首页> 外文期刊>Journal of Polymer Science, Part A. Polymer Chemistry >Influence of Adjusted Hydrophilic-Hydrophobic Lengths in Sulfonated Multiblock Copoly(ether sulfone) Membranes for Fuel Cell Application
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Influence of Adjusted Hydrophilic-Hydrophobic Lengths in Sulfonated Multiblock Copoly(ether sulfone) Membranes for Fuel Cell Application

机译:调整后的亲水-疏水长度对磺化多嵌段共聚(醚砜)膜在燃料电池中的影响

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Sulfonated multiblock copoly(ether sulfone)s applicable to proton exchange membrane fuel cells (PEMFCs) were synthesized by the coupling reaction of the hydroxyl-terminated hydrophilic and hydrophobic oligomers with different lengths in the presence of highly reactive decafluorobiphenyl (DFB) as a chain extender to investigate the influence of each length on the membranes' properties, such as water uptake, proton conductivity, and morphology. Multiblock copolymers with high molecular weights (M-n > 50,000, M-w > 150,000) were obtained under mild reaction conditions. The resulting membranes demonstrated good oxidative stability for hot Fenton's reagent and maintained high water uptake (7.3-18.7 wt %) under a low relative humidity (50% RH). Proton conductivity of all membranes at 80 degrees C and 95% RH was higher than that of Nafion 117 membrane, and good proton conductivity of 7.0 x 10(-3) S/cm was obtained at 80 degrees C and 50% RH by optimizing the oligomer lengths. The surface morphology of the membranes was investigated by tapping mode atomic force microscopy (AFM), which showed that the multiblock copolymer membranes had a clearer surface hydrophilie/hydrophobic-separated structure than that of the random copolymer, and contributed to good and effective proton conduction. (C) 2008 Wiley Periodicals, Inc. J Polym Sci Part A: Polym Chem 46: 7332-7341, 2008
机译:适用于质子交换膜燃料电池(PEMFC)的磺化多嵌段共聚醚砜是通过在高反应性十氟联苯(DFB)作为增链剂的存在下,将具有不同长度的羟基封端的亲水和疏水低聚物进行偶联反应而合成的研究每种长度对膜性能的影响,例如吸水率,质子传导率和形态。在温和的反应条件下获得了具有高分子量(M-n> 50,000,M-w> 150,000)的多嵌段共聚物。所得的膜对热的芬顿试剂表现出良好的氧化稳定性,并且在低相对湿度(50%RH)下保持高吸水率(7.3-18.7wt%)。在80摄氏度和95%相对湿度下,所有膜的质子电导率均比Nafion 117膜高,并且通过在80摄氏度和50%相对湿度下优化得到的质子电导率为7.0 x 10(-3)S / cm。低聚物长度。轻击模式原子力显微镜(AFM)研究了膜的表面形态,结果表明,多嵌段共聚物膜的表面亲水/疏水分离结构比无规共聚物更清晰,有助于良好和有效的质子传导。 。 (C)2008 Wiley Periodicals,Inc. J Polym Sci Part A:Polym Chem 46:7332-7341,2008年

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