Jang Hohyoun, Hossain Md Awlad, Lee Soonho, Ha Jaesung, Yoo Jihoo, Kim Kyungchul, Kim Whangi
J Nanosci Nanotechnol. 2015 Nov;15(11):8842-8. doi: 10.1166/jnn.2015.11539.
A novel anion exchange membrane of imidazolium functionalized bisphenol polycarbonate was prepared for application in alkaline fuel cell. Di-imidazolium polycarbonate anionic membrane was synthesized by sequential interfacial polymerization, chloromethylation, substitution with 1-methylimidazole and ion exchange with 1.0 M KOH. Chloromethylation reaction was quantitative to achieve a high content of hydroxide ions. Introduction of conjugated imidazole ring in polymer plays an important role to improve both thermal and chemical stability. Bisphenol polycarbonate is a flexible polymer and shows a good solubility in polar organic solvent. The alkaline imidazolium bisphenol polycarbonate rendered an elevated molecular weight with excellent solubility in polar aprotic solvent. Different levels of substitution and ion exchange were investigated; the resulting membranes showed high ion exchange capacities (IECs) of up to 2.15 mmol g(-1). The imidazolium-functionalized copolymer membranes showed lower water affinity (14.2-42.8% at 30 degrees C) that satisfied an essential criterion for fuel cell application. The chemical structure of the imidazolium functionalized polycarbonate membrane was confirmed by 1H NMR spectroscopy, and also the membrane properties were evaluated by thermogravimetric analysis (TGA) and water uptake (WU), IEC and conductivity assessment. They exhibited hydroxide conductivity above 10(-2) S cm(-1) at room temperature and good chemical stability for up to five days without significant losses of ion conductivity.
制备了一种用于碱性燃料电池的新型咪唑功能化双酚聚碳酸酯阴离子交换膜。通过顺序界面聚合、氯甲基化、用1-甲基咪唑取代以及与1.0 M KOH进行离子交换,合成了双咪唑聚碳酸酯阴离子膜。氯甲基化反应定量进行,以实现高含量的氢氧根离子。聚合物中引入共轭咪唑环对提高热稳定性和化学稳定性都起着重要作用。双酚聚碳酸酯是一种柔性聚合物,在极性有机溶剂中表现出良好的溶解性。碱性咪唑双酚聚碳酸酯的分子量有所提高,在极性非质子溶剂中具有优异的溶解性。研究了不同程度的取代和离子交换;所得膜显示出高达2.15 mmol g(-1)的高离子交换容量(IEC)。咪唑功能化共聚物膜表现出较低的水亲和力(30℃时为14.2 - 42.8%),满足了燃料电池应用的一个基本标准。通过1H NMR光谱确认了咪唑功能化聚碳酸酯膜的化学结构,还通过热重分析(TGA)、吸水率(WU)、IEC和电导率评估对膜性能进行了评价。它们在室温下表现出高于10(-2) S cm(-1)的氢氧根电导率,并且具有良好的化学稳定性,长达五天离子电导率无明显损失。