首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Poly(ethylene-co-tetrafluoroethylene)-derived radiation-grafted anion-exchange membrane with properties specifically tailored for application in metal-cation-free alkaline polymer electrolyte fuel cells
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Poly(ethylene-co-tetrafluoroethylene)-derived radiation-grafted anion-exchange membrane with properties specifically tailored for application in metal-cation-free alkaline polymer electrolyte fuel cells

机译:具有专门为在无金属阳离子的碱性聚合物电解质燃料电池中应用而量身定制的性能的,源自聚乙烯(co-tetrafluoroethylene)的辐射接枝阴离子交换膜

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摘要

A new class of stable poly(ethylene-co-tetrafluoroethylene)-based alkaline anion-exchange membrane (AAEM) with enhanced tensile strength has been synthesized in response to the poor mechanical properties of previously reported poly(tetrafluoroethylene-co-hexafluoropropylene) radiation-grafted AAEMs; this type of AAEM exhibits significant through-plane conductivities (up to 0.034 +/- 0.004 S cm(-1) at 50 degrees C in water: conductivities that match requirements for application in fuel cells). The methanol permeabilities of this new AAEM class were found to be substantially reduced relative to Nafion-115 proton-exchange membranes; this offers the prospect that thin, low-resistance membranes may be used in direct methanol alkaline fuel cells with reduced methanol crossover. The fuel cell power performances obtained in a H-2/O-2 single fuel cell at 50 degrees C with this AAEM is now within 1 order of magnitude of state-of-the-art Nafion-based fuel cells. It is evident that the alkaline ionomers are not the primary performance limiters of alkaline membrane fuel cells; performances are currently limited by the electrode architectures that have been optimized for use in PEM fuel cells but not alkaline fuel cells. The need for electrodes and catalyst structures that have been specifically tailored for use in AAEM-containing fuel cells is highlighted.
机译:针对先前报道的聚(四氟乙烯-共六氟丙烯)辐射的较差的机械性能,已经合成了一种新型的稳定的,具有增强的拉伸强度的稳定的基于聚(乙烯-四氟乙烯)的碱性阴离子交换膜(AAEM)。嫁接的AAEMs;这种类型的AAEM表现出显着的贯穿平面电导率(在50摄氏度的水中达到0.034 +/- 0.004 S cm(-1):与燃料电池中的应用要求相匹配的电导率)。发现相对于Nafion-115质子交换膜,这种新的AAEM类的甲醇渗透率显着降低。这提供了一种前景,即薄的低电阻膜可用于直接甲醇碱性燃料电池中,减少甲醇的穿越。现在,使用AAEM在H-2 / O-2单燃料电池中在50摄氏度下获得的燃料电池功率性能在基于Nafion的最新燃料电池的1个数量级内。显然,碱性离聚物不是碱性膜燃料电池的主要性能限制剂;目前的性能受到电极结构的限制,该电极结构已针对PEM燃料电池而非碱性燃料电池进行了优化。突出了对专门为含AAEM的燃料电池中使用而定制的电极和催化剂结构的需求。

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