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Synthesis and properties of novel proton exchange membranes based on sulfonated polyethersulfone and N-phthaloyl chitosan blends for DMFC applications

机译:基于磺化聚醚砜和N-邻苯二甲酰壳聚糖共混物的新型质子交换膜的合成及性能

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Chitosan is modified by phthaloylation using an excess of phthalic anhydride at 130 degrees C and blended with the sulfonated polyethersulfone (SPES) to produce composite blend membranes. In particular the introduction of the phthaloyl group into the chitosan matrix increases its solubility in organic solvent, film formability, flexibility, low methanol permeability and with suitable ion conductivity. SPES and N-phthaloyl chitosan (NPHCs) blend membranes with various compositions were prepared and detailed investigation on water uptake, proton conductivity and methanol permeability has been conducted for its suitability in fuel cell environments. Methanol permeability studies envisaged that NPHCs blend membranes are impervious to methanol. The thermograms display the good thermal stabilities of blend membranes than Nafion-117. Relatively high selectivity parameter values of these membranes indicated their greater advantages over Nafion-117 membrane for targeting on fuel cell applications, especially in direct methanol fuel cell (DMFC) environments. (C) 2015 Elsevier Ltd. All rights reserved.
机译:壳聚糖通过在130摄氏度下使用过量的邻苯二甲酸酐进行邻苯二甲酰化进行改性,并与磺化聚醚砜(SPES)混合以生产复合共混膜。特别地,将邻苯二甲酰基引入壳聚糖基质中增加了其在有机溶剂中的溶解度,成膜性,柔韧性,低甲醇渗透性以及合适的离子电导率。制备了具有不同组成的SPES和N-邻苯二甲酰壳聚糖(NPHCs)共混膜,并针对其在燃料电池环境中的适用性对吸水率,质子传导率和甲醇渗透性进行了详细研究。甲醇渗透性研究认为,NPHCs共混膜不能透过甲醇。与Nafion-117相比,热谱图显示出混合膜的良好热稳定性。这些膜的相对较高的选择性参数值表明,与Nafion-117膜相比,它们具有更大的优势,可用于燃料电池,特别是在直接甲醇燃料电池(DMFC)环境中。 (C)2015 Elsevier Ltd.保留所有权利。

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