Wu Wanzhen, Yu Di, Luo Yu, Guan Xianfeng, Zhang Shuyu, Ma Guangpeng, Zhou Xinpu, Li Cuicui, Wang Shuang
School of Chemical Engineering, Changchun University of Technology, Changchun 130012, People's Republic of China.
School of Chemical Engineering, Changchun University of Technology, Changchun 130012, People's Republic of China; Advanced Institute of Materials Science, Changchun University of Technology, Changchun 130012, People's Republic of China.
J Colloid Interface Sci. 2024 Dec;675:689-699. doi: 10.1016/j.jcis.2024.06.195. Epub 2024 Jun 30.
A series of membrane materials suitable for high-temperature proton exchange membranes (HT-PEM) were successfully prepared by introducing polymeric ionic liquids (PILs) containing quaternary ammonium groups into ether-bonded polybenzimidazole (OPBI). The structure of the cross-linked membrane has a strong interaction with phosphoric acid (PA), which enhances proton transport and PA retention. To ensure better overall performance of the cross-linked membrane, the optimal PIL content is 30 wt% (OPBI-PIL-30 %). The PA uptake of OPBI-PIL-30 % membrane was 323.24 %, and the proton conductivity at 180 ℃ was 113.94 mS cm, which was much higher than that of OPBI membrane. It is noteworthy that the PA retention of OPBI-PIL-30 % membrane could reach 71.38 % after 240 h of testing under the harsh environment of 80 ℃/40 % RH. The membrane showed better acid retention capacity of 86.89 % at 160 ℃ under anhydrous environment. The OPBI-PIL-20 % membrane achieved the maximum power density of 436.19 mW cm, attributed to its favorable mechanical characteristics and proton conductivity. By these excellent properties, it is shown that OPBI-PIL-X membranes containing quaternary ammonium groups have the potential to be applied in high temperature proton exchange membrane fuel cells (HT-PEMFCs).
通过将含季铵基团的聚合离子液体(PILs)引入醚键连接的聚苯并咪唑(OPBI)中,成功制备了一系列适用于高温质子交换膜(HT-PEM)的膜材料。交联膜的结构与磷酸(PA)有很强的相互作用,这增强了质子传输和PA保留。为确保交联膜具有更好的整体性能,最佳PIL含量为30 wt%(OPBI-PIL-30%)。OPBI-PIL-30%膜的PA吸收量为323.24%,180℃时的质子传导率为113.94 mS/cm,远高于OPBI膜。值得注意的是,在80℃/40%RH的恶劣环境下测试240小时后,OPBI-PIL-30%膜的PA保留率可达71.38%。在无水环境下,该膜在160℃时显示出86.89%的更好的酸保留能力。OPBI-PIL-20%膜实现了436.19 mW/cm的最大功率密度,这归因于其良好的机械特性和质子传导率。通过这些优异性能表明,含季铵基团的OPBI-PIL-X膜有潜力应用于高温质子交换膜燃料电池(HT-PEMFCs)。