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首页> 外文期刊>Polymers >Design and Synthesis of Cross-Linked Copolymer Membranes Based on Poly(benzoxazine) and Polybenzimidazole and Their Application to an Electrolyte Membrane for a High-Temperature PEM Fuel Cell
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Design and Synthesis of Cross-Linked Copolymer Membranes Based on Poly(benzoxazine) and Polybenzimidazole and Their Application to an Electrolyte Membrane for a High-Temperature PEM Fuel Cell

机译:基于聚苯并恶嗪和聚苯并咪唑的交联共聚物膜的设计,合成及其在高温PEM燃料电池电解质膜中的应用

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Elevated-temperature (100~200 °C) polymer electrolyte membrane (PEM) fuel cells have many features, such as their high efficiency and simple system design, that make them ideal for residential micro-combined heat and power systems and as a power source for fuel cell electric vehicles. A proton-conducting solid-electrolyte membrane having high conductivity and durability at elevated temperatures is essential, and phosphoric-acid-containing polymeric material synthesized from cross-linked polybenzoxazine has demonstrated feasible characteristics. This paper reviews the design rules, synthesis schemes, and characteristics of this unique polymeric material. Additionally, a membrane electrode assembly (MEA) utilizing this polymer membrane is evaluated in terms of its power density and lifecycle by an in situ accelerated lifetime test. This paper also covers an in-depth discussion ranging from the polymer material design to the cell performance in consideration of commercialization requirements.
机译:高温(100〜200°C)聚合物电解质膜(PEM)燃料电池具有许多功能,例如效率高,系统设计简单等,使其非常适合用于住宅微型热电联产系统和作为电源用于燃料电池电动汽车。至关重要的是在高温下具有高电导率和耐久性的质子传导固体电解质膜,由交联的聚苯并恶嗪合成的含磷酸的高分子材料已显示出可行的特性。本文回顾了这种独特的聚合物材料的设计规则,合成方案和特性。另外,利用这种聚合物膜的膜电极组件(MEA)通过原位加速寿命测试就其功率密度和寿命进行了评估。本文还考虑了商业化要求,涵盖了从高分子材料设计到电池性能的深入讨论。

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