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银基体中的孤立钯原子:光谱和化学性质。

Isolated Pd atoms in a silver matrix: Spectroscopic and chemical properties.

作者信息

Hartwig Caroline, Schweinar Kevin, Jones Travis E, Beeg Sebastian, Schmidt Franz-Philipp, Schlögl Robert, Greiner Mark

机构信息

Max Planck Institute for Chemical Energy Conversion, Mülheim an der Ruhr, Germany.

Max-Planck-Institut für Eisenforschung GmbH, Düsseldorf, Germany.

出版信息

J Chem Phys. 2021 May 14;154(18):184703. doi: 10.1063/5.0045936.

Abstract

Over the past decade, single-atom alloys (SAAs) have been a lively topic of research due to their potential for achieving novel catalytic properties and circumventing some known limitations of heterogeneous catalysts, such as scaling relationships. In researching SAAs, it is important to recognize experimental evidence of peculiarities in their electronic structure. When an isolated atom is embedded in a matrix of foreign atoms, it exhibits spectroscopic signatures that reflect its surrounding chemical environment. In the present work, using photoemission spectroscopy and computational chemistry, we discuss the experimental evidence from AgPd SAAs that show free-atom-like characteristics in their electronic structure. In particular, the broad Pd4d valence band states of the bulk Pd metal become a narrow band in the alloy. The measured photoemission spectra were compared with the calculated photoemission signal of a free Pd atom in the gas phase with very good agreement, suggesting that the Pd4d states in the alloy exhibit very weak hybridization with their surroundings and are therefore electronically isolated. Since AgPd alloys are known for their superior performance in the industrially relevant semi-hydrogenation of acetylene, we considered whether it is worthwhile to drive the dilution of Pd in the inert Ag host to the single-atom level. We conclude that although site-isolation provides beneficial electronic structure changes to the Pd centers due to the difficulty in activating H on Ag, utilizing such SAAs in acetylene semi-hydrogenation would require either a higher Pd concentration to bring isolated sites sufficiently close together or an H-activating support.

摘要

在过去十年中,单原子合金(SAA)一直是一个活跃的研究课题,因为它们有潜力实现新颖的催化性能,并规避多相催化剂的一些已知局限性,如比例关系。在研究单原子合金时,认识到其电子结构特殊性的实验证据很重要。当一个孤立原子嵌入到外来原子的基质中时,它会表现出反映其周围化学环境的光谱特征。在本工作中,我们使用光电子能谱和计算化学方法,讨论了来自AgPd单原子合金的实验证据,这些证据表明其电子结构具有类自由原子的特征。特别是,块状Pd金属的宽Pd4d价带态在合金中变成了窄带。将测量的光电子能谱与气相中自由Pd原子的计算光电子信号进行比较,结果非常吻合,这表明合金中的Pd4d态与周围环境的杂化非常弱,因此在电子上是孤立的。由于AgPd合金在工业上相关的乙炔半加氢反应中表现出优异的性能,我们考虑将惰性Ag主体中Pd的稀释程度提高到单原子水平是否值得。我们得出结论,尽管由于在Ag上活化H的困难,位点隔离为Pd中心提供了有益的电子结构变化,但在乙炔半加氢反应中使用这种单原子合金需要更高的Pd浓度以使孤立位点足够靠近,或者需要一种H活化载体。

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