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首页> 外文期刊>Journal of Chemical Engineering of Japan >Development and Modification of a PEMFC Electrode by Using Hydrocarbon lonomer for High Utilization of Catalyst
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Development and Modification of a PEMFC Electrode by Using Hydrocarbon lonomer for High Utilization of Catalyst

机译:烃类离聚物对PEMFC电极的开发和改性以提高催化剂的利用率

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For the practical use of a polymer electrolyte membrane fuel cell(PEMFC),the structure optimization of the electrode is important in obtaining high performance.Usually,a perfluorosulfonic acid(PFSA)ionomer is used as a binder in the electrode for a novel hydrocarbon electrolyte membrane by many pieces of research because the optimization of hydrocarbon electrode is difficult.However,to reduce costs and the environment load of the F element,the development and the optimization of hydrocarbon electrode for hydrocarbon instead of the PFSA electrode is necessary in the end.This research focused on the adoption of sulfonated poly(arylene ether sulfone)(SPES)as an example of a hydrocarbon ionomer to the electrode and the relationships between the structure of the catalyst layer and the size(radius of gyration)of the SPES related with the molecular weight as a fundamental research for the optimization of the hydrocarbon electrode.From the aspect of the structure of the electrode,we controlled the molecular weight of the SPES in order to enlarge the three-phase boundary for the electrode reaction.We have examined the correlation of the molecular weight of SPES and catalyst utilization,and the structure change of the catalyst layer was observed.The electrode fabricated with low molecular weight SPES showed a high utilization of the catalyst and good fuel cell performance.
机译:对于高分子电解质膜燃料电池(PEMFC)的实际应用,电极的结构优化对于获得高性能至关重要。通常,全氟磺酸(PFSA)离聚物被用作新型烃电解质的电极粘合剂膜电极由于难以优化碳氢化合物电极而受到许多研究。然而,为降低成本和降低F元素的环境负荷,最终需要开发和优化碳氢化合物碳氢化合物电极来代替PFSA电极。本研究的重点是采用磺化聚(亚芳基醚砜)(SPES)作为电极上烃类离聚物的例子,以及催化剂层的结构与SPES尺寸(回转半径)之间的关系。分子量是优化烃电极的基础研究。从电极结构的角度,我们控制为了扩大电极反应的三相边界,我们研究了SPES的分子量与催化剂利用率之间的相关性,并观察到催化剂层的结构变化。低分子量SPES显示出催化剂的高利用率和良好的燃料电池性能。

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