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Dealloyed Nanoporous Metals for PEM Fuel Cell Catalysis

机译:用于PEM燃料电池催化的脱合金纳米孔金属

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摘要

Although the majority of PEM fuel cell catalysts are made of nanoparticles, similar surface area/volume, specific surface area, and precious metal loading can be made by using ultrathin (~100 nm) nanoporous metal membranes. We discuss here how ultrathin porous membranes can be made using electrochemical dealloying, and how to integrate such membranes into functional fuel cells. Dealloying is the selective dissolution of one or more components from a non-porous precursor alloy. Under the right electrochemical conditions, the remaining alloy component(s) are driven to diffuse along the alloy/electrolyte interface to form a porous metal with pores even smaller than 5 nm. Nanoporous metals can be intrinsically catalytic toward oxygen reduction, or can be coated with thin catalyst layers to form low Pt core-shell catalysts. Using nanoporous metal electrodes for fuel cell catalysis may remove stability issues associated with carbon supports, and opens new avenues for catalyst design.
机译:尽管大多数PEM燃料电池催化剂由纳米粒子制成,但使用超薄(〜100 nm)纳米多孔金属膜可制得相似的表面积/体积,比表面积和贵金属负载量。我们在这里讨论如何使用电化学脱合金法制造超薄多孔膜,以及如何将这种膜整合到功能性燃料电池中。脱合金是从无孔前体合金中选择性溶解一种或多种组分。在正确的电化学条件下,驱动剩余的合金成分沿合金/电解质界面扩散,形成孔隙甚至小于5 nm的多孔金属。纳米多孔金属可以固有地催化氧还原,或者可以用薄的催化剂层涂覆以形成低Pt核壳催化剂。使用纳米多孔金属电极进行燃料电池催化可消除与碳载体相关的稳定性问题,并为催化剂设计开辟新途径。

著录项

  • 来源
  • 会议地点 Vienna(AT);Vienna(AT);Vienna(AT)
  • 作者

    J. Erlebacher; J. Snyder;

  • 作者单位

    Department of Materials Science and Engineering, Johns Hopkins University, Baltimore, MD 21218, USA Department of Chemical and Biomolecular Engineering, Johns Hopkins University, Baltimore, MD 21218, USA;

    Department of Chemical and Biomolecular Engineering, Johns Hopkins University, Baltimore, MD 21218, USA;

  • 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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