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Blend membranes consisting of sulfonated poly(ether ether ketone) and polysulfone bearing 4-nitrobenzimidazole for direct methanol fuel cells

机译:用于直接甲醇燃料电池的由磺化聚醚醚酮和带有4-硝基苯并咪唑的聚砜组成的共混膜

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摘要

Low-cost blend membranes consisting of sulfonated poly(ether ether ketone) (SPEEK) (an acidic polymer) and polysulfone-4-nitrobenzimidazole (PSf-NBIm) (a basic polymer) have been prepared with various PSf-NBIm contents (0-5.0 wt %) and characterized by ion-exchange capacity, proton conductivity, and water uptake measurements. The blend membranes with PSf-NBIm contents of 2.5 and 5.0 wt % show higher proton conductivity and lower water uptake in water and methanol/water solutions at a given temperature than plain SPEEK. The blend membranes also exhibit better electrochemical performance and lower methanol crossover in a direct methanol fuel cell than plain SPEEK and Nafion 115 membranes due to an enhancement in proton conductivity through acid-base interactions and an insertion of the benzimidazole side groups into the ionic clusters of SPEEK, as indicated by small-angle X-ray scattering. The maximum power density of the blend membrane with a PSf-NBIm content of 2.5 wt % is 1.5 times higher than that of the Nafion 115 in 1 M methanol solution at 80 C.
机译:制备了由磺化聚醚醚酮(SPEEK)(一种酸性聚合物)和聚砜-4-硝基苯并咪唑(PSf-NBIm)(一种基本聚合物)组成的低成本共混膜,其中PSf-NBIm的含量各不相同(0- 5.0wt%),并以离子交换容量,质子传导性和吸水率测量为特征。与普通的SPEEK相比,在给定温度下,PSf-NBIm含量为2.5和5.0 wt%的共混膜表现出更高的质子传导率和更低的水和甲醇/水溶液中的吸水率。与普通的SPEEK和Nafion 115膜相比,共混膜在直接甲醇燃料电池中还表现出更好的电化学性能和更低的甲醇转化率,这是由于通过酸碱相互作用提高了质子传导性,并且苯并咪唑侧基插入到了离子束中。 SPEEK,如小角度X射线散射所示。 PSf-NBIm含量为2.5 wt%的共混膜的最大功率密度是在80°C的1 M甲醇溶液中的Nafion 115的最大功率密度的1.5倍。

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