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Methods of Hydroxide-Ion Form Anion Exchange Membrane Characterization

机译:氢氧化物离子形式阴离子交换膜特征方法

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Alkaline fuel cells (AFCs) are of high interest because they utilize lower cost catalyst and separator materials relative to polymer electrolyte membrane fuel cells. AFCs require anion exchange membranes (AEMs) that have high alkaline durability and high hydroxide ion conductivity. Herein, numerous AEMs from top research groups in the field are evaluated and compared as hydroxide conducting solid state electrolytes. While the hydroxide-anion form of AEMs is the most relevant anion form for alkaline fuel cell and electrolysis applications, it remains difficult to evaluate hydroxide form membranes as they quickly convert to carbonate- and bicarbonate-anion forms upon exposure to air. NREL has developed protocols to allow for high throughput, parallel characterization of AEM materials in hydroxide-anion form. This work assesses six optimized membranes with varied backbone chemical structures: perfluoro (PF), poly(aryl ether sulfone) (PAES), polyethylene (PE), polyfluorene (PFN), polystyrene (PS), polyphenylene (PPN). Methods are established for evaluating true hydroxide-ion properties of these AEMs at varying temperature and relative humidity, including conductivity, durability, and water uptake. Standardized comparisons of the top performing hydroxide conducting AEMs of different backbone types provides valuable insight into optimal chemistries for achieving high conductivity and durability.
机译:碱性燃料电池(AFC)具有高兴趣,因为它们利用较低的成本催化剂和分离器材料相对于聚合物电解质膜燃料电池。 AFC需要具有高碱性耐久性和高氢氧离子电导率的阴离子交换膜(AEM)。这里,评估来自现场顶部研究组的许多审查,并与氢氧化物进行固态电解质进行比较。虽然氢氧化物形式的AEMS是碱性燃料电池和电解应用最相关的阴离子形式,但仍然难以评估氢氧化物形成膜,因为它们在暴露于空气时迅速转化为碳酸盐和碳酸氢盐 - 阴离子。 NREL开发了允许高通量,并行表征氢氧化物阴离子形式的高通量,并联。这项工作评估了六种优化的膜,具有各种骨干化学结构:全氟(PF),聚(芳基醚砜)(PAES),聚乙烯(PE),聚芴(PFN),聚苯乙烯(PS),聚苯(PPN)。建立用于在不同温度和相对湿度下评估这些AEM的真正氢氧离子性质的方法,包括电导率,耐久性和水吸收。表演氢氧化物的顶部的标准化比较不同骨架类型的耳动,可以对实现高导电性和耐用性的最佳化学来提供有价值的洞察力。

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