Gao Chunmei, Hu Meishao, Wang Li, Wang Lei
College of Chemistry and Environmental Engineering, Shenzhen University, Shenzhen 518060, China.
Shenzhen Key Laboratory of Polymer Science and Technology, College of Materials Science and Engineering, Shenzhen University, Shenzhen 518060, China.
Polymers (Basel). 2020 Feb 27;12(3):515. doi: 10.3390/polym12030515.
Highly phosphoric-acid (PA)-doped polybenzimidazole (PBI) membranes exhibit good proton conductivity at high temperatures; however, they suffer from reduced mechanical properties and loss of PA molecules due to the plasticity of PA and the weak interactions between PA and benzimidazoles, especially with the absorption of water. In this work, a series of PBIs with hyperbranched cross-linkers decorated with imidazolium groups (ImOPBI-x, where x is the weight ratio of the hyperbranched cross-linker) as high-temperature proton exchange membranes are designed and synthesized for the first time. We observe how the hyperbranched cross-linkers can endow the membranes with improved oxidative stability and acceptable mechanical performance, and imidazolium groups with strong basicity can stabilize the PA molecules by delocalization and hydrogen bond formation to endow the membranes with an enhanced proton conductivity and a decreased loss of PA molecules. We measured a high proton conductivity of the ImOPBI-x membranes, ranging from 0.058 to 0.089 S cm at 160 °C. In addition, all the ImOPBI-x membranes displayed good mechanical and oxidative properties. At 160 °C, a fuel cell based on the ImOPBI-5 membrane showed a power density of 638 mW cm and good durability under a hydrogen/oxygen atmosphere, indicating its promising use in anhydrous proton exchange membrane applications.
高磷酸(PA)掺杂的聚苯并咪唑(PBI)膜在高温下表现出良好的质子传导性;然而,由于PA的可塑性以及PA与苯并咪唑之间的弱相互作用,特别是在吸水情况下,它们的机械性能会降低且PA分子会流失。在这项工作中,首次设计并合成了一系列带有咪唑鎓基团修饰的超支化交联剂的PBI(ImOPBI-x,其中x是超支化交联剂的重量比)作为高温质子交换膜。我们观察到超支化交联剂如何使膜具有改善的氧化稳定性和可接受的机械性能,并且具有强碱性的咪唑鎓基团可以通过离域和氢键形成来稳定PA分子,从而使膜具有增强的质子传导性和减少的PA分子损失。我们测量了ImOPBI-x膜在160℃下的高质子传导率,范围为0.058至0.089 S/cm。此外,所有ImOPBI-x膜都表现出良好的机械和氧化性能。在160℃下,基于ImOPBI-5膜的燃料电池在氢/氧气氛下显示出638 mW/cm²的功率密度和良好的耐久性,表明其在无水质子交换膜应用中具有广阔前景。