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Cross linked sulphonated poly (ether ether ketone) for the development of polymer electrolyte membrane fuel cell

机译:交联磺化聚(醚醚酮)用于开发聚合物电解质膜燃料电池

摘要

Ion irradiation has been investigated as a route for the preparation of mechanically stable and highly durable cross linked sulphonated PEEK for fuel cell application. The formation of cross linking was confirmed by solvent extraction using the well known Charlsby–Pinner equation. The DSC results indicated that the cross links retard the crystallization, but no changes were observed in the mechanism of crystallization. The thermal kinetic data for irradiated PEEK quantitatively suggest that these films still have sufficient thermal stability for long term applications as fuel cell membranes. Analysis of the dielectric response by Cole-Cole, Havrilak and Negami and Williams and Watts equations indicated that the dipole relaxation was broadened and becoming more asymmetric with cross link density. The sulphonation of the cross linked PEEK in concentrated sulphuric acid indicated that the rate of reaction decreased with cross linking density and was consistent with diffusion control kinetics. Increasing cross link density resulted in more bound water in the equilibrated membranes and the nano-structure present was comparable to that of Nafion. Cross linking improved the chemical stability of PEMs in particular in methanol solution.The measurement of power output and energy efficiency suggested that the cross linked PEMs produced are promising candidates to replace Nafion membranes but more information are required, in particular on their long term stability under fuel cell operating conditions.
机译:已经研究了离子辐照作为制备用于燃料电池的机械稳定和高度耐用的交联磺化PEEK的途径。使用众所周知的Charlsby-Pinner方程通过溶剂萃取确认了交联的形成。 DSC结果表明,交联阻碍了结晶,但是没有观察到结晶机理的变化。辐照PEEK的热动力学数据定量表明,这些膜仍具有足够的热稳定性,可长期用作燃料电池膜。通过Cole-Cole,Havrilak和Negami以及Williams和Watts方程对介电响应的分析表明,偶极子弛豫变宽了,并且随着交联密度的增加变得更加不对称。交联PEEK在浓硫酸中的磺化表明反应速率随交联密度的降低而降低,并且与扩散控制动力学相符。交联密度的增加导致平衡膜中更多的结合水,并且存在的纳米结构与Nafion相当。交联提高了PEM的化学稳定性,特别是在甲醇溶液中。功率输出和能效的测量表明,所生产的交联PEM有望替代Nafion膜,但还需要更多信息,尤其是在低温下的长期稳定性。燃料电池的运行条件。

著录项

  • 作者

    Al Lafi Abdul Ghaffar;

  • 作者单位
  • 年度 2009
  • 总页数
  • 原文格式 PDF
  • 正文语种 English
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