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Using silica nanoparticles for modifying sulfonated poly(phthalazinone ether ketone) membrane for direct methanol fuel cell : A significant improvement on cell performance

机译:使用二氧化硅纳米粒子修饰直接甲醇燃料电池的磺化聚酞嗪酮醚酮膜:电池性能的显着改善

摘要

Sulfonated poly(phthalazinone ether ketone) (sPPEK) with a degree of sulfonation of 1.23 was mixed with silica nanoparticles to form hybrid materials for using as proton exchange membranes. The nanoparticles were found homogeneously dispersed in the polymer matrix and a high 30 phr (parts per hundred resin) loading of silica nanoparticles can be achieved. The hybrid membranes exhibited improved swelling behavior, thermal stability, and mechanical properties. The methanol crossover behavior of the membrane was also depressed such that these membranes are suitable for a high methanol concentration in feed (3 M) in cell test. The membrane with 5 phr silica nanoparticles showed an open cell potential of 0.6V and an optimum power density of 52.9mWcmu22122 at a current density of 264.6mAcmu22122, which is better than the performance of the pristine sPPEK membrane and Nafionuae 117.
机译:将具有1.23的磺化度的磺化聚(酞嗪酮醚酮)(sPPEK)与二氧化硅纳米粒子混合以形成用作质子交换膜的杂化材料。发现纳米颗粒均匀地分散在聚合物基质中,并且可以实现高30 phr(每百份树脂的份数)的二氧化硅纳米颗粒负载量。杂化膜表现出改善的溶胀性能,热稳定性和机械性能。膜的甲醇穿越行为也被抑制,以使这些膜适合于细胞测试中进料中高甲醇浓度(3 M)。具有5 phr二氧化硅纳米粒子的膜在电流密度为264.6mAcm u22122时显示出0.6V的开孔电势和52.9mWcm u22122的最佳功率密度,优于原始的sPPEK膜和Nafion uae的性能。 117。

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