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基于聚苯醚和聚乙烯醇的用于氢氧燃料电池的弹性导电交联阴离子交换膜

Elastic and Conductive Cross-linked Anion Exchange Membranes Based on Polyphenylene Oxide and Poly(vinyl alcohol) for H -O Fuel Cells.

作者信息

Han Juanjuan, Zhang Yangyang, Zheng Xiumeng, Lu Yuyang, Li Wanting, Zhou Xiaorong, Ren Zhandong, Liu Yi, Hu Meixue, Xiao Li, Zhuang Lin

机构信息

School of Chemical and Environmental Engineering, Wuhan Polytechnic University, Wuhan, 430023, P. R. China.

College of Chemistry and Molecular Sciences, Hubei Key Lab of Electrochemical Power Sources, Wuhan University, Wuhan, 430072, P. R. China.

出版信息

ChemSusChem. 2024 Jan 22;17(2):e202300985. doi: 10.1002/cssc.202300985. Epub 2023 Nov 14.

DOI:10.1002/cssc.202300985
PMID:37698086
Abstract

A series of cross-linked AEMs (c-DQPPO/PVA) are synthesized by using rigid polyphenylene oxide and flexible poly(vinyl alcohol) as the backbones. Dual cations are grafted on the PPO backbone to improve the ion exchange capacity (IEC), while glutaraldehyde is introduced to enhance compatibility and reduce swelling ratio of AEMs. In addition to the enhanced mechanical properties resulting from the rigid-flexible cross-linked network, c-DQPPO/PVA AEMs also exhibit impressive ionic conductivity, which can be attributed to their high IEC, good hydrophilicity of PVA, and well-defined micro-morphology. Additionally, due to confined dimension behavior and ordered micro-morphology, c-DQPPO/PVA AEMs demonstrate excellent chemical stability. Specifically, c-DQPPO/PVA-7.5 exhibits a wet-state tensile strength of 12.5 MPa and an elongation at break of 53.0 % at 25 °C. Its OH conductivity and swelling degree at 80 °C are measured to be 125.7 mS cm and 8.2 %, respectively, with an IEC of 3.05 mmol g . After 30 days in a 1 M NaOH solution at 80 °C, c-DQPPO/PVA-7.5 experiences degradation rates of 12.8 % for tensile strength, 27.4 % for elongation at break, 14.7 % for IEC, and 19.2 % for ion conductivity. With its excellent properties, c-DQPPO/PVA-7.5 exhibits a peak power density of 0.751 W cm at 60 °C in an H -O fuel cell.

摘要

以刚性聚苯醚和柔性聚乙烯醇为主链合成了一系列交联阴离子交换膜(c-DQPPO/PVA)。在聚苯醚主链上接枝双阳离子以提高离子交换容量(IEC),同时引入戊二醛以增强相容性并降低阴离子交换膜的溶胀率。除了刚性-柔性交联网络带来的机械性能增强外,c-DQPPO/PVA阴离子交换膜还表现出令人印象深刻的离子电导率,这可归因于其高IEC、聚乙烯醇良好的亲水性以及明确的微观形态。此外,由于受限尺寸行为和有序的微观形态,c-DQPPO/PVA阴离子交换膜表现出优异的化学稳定性。具体而言,c-DQPPO/PVA-7.5在25℃下的湿态拉伸强度为12.5MPa,断裂伸长率为53.0%。其在80℃下的氢氧根电导率和溶胀度分别测得为125.7mS/cm和8.2%,IEC为3.05mmol/g。在80℃的1M NaOH溶液中浸泡30天后,c-DQPPO/PVA-7.5的拉伸强度降解率为12.8%,断裂伸长率降解率为27.4%,IEC降解率为14.7%,离子电导率降解率为19.2%。凭借其优异的性能,c-DQPPO/PVA-7.5在氢氧燃料电池中于60℃时的峰值功率密度为0.751W/cm²。

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