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A novel proton conducting polymer electrolyte membrane for fuel cell applications

机译:一种用于燃料电池应用的新型质子电解电解质膜

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A series of phenolphthalein-based sulfonated poly(ether ether sulfone) (SPEES) membranes were synthesized by aromatic nucleophilic polymerization reaction. The degree of sulfonation was controlled by direct synthesis of sulfonated polymer, which leads to high thermal stability. The physicochemical properties of the SPEES membranes were studied in order to evaluate the suitability of these membranes in fuel cell applications. The ion-exchange capacity of the synthesized SPEES membranes was found in the range between 2.19 mequiv. g(-1) and 2.35 mequiv. g(-1). The morphology of the membranes was investigated with high-resolution scanning electron microscopy and confirmed the presence of hydrophilic domains that impart good proton conductivity. The membrane electrode assembly of SPEES-30 and SPEES-50 membranes has been successfully fabricated, where SPEES-50 produced a maximum peak power density of 643 mW cm(-2) while applying in hydrogen-oxygen fuel cell.
机译:通过芳族亲核聚合反应合成了一系列酚酞素基磺化聚(醚砜)(SPEEES)膜。 通过直接合成磺化聚合物来控制磺化程度,这导致高热稳定性。 研究了SPEES膜的物理化学特性,以评估这些膜在燃料电池应用中的适用性。 合成SPEES膜的离子交换能力在2.19 mequiv之间的范围内。 g(-1)和2.35 mequiv。 g(-1)。 用高分辨率扫描电子显微镜研究膜的形态,并确认了赋予良好质子电导率的亲水结构域。 已经成功地制造了SPEE-30和SPEES-50膜的膜电极组件,其中SPEE-50在施加氢气燃料电池中产生643mW cm(-2)的最大峰值功率密度。

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