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首页> 外文期刊>Journal of Polymer Science, Part A. Polymer Chemistry >Sulfonated naphthalene dianhydride based polyimide copolymers for proton-exchange-membrane fuel cells. I. Monomer and copolymer synthesis
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Sulfonated naphthalene dianhydride based polyimide copolymers for proton-exchange-membrane fuel cells. I. Monomer and copolymer synthesis

机译:用于质子交换膜燃料电池的磺化萘二酐基聚酰亚胺共聚物。一,单体和共聚物的合成

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A novel sulfonated diamine, 3,3'-disulfonic acid-bis[4-(3-aminophenoxy)phenyl]sulfone (SA-DADPS), was prepared from m-aminophenol and disodium-3,3'disulfonate-4,4'-dichlorodiphenylsulfone. The conditions necessary to synthesize and purify SA-DADPS in high yields were investigated in some detail. This disulfonated aromatic diamine, containing ether and sulfone linkages, was used to prepare N-methyl-2-pyrrolidinone-soluble, six-membered ring polyimide copolymers containing pendent sulfonic acid groups by a catalyzed one-step high-temperature polycondensation in m-cresol. These materials showed much improved hydrolytic stability with respect to phthalimides. High-molecular-weight film-forming statistical copolymers with controlled degrees of disulfonation were prepared through variations in the stoichiometric ratio of disulfonated diamine (SA-DADPS) in its soluble triethylamine salt form to several unsulfonated diamines. Three unsulfonated diamines, bis[4-(3-aminophenoxy)phenyl] sulfone, 4,4'-oxydianiline, and 1,3-phenylenediamine, were used to prepare the copolymers. The characterization of the copolymers by H-1 NMR, Fourier transform infrared, ion-exchange capacity, and thermogravimetric analysis demonstrated that SA-DADPS was quantitatively incorporated into the copolymers. Solution-cast films of the sulfonated copolymers were prepared and afforded tough, ductile membranes with high glass-transition temperatures. Methods were developed to acidify the triethylammonium salt membranes into their disulfonic acid form, this being necessary for proton conduction in a fuel cell. The synthesis and characterization of these materials are described in this article. Future articles will describe the performance of these copolymers as proton-exchange membranes in hydrogen/air and direct methanol fuel cells. (C) 2004 Wiley Periodicals, Inc. [References: 23]
机译:由间氨基苯酚和3,3'-二磺酸钠-4,4'制备了一种新型的磺化二胺3,3'-二磺酸-双[4-(3-氨基苯氧基)苯基]砜(SA-DADPS)。 -二氯二苯砜。详细研究了高收率合成和纯化SA-DADPS的条件。该含醚键和砜键的二磺化芳族二胺用于在间甲酚中催化的一步式高温缩聚反应,制备可溶于N-甲基-2-吡咯烷酮的含侧基磺酸基的六元环聚酰亚胺共聚物。 。这些材料相对于邻苯二甲酰亚胺显示出大大改善的水解稳定性。通过改变呈可溶性三乙胺盐形式的二磺化二胺(SA-DADPS)与几种未磺化二胺的化学计量比,可以制备具有可控制的二磺化度的高分子量成膜统计共聚物。三种未磺化的二胺,即双[4-(3-氨基苯氧基)苯基]砜,4,4'-氧二苯胺和1,3-苯二胺被用于制备共聚物。通过H-1 NMR,傅立叶变换红外光谱,离子交换容量和热重分析对共聚物进行表征,结果表明SA-DADPS被定量掺入共聚物中。制备了磺化共聚物的溶液流延薄膜,并提供了具有高玻璃化转变温度的坚韧,可延展的膜。已开发出将三乙铵盐膜酸化成其二磺酸形式的方法,这对于燃料电池中的质子传导是必需的。本文介绍了这些材料的合成和表征。未来的文章将描述这些共聚物在氢/空气和直接甲醇燃料电池中作为质子交换膜的性能。 (C)2004 Wiley Periodicals,Inc. [参考:23]

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