首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Optimization of the pendant chain length in partially fluorinated aromatic anion exchange membranes for alkaline fuel cells
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Optimization of the pendant chain length in partially fluorinated aromatic anion exchange membranes for alkaline fuel cells

机译:碱性燃料电池部分氟化芳族阴离子交换膜中垂侧链长度的优化

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For robust anion exchange membranes, we have investigated the effect of aliphatic side chains on the properties of partially fluorinated aromatic copolymers (QPAFs) with ammonium groups. A new series of QPAF membranes with various interstitial aliphatic side chain lengths (QPAF-Cx) where x = 2-6 were successfully synthesized. QPAF-C3 with a propylene side chain and ion exchange capacity (IEC = 1.24 meq.g(-1)) showed balanced properties with the highest hydroxide ion conductivity (99 mS cm(-1) at 80 degrees C in water) and relatively low water uptake, based on a well-developed phase separated morphology. Moreover, the QPAF-C3 membrane exhibited excellent alkaline stability to maintain high ion conductivity (98% remaining) and high mechanical properties after 1000 h in 1 M KOH at 80 degrees C. The QPAF-C3 membrane also revealed reasonable stability even in 4 M and 8 M KOH at 80 degrees C. In fuel cell operation, the QPAF-C3 membrane exhibited a higher power density (224 mW cm(-2)) than those of our previous QPAF-C1 (138 mW cm(-2)), QPAF-C1B (167 mW cm(-2)), and Tokuyama A-201 (122 mW cm(-2)) membranes. In the durability test for 62 h, QPAF-C3 maintained 69% of its initial voltage with minor structural degradation.
机译:对于强大的阴离子交换膜,我们研究了脂族侧链对用铵基团的部分氟化芳族共聚物(QPAFS)的性质的影响。一种新的一系列QPAF膜,具有各种间质性脂族侧链长度(QPAF-CX),其中成功地合成了X = 2-6。具有丙烯侧链和离子交换能力的QPAF-C3(IEC = 1.24 Meq.g(-1))显示平衡性能,最高氢氧化离子电导率(99ms cm(-1)水中的水),相对基于良好的相分离形态,低水平。此外,QPAF-C3膜表现出优异的碱性稳定性,以保持高离子电导率(剩余98%)和高机械性能,在80℃下在1M KOH中保持高离子电导率(98%)和高机械性能。QPAF-C3膜也甚至在4米中显示出合理的稳定性在80℃下的8米KOH。在燃料电池操作中,QPAF-C3膜的功率密度高于我们以前的QPAF-C1(138mM(-2))的功率密度(224mm(-2)) ,QPAF-C1B(167 MW cm(-2))和Tokuyama A-201(122mW cm(-2))膜。在62小时的耐久性测试中,QPAF-C3保持其初始电压的69%,具有较小的结构降解。

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