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金、银和钯原子修饰的铂纳米线的热性能和偏析行为:经典分子动力学研究

Thermal Properties and Segregation Behavior of Pt Nanowires Modified with Au, Ag, and Pd Atoms: A Classical Molecular Dynamics Study.

作者信息

Gambu Thobani G, Terranova Umberto, Santos-Carballal David, Petersen Melissa A, Jones Glenn, van Steen Eric, de Leeuw Nora H

机构信息

Catalysis Institute, Department of Chemical Engineering, University of Cape Town, Private Bag X3, Rondebosch 7701, South Africa.

School of Chemistry, Cardiff University, Main Building, Park Place, Cardiff CF10 3AT, United Kingdom.

出版信息

J Phys Chem C Nanomater Interfaces. 2019 Aug 22;123(33):20522-20531. doi: 10.1021/acs.jpcc.9b02730. Epub 2019 Jul 22.

Abstract

Platinum nanowires (NWs) have been reported to be catalytically active toward the oxygen reduction reaction (ORR). The edge modification of Pt NWs with metals ( = Au, Ag, or Pd) may have a positive impact on the overall ORR activity by facilitating diffusion of adsorbed oxygen, O, and hydroxyl groups, OH, between the {001} and {111} terraces. In the present study, we have employed classical molecular dynamics simulations to investigate the segregation behavior of Au, Ag, and Pd decorating the edges of Pt NWs. We observe that, under vacuum conditions, Pd prefers to diffuse toward the core rather than stay on the NW surface. Ag and Au atoms are mobile at temperatures as low as 900 K; they remain on the surface but do not appear to be preferentially more stable at edge sites. To effect segregation of Au and Ag atoms toward the edge, we propose annealing in the presence of different reactive gas environments. Overall, our study suggests potential experimental steps required for the synthesis of Pt nanowires and nanoparticles with improved O and OH interfacet diffusion rates and consequently an improved ORR activity.

摘要

据报道,铂纳米线(NWs)对氧还原反应(ORR)具有催化活性。用金属( = Au、Ag或Pd)对Pt NWs进行边缘修饰,可能通过促进吸附的氧(O)和羟基(OH)在{001}和{111}台阶之间的扩散,对整体ORR活性产生积极影响。在本研究中,我们采用经典分子动力学模拟来研究装饰Pt NWs边缘的Au、Ag和Pd的偏析行为。我们观察到,在真空条件下,Pd更倾向于向核心扩散而不是留在NW表面。Ag和Au原子在低至900 K的温度下具有流动性;它们留在表面,但在边缘位置似乎并没有优先更稳定。为了使Au和Ag原子向边缘偏析,我们提出在不同的反应气体环境中进行退火。总体而言,我们的研究表明了合成具有改善的O和OH界面扩散速率以及因此具有改善的ORR活性的Pt纳米线和纳米颗粒所需的潜在实验步骤。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1656/7011775/92f0322c4c11/jp9b02730_0013.jpg

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