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首页> 外文期刊>Bulletin of the American Physical Society >APS -APS March Meeting 2017 - Event - Effects of Cationic Pendant Groups on Ionic Conductivity for Anion Exchange Membranes: Structure?Conductivity Relationships
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APS -APS March Meeting 2017 - Event - Effects of Cationic Pendant Groups on Ionic Conductivity for Anion Exchange Membranes: Structure?Conductivity Relationships

机译:APS -APS 2017年3月会议-活动-阳离子侧基对阴离子交换膜离子电导率的影响:结构-电导率关系

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Anion exchange membranes(AEMs) have been widely studied due to their various applications, especially for Fuel cells. Previous proton exchange membranes(PEMs), such as Nafions? have better conductivity than AEMs so far. However, technical limitations such as slow electrode kinetics, carbon monoxide (CO) poisoning of metal catalysts, high methanol crossover and high cost of Pt-based catalyst detered further usages. AEMs have advantages to supplement its drawbacks. AEMs are environmentally friendly and cost-efficient. Based on the well-defined block copolymer, self-assembled morphology is expected to have some relationship with its ionic conductivity. Recently AEMs based on various cations, including ammonium, phosphonium, guanidinium, imidazolium, metal cation, and benzimidazolium cations have been developed and extensively studied with the aim to prepare high- performance AEMs. But more fundamental approach, such as relationships between nanostructure and conductivity is needed. We use well-defined block copolymer Poly(styrene-block-isoprene) as a backbone which is synthesized by anionic polymerization. Then we graft various cationic functional groups and analysis the relation between morphology and conductivity.
机译:阴离子交换膜(AEMs)由于其各种应用而被广泛研究,尤其是对于燃料电池。以前的质子交换膜(PEM),例如Nafions?到目前为止,其导电性优于AEM。然而,诸如电极动力学慢,金属催化剂的一氧化碳(CO)中毒,高甲醇穿越和Pt基催化剂的高成本等技术限制阻碍了进一步的使用。 AEM具有弥补其缺点的优势。 AEM环保且具有成本效益。基于良好定义的嵌段共聚物,预期自组装形态与其离子电导率有一定关系。最近,已经开发并广泛研究了基于各种阳离子的AEM,包括铵,phospho,胍,咪唑鎓,金属阳离子和苯并咪唑鎓阳离子,以制备高性能AEM。但是需要更基本的方法,例如纳米结构和电导率之间的关系。我们使用定义明确的嵌段共聚物聚(苯乙烯-嵌段-异戊二烯)作为骨架,通过阴离子聚合合成。然后,我们接枝了各种阳离子官能团,并分析了形态与电导率之间的关系。

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