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Crosslinked wholly aromatic polyether membranes based on quinoline derivatives and their application in high temperature polymer electrolyte membrane fuel cells

机译:基于喹啉衍生物的交联全芳族聚醚膜及其在高温高分子电解质膜燃料电池中的应用

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摘要

An AB type difunctional quinoline based monomer bearing a pentafluorophenyl unit combined with a phenol functionality is being synthesized and homopolymerized to create linear aromatic polyethers as polymer electrolytes for HT-PEM FCs applications. Several conditions are tested for the optimized synthesis of the monomer and homopolymer. Additionally, covalent crosslinking through aromatic polyether bond formation enables the creation of wholly aromatic crosslinked polymeric electrolyte membranes. More specifically, the perfluorophenyl units are crosslinked with other hydroxyl end functionalized moieties, providing membranes with enhanced chemical and mechanical properties that are moreover easily doped with phosphoric acid even at ambient temperatures. All membranes are evaluated for their structural and thermal characteristics and their doping ability with phosphoric acid. Selected crosslinked membranes are further tested in terms of their single cell performance at the temperature range 160 degrees C-200 degrees C showing promising performance and high conductivity values even up to 0.2 S cm(-1) in some cases.
机译:带有五氟苯基单元与苯酚官能团结合的AB型双官能喹啉基单体正在合成和均聚,以生成线性芳族聚醚,作为用于HT-PEM FCs应用的聚合物电解质。测试了几种条件以优化单体和均聚物的合成。另外,通过芳族聚醚键形成的共价交联使得能够形成全芳族交联的聚合物电解质膜。更具体地,全氟苯基单元与其他羟基末端官能化的部分交联,从而提供具有增强的化学和机械性能的膜,并且甚至在环境温度下也容易用磷酸掺杂膜。对所有膜的结构和热特性以及其对磷酸的掺杂能力进行评估。选定的交联膜在160摄氏度至200摄氏度的温度范围内的单电池性能方面得到了进一步测试,显示出令人鼓舞的性能以及在某些情况下甚至高达0.2 S cm(-1)的高电导率值。

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