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Toughened polymer electrolyte membranes composed of sulfonated poly (arylene ether ketone) block copolymer and organosiloxane network for fuel cell

机译:由磺化聚(亚芳基醚酮)嵌段共聚物和有机硅氧烷网络组成的增韧聚合物电解质膜用于燃料电池

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摘要

The semi-interpenetrating polymer network (semi-IPN) based electrolyte membrane was synthesized from the poly(arylene ether ketone)-b-ketone sulfonated poly(arylene ether ketone) multi-block copolymer (PAEK-b-KSPAEK) and the organosiloxane organic-inorganic hybrid polymer network (OSPN) pre-synthesized. The chemical structure of the synthesized PAEK-b-KSPAEK and semi-IPN was identified using H-1 and F-19 nuclear magnetic resonance spectroscopy and Fourier transform infrared spectroscopy, and the dimension of the phase separated ionic clusters was examined by small angle X-ray scattering spectroscopy. Introduction of OSPN to PAEK-b-KSPAEK improved not only the thermal and mechanical stability (toughness) but also the oxidative stability. The performance of the membrane electrode assembly fabricated with the semi-IPN electrolyte membranes was superior to that of the pure block copolymer membrane because of the enhanced proton conductivity and toughness. While the semi-IPN24 membrane showed the comparable proton conductivity and cell performance to Nafion 115 membrane, its methanol permeability was significantly lower than that of Nafion 115 membrane.
机译:从聚(亚芳基醚酮)-b-酮磺化聚(亚芳基醚酮)多嵌段共聚物(Paek-B-Kspaek)和有机硅氧烷有机物合成半互穿的聚合物网络(半IPn)电解质膜 - 预先合成的杂交杂交聚合物网络(OSPN)。使用H-1和F-19核磁共振光谱和傅里叶变换红外光谱鉴定合成的Paek-B-Kspaek和半IPn的化学结构,并通过小角度X检查相分离的离子簇的尺寸 - 射线散射光谱。 OSPN引入PAEK-B-KSPAEK不仅改善了热和机械稳定性(韧性),而且改善了氧化稳定性。由于增强的质子电导率和韧性,用半IPN电解质膜制造的膜电极组件的性能优于纯嵌段共聚物膜的性能。虽然半IPN24膜显示出与Nafion 115膜的相当的质子电导率和细胞性能,但其甲醇渗透性显着低于Nafion 115膜的渗透性。

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