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Quaternized Polysulfone Cross-Linked NN-Dimethyl Chitosan-Based Anion-Conducting Membranes

机译:季铵化聚砜交联的NN-二甲基壳聚糖基阴离子导电膜

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摘要

Anion-conducting membranes were obtained following the cross-linking of 1,4-diazoniabicycle[2.2.2]octane functionalized-polysulfone with N,N-dimethyl chitosan (DMC). The ionic conductivity of the composite membranes was controlled by the amount of DMC. The influence of the amount of DMC on water uptake, swelling ratio, and ionic conductivity of the obtained membrane was studied. The membrane with 2 wt% DMC exhibited an ionic conductivity of 54 mS/cm and 94 mS/cm at 25 °C and 70 °C, respectively. The membrane showed good dimensional stability under hydrated conditions. A urea/O2 fuel cell, built using the composite membrane, exhibited a peak power density of 4.4 mW/cm2 with a current density of 16.22 mA/cm2 at 70 °C.
机译:1,4-二氮杂二环[2.2.2]辛烷官能化聚砜与N,N-二甲基壳聚糖(DMC)交联后,获得了阴离子导电膜。复合膜的离子电导率由DMC的量控制。研究了DMC的量对所得膜的吸水率,溶胀率和离子电导率的影响。具有2 wt%DMC的膜在25°C和70°C下的离子电导率分别为54 mS / cm和94 mS / cm。该膜在水合条件下显示出良好的尺寸稳定性。使用复合膜构建的尿素/氧气燃料电池在70°C时的峰值功率密度为4.4 mW / cm 2 ,电流密度为16.22 mA / cm 2 ℃。

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