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Pre-removal of polybenzimidazole anion to improve flexibility of grafted quaternized side chains for high performance anion exchange membranes

机译:预去除聚苯并咪唑阴离子以改善用于高性能阴离子交换膜的接枝季铵化侧链的柔韧性

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Quatemized polybenzimidazole anion exchange membranes exhibit excellent stability, however, always suffer from poor hydroxide conductivity as compared with other polymer categories. In this work, it is found that polybenzimidazole anion transition state, though essential to provide grafting sites, has strong ionic interaction with the conventional quaternary ammonium cations containing grafting reagents. A novel grafting strategy is proposed to pre-remove polybenzimidazole anions by fully grafting of non-cationic ether-containing side chains, and then attaches quaternary ammonium cations to the end of pendent side chains. Further investigations with molecular dynamics simulation, TEM and SAXS indicate that by eliminating cation-anion binding, the flexible pendent quaternized cations exhibit excellent ability to aggregate into ionic clusters and transport hydroxide ions. The trimethylammonium grafting membrane shows conductivity of about 82.4 mS cm(-1) at 80 degrees C, around 6-fold that of the conventional grafted membranes. Grafting with alkaline stable piperidinium, 93.2% conductivity retention is achieved even soaking in 2 M KOH at 60 degrees C for 720 h. The H-2/O-2 single cell shows high peak power density of about 806.1 mW cm(-2) at large current density of about 2025.0 mA cm(-2), which is the highest value among the polybenzimidazole membranes reported in recent years.
机译:定量化的聚苯并咪唑阴离子交换膜表现出极好的稳定性,但是与其他聚合物类别相比,氢氧化物的导电性始终很差。在这项工作中,发现聚苯并咪唑阴离子过渡态虽然对提供接枝位点必不可少,但它与包含接枝剂的常规季铵阳离子具有很强的离子相互作用。提出了一种新的接枝策略,通过完全接枝非阳离子醚侧链预去除聚苯并咪唑阴离子,然后将季铵阳离子连接到侧链末端。通过分子动力学模拟,TEM和SAXS进行的进一步研究表明,通过消除阳离子与阴离子的键合,柔性侧基季铵化阳离子具有出色的聚集成离子簇和运输氢氧离子的能力。三甲基铵接枝膜在80摄氏度时的电导率约为82.4 mS cm(-1),约为传统接枝膜的6倍。即使在60°C的2 M KOH中浸泡720 h,也可以用碱性稳定的哌啶接枝,获得93.2%的导电性。 H-2 / O-2单电池在约2025.0 mA cm(-2)的大电流密度下显示出约806.1 mW cm(-2)的高峰值功率密度,这是最近报道的聚苯并咪唑膜中的最高值年份。

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