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Preparation and properties of sulfonated polybenzimidazole-polyimide block copolymers as electrolyte membranes

机译:磺化聚苯和咪唑 - 聚酰亚胺嵌段共聚物作为电解质膜的制备及性能

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摘要

Sulfonated polybenzimidazole-polyimide block copolymers are synthesized through condensation polymerization at high temperature. The length of the polyimide chain is varied to give a series of block copolymers with various block lengths. The as-synthesized block polymers are used to prepare the corresponding membranes through the solvent evaporation method. The structure of the block copolymers is characterized by Fourier transform infrared spectroscopy (FTIR) and nuclear magnetic resonance spectroscopy (NMR). Their mechanical strength, thermal behavior, water uptake, swelling ratio, and proton conductivity, as well as oxidative stability are also investigated. All the block copolymers exhibit good thermal stability, dimensional stability, mechanical strength, and proton conductivity. Compared to the random sulfonated polyimide-containing benzimidazole membranes with the same degree of sulfonation, the membranes prepared from the block copolymers show higher proton conductivities. The proton conductivities of the block copolymer membranes range from 6.2 x 10(-4) to 1.1 x 10(-2) S cm(-1) at 105 degrees C. The block copolymer membrane doped with phosphoric acid exhibits proton conductivity higher than 0.2 S cm(-1) at 160 degrees C, indicating its potential applications in proton exchange membrane fuel cells operated under high temperature and low humidity conditions.
机译:通过在高温下通过缩合聚合合成磺化聚苯烷基咪唑 - 聚酰亚胺嵌段共聚物。多酰亚胺链的长度变化,得到一系列具有各种块长度的嵌段共聚物。通过溶剂蒸发法制备相应的膜,用溶剂蒸发方法制备相应的膜。嵌段共聚物的结构的特征在于傅里叶变换红外光谱(FTIR)和核磁共振光谱(NMR)。还研究了它们的机械强度,热行为,水吸收,溶胀比以及质子电导率以及氧化稳定性。所有嵌段共聚物均表现出良好的热稳定性,尺寸稳定性,机械强度和质子电导率。与具有相同磺化程度的随机磺化聚酰亚胺苯并咪唑膜相比,由嵌段共聚物制备的膜显示出更高的质子电导率。嵌段共聚物膜的质子电导率在105℃的6.2×10(-4)至1.1×10(-2)Scm(-​​1)。掺杂有磷酸的嵌段共聚物膜表现出质子电导率高于0.2 S cm(-1)在160℃,表示其在质子交换膜燃料电池中的潜在应用,在高温和低湿度条件下操作。

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