Kang Hyeon-Ho, Lee Dong-Hoon
Department of Chemical Engineering, Wonkwang University, 460 Iksandae-ro, Iksan, Jeonbuk 54538, Republic of Korea.
ACS Omega. 2021 Dec 14;6(51):35315-35324. doi: 10.1021/acsomega.1c04205. eCollection 2021 Dec 28.
Polymer electrolyte membranes in which the hydrophilic and hydrophobic domains phase separate exhibit improved properties and stability. Such a phase separation of hydrophilic and hydrophobic domains can be achieved by polymerizing a 9,10-dihydro-9-oxa-10-phosphaphenanthrene 10-oxide-bisphenol A (DOPO-BPA) and 1,4-bis(4-fluorobenzoyl)benzene (1,4-FBB) monomer. In this work, sulfonated polymer membranes with various degrees of sulfonation (DS) were prepared and their physicochemical and electrochemical properties were studied. In addition, the effect of molecular structure on the durability of the copolymers was investigated. The sulfonated copolymers were characterized by Fourier-transform infrared spectroscopy and proton nuclear magnetic resonance spectroscopy. Then, sulfonated membranes were prepared using these copolymers by the solvent casting method, and their morphologies were investigated by atomic force microscopy. The effect of DS on the thermal, mechanical, and oxidative stabilities, water uptake behavior, and ion-exchange capacity of the membranes was determined. The results showed that compared with the commercially available Nafion 212 polymer electrolyte membrane, the electrolyte membrane based on DOPO-BPA and 1,4-FBB exhibited a lower water uptake and excellent dimensional stability despite having a relatively high ion-exchange capacity. The low water uptake is an important characteristic that ensures the stability of the polymer electrolyte membrane in fuel cell applications.
其中亲水和疏水区域发生相分离的聚合物电解质膜表现出改进的性能和稳定性。亲水性和疏水性区域的这种相分离可以通过使9,10-二氢-9-氧杂-10-磷杂菲-10-氧化物-双酚A(DOPO-BPA)和1,4-双(4-氟苯甲酰基)苯(1,4-FBB)单体聚合来实现。在这项工作中,制备了具有不同磺化度(DS)的磺化聚合物膜,并研究了它们的物理化学和电化学性质。此外,还研究了分子结构对共聚物耐久性的影响。通过傅里叶变换红外光谱和质子核磁共振光谱对磺化共聚物进行了表征。然后,使用这些共聚物通过溶剂浇铸法制备磺化膜,并通过原子力显微镜研究其形态。确定了DS对膜的热稳定性、机械稳定性和氧化稳定性、吸水率行为以及离子交换容量的影响。结果表明,与市售的Nafion 212聚合物电解质膜相比,基于DOPO-BPA和1,4-FBB的电解质膜尽管具有相对较高的离子交换容量,但吸水率较低且具有优异的尺寸稳定性。低吸水率是确保聚合物电解质膜在燃料电池应用中稳定性的一个重要特性。