Son Tae Yang, Kim Tae-Hyun, Nam Sang Yong
Department of Materials Engineering and Convergence Technology, Engineering Research Institute, Gyeongsang National University, Jinju 52828, Korea.
Oragnic Material Synthesis Laboratory, Department of Chemistry, Incheon National University, Incheon 22012, Korea.
Polymers (Basel). 2020 Nov 23;12(11):2758. doi: 10.3390/polym12112758.
In this study, novel crosslinked pore-filling membranes were fabricated by using a centrifugal force from the cylindrical centrifugal machine. For preparing these crosslinked pore-filling membranes, the poly(phenylene oxide) containing long side chains to improve the water management (hydrophilic), porous polyethylene support (hydrophobic) and crosslinker based on the diamine were used. The resulting membranes showed a uniform thickness, flexible and transparent because it is well filled. Among them, PF-XAc-PPO70_25 showed good mechanical properties (56.1 MPa of tensile strength and 781.0 MPa of Young's modulus) and dimensional stability due to the support. In addition, it has a high hydroxide conductivity (87.1 mS/cm at 80 °C) and low area specific resistance (0.040 Ω·cm), at the same time showing stable alkaline stability. These data outperformed the commercial FAA-3-50 membrane sold by Fumatech in Germany. Based on the optimized properties, membrane electrode assembly using XAc-PPO70_25 revealed excellent cell performance (maximum power density: 239 mW/cm at 0.49 V) than those of commercial FAA-3-50 Fumatech anion exchange membrane (maximum power density: 212 mW/cm at 0.54 V) under the operating condition of 60 °C and 100% RH as well. It was expected that PF-XAc-PPO70_25 could be an excellent candidate based on the results superior to those of commercial membranes in these essential characteristics of fuel cells.
在本研究中,利用圆筒离心机产生的离心力制备了新型交联孔填充膜。为了制备这些交联孔填充膜,使用了含有长侧链以改善水管理(亲水性)的聚(苯醚)、多孔聚乙烯支撑体(疏水性)和基于二胺的交联剂。所得膜厚度均匀、柔韧性好且透明,因为其填充良好。其中,PF-XAc-PPO70_25由于支撑体的作用,表现出良好的机械性能(拉伸强度为56.1MPa,杨氏模量为781.0MPa)和尺寸稳定性。此外,它具有高氢氧化物电导率(80℃时为87.1mS/cm)和低面积比电阻(0.040Ω·cm),同时显示出稳定的碱性稳定性。这些数据优于德国Fumatech公司销售的商业FAA-3-50膜。基于优化后的性能,使用XAc-PPO70_25的膜电极组件在60℃和100%RH的运行条件下,比商业Fumatech阴离子交换膜FAA-3-50(最大功率密度:0.54V时为212mW/cm²)表现出更优异的电池性能(最大功率密度:0.49V时为239mW/cm²)。基于在燃料电池这些关键特性方面优于商业膜的结果,预计PF-XAc-PPO70_25可能是一个优秀的候选材料。