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Combinatorial screening of fuel cell cathode catalyst compositions

机译:燃料电池阴极催化剂组合物的组合筛选

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An improved fuel cell cathode catalyst composition was pursued by fabricating and screening thin film combinatorial libraries. Results from the Pt-Ru, Pt-Co-Ti, Pt-Co-Cu and Pt-Co-Cr systems are reported. The discrete composition combinatorial libraries were fabricated by plasma sputtering through shadow masks. Each combinatorial library was tested by cyclic voltammetry in a multichannel electrochemical cell. Compositions were ranked based on the onset potential of the oxygen reduction reaction. Several compositions exhibited better onset potentials than pure Pt. The optimum composition from the Pt-Co-Ti system was Pt_(44)Ti_(12)Co_(44) but showed signs of corrosion after prolonged testing. A wide range of Pt-Co-Cu compositions also outperformed Pt initially, but ultimately failed due to poor corrosion resistance. Among all of the compositions that were screened, the best performance was demonstrated by Pt_(28)Co_(36)Cr_(36), with an onset potential 107 mV higher than pure Pt and no sign of corrosion.
机译:通过制造和筛选薄膜组合库来寻求改进的燃料电池阴极催化剂组合物。报告了Pt-Ru,Pt-Co-Ti,Pt-Co-Cu和Pt-Co-Cr系统的结果。通过等离子溅射通过荫罩制造离散成分组合库。通过组合伏安法在多通道电化学池中测试每个组合库。基于氧还原反应的起始电位对组合物进行排名。几种组合物表现出比纯Pt更好的起始电位。 Pt-Co-Ti系统的最佳组成为Pt_(44)Ti_(12)Co_(44),但经过长时间测试后显示出腐蚀迹象。最初,各种Pt-Co-Cu组合物的性能也优于Pt,但由于耐腐蚀性差,最终失败。在所有筛选的组合物中,Pt_(28)Co_(36)Cr_(36)表现出最好的性能,其起始电位比纯Pt高107 mV,并且没有腐蚀迹象。

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