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首页> 外文期刊>International journal of hydrogen energy >Branched poly(ether ether ketone) based anion exchange membrane for H_2/O_2 fuel cell
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Branched poly(ether ether ketone) based anion exchange membrane for H_2/O_2 fuel cell

机译:用于H_2 / O_2燃料电池的支化聚醚醚酮基阴离子交换膜

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High-performance anion exchange membranes (AEMs) are in need for practical application of AEM fuel cells. Novel branched poly(ether ether ketone) (BPEEK) based AEMs were prepared by the copolymerization of phloroglucinol, methylhydroquinone and 4,4'-difluorobenzophenone and following functionalization. The effects of the branched polymer structures and functional groups on the membrane's properties were investigated. The swelling ratios of all the membranes were kept below 15% at room temperature and had good dimensional stability at elevated temperatures. The branching degree has almost no effect on the dimensional change, but plays a great role in tuning the nanophase separation structure. The cyclic ammonium functionalized membrane showed a lower conductivity but a much better stability than imidazolium one. The BPEEK-3-Pip-53 membrane with the branching degree of 3% and piperidine functionalization degree of 53% showed the best performances. The ionic conductivity was 43 mS cm(-1) at 60 degrees C. The ionic conductivity in 1 M KOH at 60 degrees C after 336 h was 75% of its initial value (25% loss of conductivity), and the IEC was 83% of its initial value (17% loss of IEC), suggesting good alkaline stability. The peak energy density (60 degrees C) of the single H-2/O-2 fuel cell with BPEEK-3-Pip-53 membrane reached 133 mW cm(-2) at 260 mA cm(-2). (C) 2019 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:高性能阴离子交换膜(AEM)是AEM燃料电池实际应用所需要的。通过将间苯三酚,甲基氢醌和4,4'-二氟二苯甲酮共聚并随后进行官能化,制备了基于新型支化聚醚醚酮(BPEEK)的AEM。研究了支链聚合物结构和官能团对膜性能的影响。在室温下所有膜的溶胀率保持在15%以下,并且在高温下具有良好的尺寸稳定性。支化度对尺寸变化几乎没有影响,但是在调节纳米相分离结构中起很大作用。环状铵官能化膜的电导率比咪唑鎓膜低,但稳定性好得多。 BPEEK-3-Pip-53膜的支化度为3%,哌啶官能度为53%,表现出最好的性能。离子电导率在60摄氏度时为43 mS cm(-1)。336 h后在60摄氏度下于1 M KOH中的离子电导率为其初始值的75%(电导率损失25%),而IEC为83初始值的%(IEC降低17%),表明具有良好的碱性稳定性。具有BPEEK-3-Pip-53膜的单个H-2 / O-2燃料电池的峰值能量密度(60摄氏度)在260 mA cm(-2)时达到133 mW cm(-2)。 (C)2019氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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