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The Chemistry of Fuel Cell Membrane Chemical Degradation

机译:燃料电池膜化学降解的化学

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摘要

A detailed thermochemical and kinetic analysis of PFSA ionomers and the reactive oxygen species formed in an operating fuel cell is reported. The analysis reveals that hydroxyl radical is the only oxygen species capable of abstracting a hydrogen atom from carboxylic acid intermediates, thereby propagating the PFSA main chain unzipping process. Two chemically specific, main chain scission mechanisms are proposed. The first involves formation of sulfonyl radicals under dry conditions and the second invokes the action of hydrogen atoms formed from hydrogen gas and hydroxyl radical. The thermochemical analysis provides a strong basis from which to rationalize the results from a broad range of in-situ and ex-situ fuel cell degradation studies.
机译:报告了PFSA离聚物和在运行中的燃料电池中形成的活性氧的详细热化学和动力学分析。分析表明,羟基自由基是唯一能够从羧酸中间体中提取氢原子的氧,从而促进了PFSA主链的解链过程。提出了两种化学特异的主链断裂机理。第一种涉及在干燥条件下形成磺酰基,第二种涉及由氢气和羟基形成的氢原子的作用。热化学分析为合理化广泛的原位和异位燃料电池降解研究的结果提供了坚实的基础。

著录项

  • 来源
  • 会议地点 HonoluluIL(US);HonoluluIL(US)
  • 作者

    Frank D. Corns;

  • 作者单位

    General Motors Corporation, Fuel Cell Research Labs, 10 Carriage Street, Honeoye Falls, NY 14472, USA;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 表面处理;
  • 关键词

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