膜
Nafion公司
材料科学
化学工程
电导率
纳米颗粒
质子交换膜燃料电池
纳米复合材料
化学稳定性
纳米技术
化学
电化学
电极
生物化学
工程类
物理化学
作者
Vu Dong Thuc,Vo Dinh Cong Tinh,Dukjoon Kim
标识
DOI:10.1016/j.memsci.2021.119990
摘要
The lab-synthesized ceria (CeO2) nanoparticles were surface-modified to provide proton conductivity. The dopamine sulfonated ceria (CeO2-DS) nanoparticles were embedded into the thin surface layers of Nafion 212 membranes, resulting in the sandwiched structure. The structure, morphology and properties of the synthesized nanoparticles and membranes were analyzed using a variety of methods including TEM, FTIR, DLS, XRD, XPS, TGA, and SEM-EDS. The CeO2-DS nanoparticles exhibited excellent OH• and OOH• radical scavenging effect for enhanced chemical stability, accompanied by a simultaneous improvement of proton conductivity of the membrane. The proton conductivity of the Nafion-CeO2-DS8 membrane was 0.112 ∼ 0.199 S cm-1 from room temperature to 80 °C, which was about 1.5-fold higher than that of pristine Nafion membrane. Nevertheless, the prepared sandwiched structure membrane demonstrated quite high electrical resistance due to the absence of electrically conductive ceria nanoparticles in the thick middle layer. Consequently, not only the durability but also the cell performance of the membrane was significantly enhanced, illustrating the maximum power density of 522 mW cm-2, which was much higher than those of the pristine and single-layer composite membranes, 460 mW cm-2 and 390 mW cm-2, respectively.
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