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能否通过吸附的一氧化碳探针分子的伸缩频率明确确定铂物种的状态?

Can the state of platinum species be unambiguously determined by the stretching frequency of an adsorbed CO probe molecule?

作者信息

Aleksandrov Hristiyan A, Neyman Konstantin M, Hadjiivanov Konstantin I, Vayssilov Georgi N

机构信息

Faculty of Chemistry and Pharmacy, University of Sofia, 1126 Sofia, Bulgaria.

Departament de Ciència de Materials i Química Física & Institut de Química Teòrica i Computacional, Universitat de Barcelona, 08028 Barcelona, Spain and Institució Catalana de Recerca i Estudis Avançats (ICREA), 08010 Barcelona, Spain.

出版信息

Phys Chem Chem Phys. 2016 Aug 10;18(32):22108-21. doi: 10.1039/c6cp03988j.

Abstract

The paper addresses possible ambiguities in the determination of the state of platinum species by the stretching frequency of a CO probe, which is a common technique for characterization of platinum-containing catalytic systems. We present a comprehensive comparison of the available experimental data with our theoretical modeling (density functional) results of pertinent systems - platinum surfaces, nanoparticles and clusters as well as reduced or oxidized platinum moieties on a ceria support. Our results for CO adsorbed on-top on metallic Pt(0), with C-O vibrational frequencies in the region 2018-2077 cm(-1), suggest that a decrease of the coordination number of the platinum atom, to which CO is bound, by one lowers the CO frequency by about 7 cm(-1). This trend corroborates the Kappers-van der Maas correlation derived from the analysis of the experimental stretching frequency of CO adsorbed on platinum-containing samples on different supports. We also analyzed the effect of the charge of platinum species on the CO frequency. Based on the calculated vibrational frequencies of CO in various model systems, we concluded that the actual state of the platinum species may be mistaken based only on the measured value of the C-O vibrational frequency due to overlapping regions of frequencies corresponding to different types of species. In order to identify the actual state of platinum species one has to combine this powerful technique with other approaches.

摘要

本文探讨了通过CO探针的伸缩频率来确定铂物种状态时可能存在的模糊性,这是表征含铂催化体系的常用技术。我们将现有的实验数据与我们对相关体系——铂表面、纳米颗粒和团簇以及二氧化铈载体上还原或氧化的铂部分——的理论建模(密度泛函)结果进行了全面比较。我们关于CO吸附在金属Pt(0)顶位上的结果显示,C - O振动频率在2018 - 2077 cm⁻¹范围内,这表明与CO结合的铂原子的配位数每减少一个,CO频率就降低约7 cm⁻¹。这一趋势证实了Kappers - van der Maas相关性,该相关性源自对吸附在不同载体上含铂样品的CO实验伸缩频率的分析。我们还分析了铂物种电荷对CO频率的影响。基于在各种模型体系中计算出的CO振动频率,我们得出结论,由于不同类型物种对应的频率区域存在重叠,仅基于C - O振动频率的测量值可能会错误判断铂物种的实际状态。为了确定铂物种的实际状态,必须将这种强大的技术与其他方法结合起来。

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