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交联磺化聚(芳基醚砜)含柔性疏水双羟全氟聚醚交联剂的高性能质子交换膜

Cross-Linked Sulfonated Poly(arylene ether sulfone) Containing a Flexible and Hydrophobic Bishydroxy Perfluoropolyether Cross-Linker for High-Performance Proton Exchange Membrane.

机构信息

Department of Chemical and Biological Engineering , Seoul National University , 599 Gwanak-ro , Gwanak-gu , Seoul 151-744 , Republic of Korea.

Cell Development Group, Automotive & ESS Business Division , Samsung SDI Co. Ltd. , 150-20, Gongse-ro, Giheung-gu , Yongin-si , Gyeonggi-do 446-577 , Republic of Korea.

出版信息

ACS Appl Mater Interfaces. 2018 Jul 5;10(26):21788-21793. doi: 10.1021/acsami.8b05139. Epub 2018 Jun 19.

Abstract

Here we show a simple and effective cross-linking method to prepare a high performance cross-linked sulfonated poly(arylene ether sulfone) (C-SPAES) membrane using bishydroxy perfluoropolyether (PFPE) as a cross-linker for fuel cell applications. The C-SPAES membrane shows much improved physicochemical stability due to the cross-linked structure and reasonably high proton conductivity compared to the non-cross-linked SPAES membrane due to the incorporation of flexible PFPE and the effective phase-separated morphology between the hydrocarbon and perfluorinated moieties forming well-connected networks. Under intermediate-temperature and low humidity conditions (90 °C, 50% RH, and 150 kPa), the membrane electrode assembly employing the C-SPAES membrane reveals an outstanding cell performance (1.17 W cm at 0.65 V) ascribed to its reasonably high proton conductivity and enhanced interfacial compatibility between the perfluorinated moieties in the electrode and C-SPAES membrane. Furthermore, a hydration-dehydration cycling test result at 90 °C reveals that the C-SPAES membrane has notable durability against rigorous operating conditions.

摘要

在这里,我们展示了一种简单有效的交联方法,使用双羟基全氟聚醚 (PFPE) 作为交联剂,制备了一种用于燃料电池应用的高性能交联磺化聚芳醚砜 (C-SPAES) 膜。与非交联 SPAES 膜相比,C-SPAES 膜由于交联结构,显示出更好的物理化学稳定性,同时由于引入了柔性 PFPE 和烃基与全氟化物部分之间的有效相分离形态,形成了良好连接的网络,因此质子电导率也得到了提高。在中温和低湿度条件下(90°C,50%RH 和 150kPa),采用 C-SPAES 膜的膜电极组件表现出出色的电池性能(在 0.65V 时为 1.17W cm),这归因于其较高的质子电导率和增强了电极和 C-SPAES 膜中全氟化物部分之间的界面相容性。此外,在 90°C 下进行的水合-脱水循环测试结果表明,C-SPAES 膜具有耐苛刻操作条件的显著耐久性。

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