Ian Wark Research Institute, University of South Australia, Mawson Lakes, South Australia, Australia.
ACS Appl Mater Interfaces. 2009 Jun;1(6):1173-82. doi: 10.1021/am900020w.
A new type of supported liquid membrane was made by combining an ionic liquid (IL) with a Nafion membrane reinforced with multifunctional polyhedral oligomeric silsesquioxanes (POSSs) using a layer-by-layer strategy for anhydrous proton-exchange membrane (PEM) application. The POSS was functionalized by direct sulfonation, and the sulfonated POSS (S-POSS) was incorporated into Nafion 117 membranes by the infiltration method. The resultant hybrid membrane shows strong ionic interaction between the Nafion matrix and the multifunctional POSS, resulting in increased glass transition temperature and thermal stability at very low loadings of S-POSS (1%). The presence of S-POSS has also improved the proton conductivity especially at low humidities, where it shows a marked increase due to its confinement in the ionic domains and promotes water uptake by capillary condensation. In order to achieve anhydrous conductivity, the IL 1-butyl-3-methylimidazolium bis(trifluoromethylsulfonyl)imide (BMI-BTSI) was incorporated into these membranes to provide proton conduction in the absence of water. Although the incorporation of an IL shows a plasticizing effect on the Nafion membrane, the S-POSS composite membrane with an IL shows a higher modulus at high temperatures compared to Nafion 117 and a Nafion-IL membrane, with significantly higher proton conductivity (5 mS/cm at 150 degrees C with 20% IL). This shows the ability of the multifunctional POSS and IL to work symbiotically to achieve the desirable proton conductivity and mechanical properties of such membranes by enhancing the ionic interaction within the material.
一种新型支撑液膜是通过将离子液体 (IL) 与一种多官能多面体低聚倍半硅氧烷 (POSS) 增强的 Nafion 膜结合使用层层策略制备的,用于无水质子交换膜 (PEM) 应用。POSS 通过直接磺化官能化,磺化 POSS (S-POSS) 通过渗透法掺入 Nafion 117 膜中。所得的混合膜在非常低的 S-POSS 负载(1%)下显示出 Nafion 基质与多功能 POSS 之间的强离子相互作用,导致玻璃化转变温度和热稳定性增加。S-POSS 的存在还提高了质子电导率,特别是在低湿度下,由于其在离子域中的限制和促进毛细冷凝吸水,电导率显著增加。为了实现无水电导率,将离子液体 1-丁基-3-甲基咪唑双(三氟甲基磺酰基)亚胺 (BMI-BTSI) 掺入这些膜中,以在没有水的情况下提供质子传导。尽管 IL 的掺入对 Nafion 膜具有增塑作用,但具有 IL 的 S-POSS 复合膜在高温下表现出比 Nafion 117 和 Nafion-IL 膜更高的模量,具有显著更高的质子电导率(在 150°C 下具有 20% IL 时为 5 mS/cm)。这表明多功能 POSS 和 IL 能够协同工作,通过增强材料内的离子相互作用,实现这些膜所需的质子电导率和机械性能。