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首页> 外文期刊>High performance polymers >Synthesis, proton conductivity and chemical stability of novel sulfonated copolyimides-containing benzimidazole groups for fuel cell applications
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Synthesis, proton conductivity and chemical stability of novel sulfonated copolyimides-containing benzimidazole groups for fuel cell applications

机译:用于燃料电池的新型含磺化共聚酰亚胺苯并咪唑基团的合成,质子传导性和化学稳定性

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摘要

A new diamine monomer, 2,2'-bis(4-aminophenyl)-5,5'-bibenzimidazole (BAPBI), has been simply synthesized via a one-step reaction procedure of 4-aminobenzoic acid and 3,3'-diaminobenzidine in polyphosphoric acid (PPA) at 190°C. A series of sulfonated copolyimides (SPIs)-containing benzimidazole groups have been prepared by random copolymerization of 1,4,5,8-naphthalenetetracarboxylic dianhydride, BAPBI, 4,4'-bis(4-aminophenoxy)biphenyl-3,3'-disulfonic acid and nonsulfo-nated diamines in m-cresol at 180°C. Transparent and tough SPI membranes are obtained by solution cast method. The SPIs show high decomposition temperatures (~300°C) of sulfonic acid groups, indicating good thermal stability. Covalent cross-linking was successfully achieved by treating the SPI membranes in PPA at 170°C for 10 h. The covalently cross-linked SPI membranes show much improved radical oxidative stability due to the synergic action of the covalent cross-linking and the incorporation of benzimidazole groups into the polymer structure. The covalent cross-linking is also favorable for improving the hydrolytic stability of the SPI membranes. However, the proton conductivity decreased to some extent because the sulfonic acid groups had been partially consumed during the process of covalent cross-linking.
机译:通过4-氨基苯甲酸和3,3'-二氨基联苯胺的一步反应过程,简单地合成了一种新的二胺单体2,2'-双(4-氨基苯基)-5,5'-联苯并咪唑(BAPBI)在190°C下在多磷酸(PPA)中溶解。通过将1,4,5,8-萘四甲酸二酐,BAPBI,4,4'-双(4-氨基苯氧基)联苯-3,3'-无规共聚制备了一系列含磺化共聚酰亚胺(SPI)的苯并咪唑基团。在180°C下在间甲酚中加入二磺酸和非磺化二胺通过溶液流延法获得透明且坚韧的SPI膜。 SPI显示出较高的磺酸基分解温度(约300°C),表明具有良好的热稳定性。共价交联是通过在PPA中于170°C处理SPI膜10小时而成功实现的。共价交联的SPI膜由于共价交联的协同作用以及将苯并咪唑基团掺入聚合物结构而显示出大大改善的自由基氧化稳定性。共价交联也有利于改善SPI膜的水解稳定性。然而,由于在共价交联过程中磺酸基已被部分消耗,因此质子传导性有所降低。

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