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First principles investigation of the activity of thin film Pt, Pd and Au surface alloys for oxygen reduction

机译:薄膜pt,pd和au表面合金氧还原活性的第一性原理研究

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摘要

Further advances in fuel cell technologies are hampered by kinetic limitations associated with the sluggish cathodic oxygen reduction reaction. We have investigated a range of different formulations of binary and ternary Pt, Pd and Au thin films as electrocatalysts for oxygen reduction. The most active binary thin films are near-surface alloys of Pt with subsurface Pd and certain PdAu and PtAu thin films with surface and/or subsurface Au. The most active ternary thin films are with pure metal Pt or Pd skins with some degree of Au in the surface and/or subsurface layer and the near-surface alloys of Au with mixed Pt/Pd skins. The activity of the binary and ternary catalysts is explained through weakening of the OH binding energy caused by solute elements. However, given the low alloy formation energies it may be difficult to tune and retain the composition under operating conditions. This is particularly challenging for alloys containing Au due to a high propensity of Au to segregate to the surface. We also show that once Au is on the surface it will diffuse to defect sites, explaining why small amounts of Au retard dissolution of Pt nanoparticles. For the PtPd thin films there is no pronounced driving force for surface segregation, diffusion to defects or surface self-assembling. On the basis of stability and activity analysis we conclude that the near surface alloy of Pd in Pt and some PdAu binary and PtPdAu ternary thin films with a controlled amount of Au are the best catalysts for oxygen reduction.
机译:与缓慢的阴极氧还原反应相关的动力学限制阻碍了燃料电池技术的进一步发展。我们已经研究了二元和三元Pt,Pd和Au薄膜作为氧还原电催化剂的各种不同配方。活性最高的二元薄膜是具有表面下Pd的Pt和具有表面和/或表面下Au的某些PdAu和PtAu薄膜的近表面合金。最活跃的三元薄膜是在表面和/或亚表层具有一定程度的Au的纯金属Pt或Pd蒙皮,以及具有混合的Pt / Pd蒙皮的Au的近表面合金。通过削弱溶质元素引起的OH键能来解释二元和三元催化剂的活性。然而,由于低合金形成能,可能难以在操作条件下调节和保持组成。对于含Au的合金而言,这特别具有挑战性,因为Au具有高的偏析于表面的倾向。我们还表明,一旦Au在表面上,它将扩散到缺陷部位,这解释了为什么少量Au会延迟Pt纳米颗粒的溶解。对于PtPd薄膜,没有明显的驱动力来驱动表面偏析,扩散到缺陷或表面自组装。在稳定性和活性分析的基础上,我们得出结论,Pt中的Pd的近表面合金以及一些Au量受控的PdAu二元和PtPdAu三元薄膜是还原氧的最佳催化剂。

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