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高稳定的 Pt 单原子层负载在 PdAu 纳米粒子电催化剂上用于氧还原反应。

Highly stable Pt monolayer on PdAu nanoparticle electrocatalysts for the oxygen reduction reaction.

机构信息

Chemistry Department, Brookhaven National Laboratory, Building 555, Upton, New York 11973-5000, USA.

出版信息

Nat Commun. 2012;3:1115. doi: 10.1038/ncomms2124.

Abstract

Stability is one of the main requirements for commercializing fuel cell electrocatalysts for automotive applications. Platinum is the best-known catalyst for oxygen reduction in cathodes, but it undergoes dissolution during potential changes while driving electric vehicles, thus hampering commercial adoption. Here we report a new class of highly stable, active electrocatalysts comprising platinum monolayers on palladium-gold alloy nanoparticles. In fuel-cell tests, this electrocatalyst with its ultra-low platinum content showed minimal degradation in activity over 100,000 cycles between potentials 0.6 and 1.0 V. Under more severe conditions with a potential range of 0.6-1.4 V, again we registered no marked losses in platinum and gold despite the dissolution of palladium. These data coupled with theoretical analyses demonstrated that adding a small amount of gold to palladium and forming highly uniform nanoparticle cores make the platinum monolayer electrocatalyst significantly tolerant and very promising for the automotive application of fuel cells.

摘要

稳定性是将燃料电池电催化剂商业化用于汽车应用的主要要求之一。铂是阴极中氧还原最知名的催化剂,但在驾驶电动汽车时,它会在电势变化过程中发生溶解,从而阻碍商业化应用。在这里,我们报告了一类新的高度稳定、活性的电催化剂,它由钯金合金纳米颗粒上的铂单层组成。在燃料电池测试中,这种超低铂含量的电催化剂在 0.6 至 1.0 V 之间的电位下进行 10 万次循环后,活性的降解最小。在更恶劣的条件下,电位范围为 0.6-1.4 V,尽管钯溶解,但我们没有记录到铂和金的明显损失。这些数据加上理论分析表明,向钯中添加少量金并形成高度均匀的纳米颗粒核,使铂单层电催化剂具有显著的耐受性,非常有希望用于汽车燃料电池应用。

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