorinated Sulfonated Poly(ether amide) Fuel Cell Membranes: Influence of Chemical Structure on Membrane Properties
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Partially Fluorinated Sulfonated Poly(ether amide) Fuel Cell Membranes: Influence of Chemical Structure on Membrane Properties

机译:部分氟化的磺化聚醚酰胺燃料电池膜:化学结构对膜性能的影响

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摘要

A series of fluorinated sulfonated poly (ether amide)s (SPAs) were synthesized for proton exchange membrane fuel cell applications. A polycondensation reaction of 4,4′-oxydianiline, 2-sulfoterephthalic acid monosodium salt, and tetrafluorophenylene dicarboxylic acids (terephthalic and isophthalic) or fluoroaliphatic dicarboxylic acids produced SPAs with sulfonation degrees of 80–90%. Controlling the feed ratio of the sulfonated and unsulfonated dicarboxylic acid monomers afforded random SPAs with ion exchange capacities between 1.7 and 2.2 meq/g and good solubility in polar aprotic solvents. Their structures were characterized using NMR and FT IR spectroscopies. Tough, flexible, and transparent films were obtained with dimethylsulfoxide using a solution casting method. Most SPA membranes with 90% sulfonation degree showed high proton conductivity (>100 mS/cm) at 80 °C and 100% relative humidity. Among them, two outstanding ionomers (ODA-STA-TPA-90 and ODA-STA-IPA-90) showed proton conductivity comparable to that of Nafion 117 between 40 and 80 °C. The influence of chemical structure on the membrane properties was systematically investigated by comparing the fluorinated polymers to their hydrogenated counterparts. The results suggest that the incorporation of fluorinated moieties in the polymer backbone of the membrane reduces water absorption. High molecular weight and the resulting physical entanglement of the polymers chains played a more important role in improving stability in water, however.
机译:合成了一系列的氟化磺化聚醚醚(SPAs)用于质子交换膜燃料电池。 4,4'-氧苯二胺,2-磺基对苯二甲酸单钠盐和四氟亚苯基二羧酸(对苯二甲酸和间苯二甲酸)或氟代脂族二羧酸的缩聚反应生成的SPA的磺化度为80-90%。通过控制磺化和未磺化二羧酸单体的进料比,可以得到无规SPA,其离子交换容量在1.7和2.2 meq / g之间,并且在极性非质子溶剂中具有良好的溶解性。使用NMR和FT IR光谱对它们的结构进行表征。使用溶液流延法用二甲基亚砜获得坚韧,柔性和透明的薄膜。大多数具有90%磺化度的SPA膜在80°C和100%相对湿度下均显示出高质子传导率(> 100 mS / cm)。其中,两种出色的离聚物(ODA-STA-TPA-90和ODA-STA-IPA-90)在40至80°C下的质子传导率与Nafion 117相当。通过比较氟化聚合物和氢化聚合物,系统地研究了化学结构对膜性能的影响。结果表明,在膜的聚合物主链中掺入氟化部分降低了吸水率。然而,高分子量和由此导致的聚合物链的物理缠结在改善水中稳定性方面起着更重要的作用。

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