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Enhanced formic acid oxidation on Cu-Pd nanoparticles

机译:在Cu-Pd纳米颗粒上增强的甲酸氧化

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Developing catalysts with high activity and high resistance to surface poisoning remains a challenge in direct formic acid fuel cell research. In this work, copper-palladium nanoparticles were formed through a galvanic replacement process. After electrochemically selective dissolution of surface Cu, Pd-enriched Cu-Pd nanoparticles were formed. These particles exhibit much higher formic acid oxidation activities than that on pure Pd nanoparticles, and they are much more resistant to the surface poisoning. Possible mechanisms of catalytic activity enhancement are briefly discussed.
机译:开发具有高活性和高抗表面中毒性的催化剂仍然是直接甲酸燃料电池研究中的挑战。在这项工作中,铜-钯纳米粒子是通过电置换过程形成的。在表面铜电化学选择性溶解后,形成了富含Pd的Cu-Pd纳米颗粒。这些颗粒显示出比纯Pd纳米颗粒更高的甲酸氧化活性,并且它们对表面中毒的耐受性更高。简要讨论了催化活性增强的可能机理。

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