Ma Zhuang, Niu Jianchun, Zhang Shuomeng, Zhang Jialin, Lu Shanfu, He Qinggang
College of Chemical and Biological Engineering, Zhejiang University, Hangzhou, Zhejiang, 310027, China.
Beijing Key Laboratory of Bioinspired Energy Materials and Devices, School of Energy and Power Engineering, Beihang University, Beijing, 100191, China.
Chem Asian J. 2024 Nov 18;19(22):e202400662. doi: 10.1002/asia.202400662. Epub 2024 Oct 29.
The design and development of new and efficient catalyst binder materials are important for improving cell performance in high-temperature proton-exchange membrane fuel cells (HT-PEMFCs). In this study, a series of tetrafluorophenyl phosphonic acid-based binder materials (PF-y-P, y=1, 0.83, and 0.67) with rigid structures and controllable degrees of phosphonation were prepared and used in HT-PEMFCs using the ultra-strong acid-catalyzed Friedel-Crafts reaction and the combined Michaelis-Arbuzov reaction. The samples exhibited high stability, low water uptake, superior proton conductivity, and cell performance. In addition, the oxygen mass transport properties of the PF-1-P binder were investigated using high-temperature microelectrode electrochemical testing techniques. Compared with the phosphoric acid-doped polybenzimidazole (PBI) binder, the O solubility of PF-1-P binder material increased by 30 % (5.36×10 mol cm) and the PF-1-P binder material exhibited better cell stability in HT-PEMFCs. After 10.5 h of discharge at a constant current of 0.12 A cm, the MEA voltage decreased by 7.1 % and 20.8 % in case of the PF-1-P and PBI binders, respectively.
新型高效催化剂粘结剂材料的设计与开发对于提高高温质子交换膜燃料电池(HT-PEMFCs)的电池性能至关重要。在本研究中,通过超强酸催化的傅克反应和米氏-阿尔布佐夫反应的组合,制备了一系列具有刚性结构和可控磺化度的四氟苯基膦酸基粘结剂材料(PF-y-P,y = 1、0.83和0.67),并将其用于HT-PEMFCs。这些样品表现出高稳定性、低吸水率、优异的质子传导率和电池性能。此外,使用高温微电极电化学测试技术研究了PF-1-P粘结剂的氧传质特性。与磷酸掺杂的聚苯并咪唑(PBI)粘结剂相比,PF-1-P粘结剂材料的O溶解度提高了30%(5.36×10 mol cm),并且PF-1-P粘结剂材料在HT-PEMFCs中表现出更好的电池稳定性。在0.12 A cm的恒定电流下放电10.5 h后,PF-1-P和PBI粘结剂的MEA电压分别下降了7.1%和20.8%。