Kang Moon-Sung, Kang Yong Soo, Kim Hyoung-Juhn, Han Hak-Soo, Park Jin-Soo
Department of Environmental Engineering, Sangmyung University, 31 Sangmyungdae-gil, Dongnam-gu, Cheonan-si, Chungnam 31066, Republic of Korea.
Department of Energy Engineering, Hanyang University, 1 Haengdang-dong, Seongdong-gu, Seoul 04763, Republic of Korea.
J Nanosci Nanotechnol. 2018 Mar 1;18(3):1657-1664. doi: 10.1166/jnn.2018.14213.
Nanocomposite polymer electrolyte membranes comprising a crosslinked polymer blend of poly(vinyl alcohol)/poly(styrene sulfonic acid-co-maleic acid) (PVA/PSSA-co-MA) and fumed silica nanoparticles were prepared for direct methanol fuel cell (DMFC) applications. Silica nanoparticles could be incorporated well uniformly in the completely miscible system, which can form a three-dimensional network structure to achieve the enhancement of mechanical properties as well as the additional reduction of methanol permeability. The optimized proton conductivities and methanol permeability of the PVA/PSSA-co-MA membrane with silica nanoparticles of 10 wt.% were 0.0482 S cm-1 at room temperature and 5.78 × 10-7 cm2 s-1 at the methanol concentration of 40% (w/w), respectively.
制备了包含聚乙烯醇/苯乙烯磺酸-马来酸共聚物(PVA/PSSA-co-MA)交联聚合物共混物和气相二氧化硅纳米颗粒的纳米复合聚合物电解质膜,用于直接甲醇燃料电池(DMFC)。二氧化硅纳米颗粒能够很好地均匀掺入完全互溶体系中,该体系可形成三维网络结构,以实现机械性能的增强以及甲醇渗透率的进一步降低。含10 wt.% 二氧化硅纳米颗粒的PVA/PSSA-co-MA膜在室温下的优化质子电导率和在甲醇浓度为40%(w/w)时的甲醇渗透率分别为0.0482 S cm-1和5.78×10-7 cm2 s-1。