Feng Kuirong, Zhao Pengyun, Meng Lingxin, Li Na, Chen Fenglong, Wang Jiayin, Xu Jingmei
School of Chemical Engineering, Changchun University of Technology, Changchun 130012, China.
Advanced Institute of Materials Science, Changchun University of Technology, Changchun 130012, China.
ACS Appl Mater Interfaces. 2024 Jul 3;16(26):34156-34166. doi: 10.1021/acsami.4c06985. Epub 2024 Jun 20.
In this paper, we successfully synthesize phosphoric acid functionalized graphene oxide (PGO) based on acid modification of graphene oxide. The composite membrane is further prepared by adding PGO into sulfonated poly(aryl ether ketone sulfone) containing carboxyl groups matrix (C-SPAEKS). The PGO as well as the composite membranes were characterized by a series of tests. The prepared composite proton exchange membranes (PEMs) have good mechanical and electrochemical properties. Compared to the C-SPAEKS membrane, the best composite membrane has a tensile strength of 40.7 MPa while exhibiting superior proton conductivity (110.17 mS cm at 80 °C). In addition, the open-circuit voltage and power density of C-SPAEKS@1% PGO are 0.918 V and 792.17 mW cm, respectively. Compared with C-SPAEKS (0.867 V and 166 mW cm), it can be seen that our work has a certain effect on the improvement of the single cell performance. The above results demonstrate that the functionalized graphene oxide has greatly improved the electrochemical performance and even the overall performance of PEMs.
在本文中,我们基于氧化石墨烯的酸改性成功合成了磷酸功能化氧化石墨烯(PGO)。通过将PGO添加到含羧基的磺化聚芳醚酮砜(C-SPAEKS)基体中来进一步制备复合膜。通过一系列测试对PGO以及复合膜进行了表征。所制备的复合质子交换膜(PEMs)具有良好的机械性能和电化学性能。与C-SPAEKS膜相比,最佳复合膜的拉伸强度为40.7MPa,同时在80℃时表现出优异的质子传导率(110.17mS/cm)。此外,C-SPAEKS@1%PGO的开路电压和功率密度分别为0.918V和792.17mW/cm²。与C-SPAEKS(0.867V和166mW/cm²)相比,可以看出我们的工作对单电池性能的提升有一定效果。上述结果表明,功能化氧化石墨烯极大地改善了质子交换膜的电化学性能乃至整体性能。