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Structure and Activity of Novel Pt Core-Shell Catalysts for the Oxygen Reduction Reaction

机译:新型Pt核壳型氧还原反应的结构和活性

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摘要

Recent performance and cost studies predict that the high PGM loadings in the electrodes of today's direct hydrogen fuel cells will prove a limiting factor in their commercial viability for automotive applications. Significant breakthroughs in electrocatalyst technology yielding materials with high activity, low cost and good durability are required. This paper reports on a collaborative effort which has focussed on the exciting core-shell oxygen reduction catalysts pioneered by Brookhaven National Laboratory. These materials promise high catalyst activity and PGM thrifting although to date, are typically fabricated by in-situ electrochemical techniques. Following the development of scalable syntheses, extensive catalyst characterisation methods have been employed to analyse and verify the success of a scaled Pt_(ML)/Pd_3Co/C catalyst. Although synthetic challenges remain, the scaled core-shell materials yield RDE activities of 0.72 A/mg_(Pt) constituting an impressive 3.7x improvement in Pt activity relative to Pt/C and exceeding the 0.44 A/mg_(Pt) automotive target.
机译:最近的性能和成本研究预测,当今直接氢燃料电池电极中的高PGM含量将证明其在汽车应用中的商业可行性受到限制。需要在电催化剂技术方面取得重大突破,以生产出具有高活性,低成本和良好耐久性的材料。本文报告了一项合作努力,重点是布鲁克海文国家实验室(Brookhaven National Laboratory)率先开发的令人兴奋的核壳氧还原催化剂。这些材料具有很高的催化剂活性和PGM节约能力,尽管到目前为止,通常是通过原位电化学技术制造的。随着可扩展合成技术的发展,广泛的催化剂表征方法已被用于分析和验证成比例的Pt_(ML)/ Pd_3Co / C催化剂的成功。尽管仍然面临合成挑战,但按比例缩放的核-壳材料的RDE活性为0.72 A / mg_(Pt),相对于Pt / C,Pt活性提高了3.7倍,并且超过了汽车目标0.44 A / mg_(Pt)。

著录项

  • 来源
    《Proton exchange membrane fuel cells 9》|2009年|1023-1036|共14页
  • 会议地点 Vienna(AT);Vienna(AT);Vienna(AT)
  • 作者单位

    Johnson Matthey Fuel Cells Ltd., Johnson Matthey Technology Centre, Blounts Court, Sonning Common, Reading, RG4 9NH, UK;

    Johnson Matthey Fuel Cells Ltd., Johnson Matthey Technology Centre, Blounts Court, Sonning Common, Reading, RG4 9NH, UK;

    Johnson Matthey Fuel Cells Ltd., Johnson Matthey Technology Centre, Blounts Court, Sonning Common, Reading, RG4 9NH, UK;

    Johnson Matthey Fuel Cells Ltd., Johnson Matthey Technology Centre, Blounts Court, Sonning Common, Reading, RG4 9NH, UK;

    Johnson Matthey Fuel Cells Ltd., Johnson Matthey Technology Centre, Blounts Court, Sonning Common, Reading, RG4 9NH, UK;

    Johnson Matthey Fuel Cells Ltd., Johnson Matthey Technology Centre, Blounts Court, Sonning Common, Reading, RG4 9NH, UK;

    Johnson Matthey Fuel Cells Ltd., Johnson Matthey Technology Centre, Blounts Cour;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学电源、电池、燃料电池;
  • 关键词

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