首页> 外文期刊>Journal of power sources >High performance polymer electrolytes based on main and side chain pyridine aromatic polyethers for high and medium temperature proton exchange membrane fuel cells
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High performance polymer electrolytes based on main and side chain pyridine aromatic polyethers for high and medium temperature proton exchange membrane fuel cells

机译:基于主链和侧链吡啶芳族聚醚的高性能聚合物电解质,用于高温和中温质子交换膜燃料电池

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摘要

Novel aromatic polyether type copolymers bearing side chain polar pyridine rings as well as combination of main and side chain pyridine units have been evaluated as potential polymer electrolytes for proton exchange membrane fuel cells (PEMFCs). The advanced chemical and physicochemical properties of these new polymers with their high oxidative stability, mechanical integrity and high glass transition temperatures {T_g's up to 270 C) and decomposition temperatures (T/s up to 480 C) make them promising candidates for high and medium temperature proton exchange membranes in fuel cells. These copolymers exhibit adequate proton conductivities up to 0.08 S cm~(-1) even at moderate phosphoric acid doping levels. An optimized terpolymer chemical structure has been developed, which has been effectively tested as high temperature phosphoric acid imbibed polymer electrolyte. MEA prepared out of the novel terpolymer chemical structure is approaching state of the art fuel cell operating performance (135 mWcm~(-2) with electrical efficiency 45%) at high temperatures (150-180 C) despite the low phosphoric acid content (<200wt%) and the low platinum loading (ca. 0.7mgcm~(-2)). Durability tests were performed affording stable performance for more than 1000h.
机译:带有侧链极性吡啶环以及主链和侧链吡啶单元的组合的新型芳族聚醚型共聚物已被评估为质子交换膜燃料电池(PEMFC)的潜在聚合物电解质。这些新型聚合物具有先进的化学和物理化学性质,具有高的氧化稳定性,机械完整性和高的玻璃化转变温度(T_g最高为270 C)和分解温度(T / s最高为480 C),使其成为高中型材料的有希望的候选者燃料电池中的高温质子交换膜这些共聚物即使在适度的磷酸掺杂水平下也显示出高达0.08 S cm-1(-1)的足够的质子电导率。已开发出优化的三元共聚物化学结构,已作为高温磷酸吸收的聚合物电解质进行了有效测试。尽管磷酸含量低(,但由新型三元共聚物化学结构制成的MEA在高温(150-180℃)下仍接近最先进的燃料电池运行性能(135 mWcm〜(-2),电效率为45%)。 200wt%)和低铂含量(约0.7mgcm〜(-2))。进行了耐久性测试,提供了超过1000h的稳定性能。

著录项

  • 来源
    《Journal of power sources》 |2011年第22期|p.9382-9390|共9页
  • 作者单位

    Department of Chemistry, University ofPatras, CR-26500 Rio-Patras, Greece,Advent Technologies SA, Patras Science Park, CR-26504 Rio-Patras, Greece;

    Advent Technologies SA, Patras Science Park, CR-26504 Rio-Patras, Greece;

    Advent Technologies SA, Patras Science Park, CR-26504 Rio-Patras, Greece;

    Advent Technologies SA, Patras Science Park, CR-26504 Rio-Patras, Greece,Institute of Chemical Engineering and High Temperature Chemical Processes, ICE/HT-FORTH, P.O. Box 1414, CR-26504 Rio-Patras, Greece;

    Department of Chemistry, University ofPatras, CR-26500 Rio-Patras, Greece,Advent Technologies SA, Patras Science Park, CR-26504 Rio-Patras, Greece,Institute of Chemical Engineering and High Temperature Chemical Processes, ICE/HT-FORTH, P.O. Box 1414, CR-26504 Rio-Patras, Greece;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    fuel cells; polymeric materials; structure-property relationships; polymer electrolytes; medium/high temperature pem;

    机译:燃料电池;聚合材料;结构-属性关系;聚合物电解质;中/高温PEM;
  • 入库时间 2022-08-18 00:24:36

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