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原子分辨率下Pt-Pd和Pd-Pt核壳纳米团簇的结构表征

Structural characterization of Pt-Pd and Pd-Pt core-shell nanoclusters at atomic resolution.

作者信息

Sanchez Sergio I, Small Matthew W, Zuo Jian-min, Nuzzo Ralph G

机构信息

Department of Chemistry and the Frederick Seitz Materials Research Laboratory, University of Illinois at Urbana-Champaign, Urbana, Illinois 61801, USA.

出版信息

J Am Chem Soc. 2009 Jun 24;131(24):8683-9. doi: 10.1021/ja9020952.

Abstract

We describe the results of a study at atomic resolution of the structures exhibited by polymer-capped monometallic and bimetallic Pt and Pd nanoclusters--models for nanoscale material electrocatalysts--as carried out using an aberration-corrected scanning transmission electron microscope (STEM). The coupling of sub-nanometer resolution with Z-contrast measurements provides unprecedented insights into the atomic structures and relative elemental speciation of Pt and Pd within these clusters. The work further defines the nature of deeply quenched states that prevent facile conversions of core-shell motifs to equilibrium alloys and the nature of nonidealities such as twinning (icosahedral cores) and atomic segregation that these structures can embed. The nature of the facet structure present in these model systems is revealed by theory directed modeling in which experimental intensity profiles obtained in Z-contrast measurements at atomic resolution are compared to simulated intensity profiles using theoretically predicted cluster geometries. These comparisons show close correspondences between experiment and model and highlight striking structural complexities in these systems that are compositionally sensitive and subject to amplification by subsequent cluster growth processes. The work demonstrates an empowering competency in nanomaterials research for STEM measurements carried out using aberration corrected microscopes, approaches that hold considerable promise for characterizing the structure of these and other important catalytic materials systems at the atomic scale.

摘要

我们描述了一项利用像差校正扫描透射电子显微镜(STEM)对聚合物包覆的单金属和双金属铂和钯纳米团簇(纳米级材料电催化剂模型)所呈现结构进行原子分辨率研究的结果。亚纳米分辨率与Z衬度测量的结合为这些团簇中铂和钯的原子结构及相对元素形态提供了前所未有的见解。这项工作进一步明确了阻碍核壳结构轻松转变为平衡合金的深度猝灭态的性质,以及这些结构可能包含的诸如孪晶(二十面体核)和原子偏析等非理想状态的性质。通过理论指导建模揭示了这些模型体系中晶面结构的性质,即将原子分辨率下Z衬度测量获得的实验强度分布与使用理论预测的团簇几何结构模拟的强度分布进行比较。这些比较表明实验与模型之间有密切对应关系,并突出了这些体系中惊人的结构复杂性,这些复杂性对成分敏感且会因后续团簇生长过程而放大。这项工作展示了使用像差校正显微镜进行STEM测量在纳米材料研究中的强大能力,这些方法对于在原子尺度表征这些及其他重要催化材料体系的结构具有很大的前景。

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