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暴露单原子钯和银的二氧化铈纳米颗粒上一氧化碳的吸附与氧化:密度泛函理论建模

Adsorption and Oxidation of CO on Ceria Nanoparticles Exposing Single-Atom Pd and Ag: A DFT Modelling.

作者信息

Nasluzov Vladimir A, Ivanova-Shor Elena A, Shor Aleksey M, Laletina Svetlana S, Neyman Konstantin M

机构信息

Institute of Chemistry and Chemical Technology SB RAS, Federal Research Center "Krasnoyarsk Science Center SB RAS", 660036 Krasnoyarsk, Russia.

Departament de Ciència de Materials i Química Física and Institut de Quimica Teòrica i Computacional, Universitat de Barcelona, 08028 Barcelona, Spain.

出版信息

Materials (Basel). 2021 Nov 15;14(22):6888. doi: 10.3390/ma14226888.

Abstract

Various CO species formed upon the adsorption and oxidation of CO on palladium and silver single atoms supported on a model ceria nanoparticle (NP) have been studied using density functional calculations. For both metals M, the ceria-supported MCO moieties are found to be stabilised in the order MCO < MCO < MCO, similar to the trend for CO species adsorbed on M-free ceria NP. Nevertheless, the characteristics of the palladium and silver intermediates are different. Very weak CO adsorption and the small exothermicity of the CO to CO transformation are found for OPd site of the Pd/CeO model featuring a square-planar coordination of the Pd cation. The removal of one O atom and formation of the OPd site resulted in a notable strengthening of CO adsorption and increased the exothermicity of the CO to CO reaction. For the analogous ceria models with atomic Ag instead of atomic Pd, these two energies became twice as small in magnitude and basically independent of the presence of an O vacancy near the Ag atom. CO-species are strongly bound in palladium carboxylate complexes, whereas the CO molecule easily desorbs from oxide-supported AgCO moieties. Opposite to metal-free ceria particle, the formation of neither PdCO nor AgCO carbonate intermediates before CO desorption is predicted. Overall, CO oxidation is concluded to be more favourable at Ag centres atomically dispersed on ceria nanostructures than at the corresponding Pd centres. Calculated vibrational fingerprints of surface CO moieties allow us to distinguish between CO adsorption on bare ceria NP (blue frequency shifts) and ceria-supported metal atoms (red frequency shifts). However, discrimination between the CO and CO species anchored to M-containing and bare ceria particles based solely on vibrational spectroscopy seems problematic. This computational modelling study provides guidance for the knowledge-driven design of more efficient ceria-based single-atom catalysts for the environmentally important CO oxidation reaction.

摘要

利用密度泛函计算研究了在模型二氧化铈纳米颗粒(NP)上负载的钯和银单原子上CO吸附和氧化过程中形成的各种CO物种。对于两种金属M,发现二氧化铈负载的MCO部分按MCO < MCO < MCO的顺序稳定,这与吸附在无M二氧化铈NP上的CO物种的趋势相似。然而,钯和银中间体的特征不同。在具有正方形平面配位的Pd阳离子的Pd/CeO模型的OPd位点上,发现CO吸附非常弱,并且CO到CO转化的放热很小。去除一个O原子并形成OPd位点导致CO吸附显著增强,并增加了CO到CO反应的放热。对于用原子Ag代替原子Pd的类似二氧化铈模型,这两个能量在大小上变为原来的两倍,并且基本上与Ag原子附近O空位的存在无关。CO物种在钯羧酸盐配合物中强烈结合,而CO分子很容易从氧化物负载的AgCO部分解吸。与无金属的二氧化铈颗粒相反,预测在CO解吸之前既不会形成PdCO也不会形成AgCO碳酸盐中间体。总体而言,得出结论,在原子分散在二氧化铈纳米结构上的Ag中心处,CO氧化比在相应的Pd中心处更有利。计算得到的表面CO部分的振动指纹使我们能够区分CO在裸二氧化铈NP上的吸附(蓝色频移)和二氧化铈负载的金属原子上的吸附(红色频移)。然而,仅基于振动光谱来区分锚定在含M和裸二氧化铈颗粒上的CO和CO物种似乎存在问题。这项计算建模研究为知识驱动设计用于环境重要的CO氧化反应的更高效的基于二氧化铈的单原子催化剂提供了指导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/05fe/8618484/74a7ecc7c20d/materials-14-06888-g002.jpg

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