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基于聚(三联苯异吲哚啉哌啶)共聚物的含偶极交联剂的交联阴离子交换膜。

Cross-Linked Anion-Exchange Membranes with Dipole-Containing Cross-Linkers Based on Poly(terphenyl isatin piperidinium) Copolymers.

作者信息

Tian Lin, Li Junmin, Liu Qiao, Ma Wenli, Wang Fanghui, Zhu Hong, Wang Zhongming

机构信息

State Key Laboratory of Chemical Resource Engineering, Institute of Modern Catalysis, Department of Organic Chemistry, College of Chemistry, Beijing University of Chemical Technology, Beijing 100029, P. R. China.

出版信息

ACS Appl Mater Interfaces. 2022 Aug 31;14(34):39343-39353. doi: 10.1021/acsami.2c08221. Epub 2022 Aug 23.

Abstract

To balance the ionic conductivity and dimensional stability of anion-exchange membranes (AEMs), several cross-linked ether-free poly(terphenyl isatin piperidinium) copolymers were synthesized using 1,2-bis(2-aminoethoxy)ethane as a cross-linker. By introducing an alkyl diamine-based hydrophobic cross-linker as a control, the effects of the dipolar-molecule-containing cross-linker on the comprehensive performance of the membranes were investigated. Cation-dipole interactions between the cations and the hydrophilic ethylene oxide cross-linker enhance the self-assembly capability of the cationic groups. The introduction of the rotatable ethylene oxide cross-linker facilitates the flexibility of the cross-linked networks, thereby promoting hydrophilic/hydrophobic phase separation and inhibiting excessive swelling of the corresponding AEMs simultaneously. The resulting PTPBHIN-O membrane showed a high hydroxide conductivity (151.69 mS cm) and low swelling ratio (10.53%) at 80 °C. Furthermore, owing to the cross-linked structure and ether-free polymer backbone with high alkali resistance, the membranes treated in 3 M NaOH at 80 °C for 1600 h maintained ≥85% of their hydroxide conductivity, indicating excellent alkaline stability. A H/O fuel cell based on the PTPBHIN-O AEM exhibited a maximum power density of 398 mW cm at 515 mA cm.

摘要

为了平衡阴离子交换膜(AEMs)的离子传导率和尺寸稳定性,使用1,2-双(2-氨基乙氧基)乙烷作为交联剂合成了几种无交联醚的聚(三联苯异吲哚啉哌啶)共聚物。通过引入基于烷基二胺的疏水性交联剂作为对照,研究了含偶极分子的交联剂对膜综合性能的影响。阳离子与亲水性环氧乙烷交联剂之间的阳离子-偶极相互作用增强了阳离子基团的自组装能力。可旋转的环氧乙烷交联剂的引入促进了交联网络的柔韧性,从而同时促进了亲水/疏水相分离并抑制了相应AEMs的过度溶胀。所得的PTPBHIN-O膜在80°C下显示出高的氢氧根传导率(151.69 mS/cm)和低的溶胀率(10.53%)。此外,由于交联结构和具有高耐碱性的无醚聚合物主链,在80°C下于3 M NaOH中处理1600 h的膜保持其氢氧根传导率的≥85%,表明具有优异的碱性稳定性。基于PTPBHIN-O AEM的氢/氧燃料电池在515 mA/cm²时表现出398 mW/cm²的最大功率密度。

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