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化学吸附氢原子的银团簇的反应性和催化活性。

Reactivity and Catalytic Activity of Hydrogen Atom Chemisorbed Silver Clusters.

作者信息

Manzoor Dar, Pal Sourav

机构信息

Theoretical Chemistry Group, Physical Chemistry Division, CSIR-National Chemical Laboratory, Pune 411008, India.

出版信息

J Phys Chem A. 2015 Jun 18;119(24):6162-70. doi: 10.1021/acs.jpca.5b01987. Epub 2015 May 29.

DOI:10.1021/acs.jpca.5b01987
PMID:25988294
Abstract

Metal clusters of silver have attracted recent interest of researchers as a result of their potential in different catalytic applications and low cost. However, due to the completely filled d orbital and very high first ionization potential of the silver atom, the silver-based catalysts interact very weakly with the reacting molecules. In the current work, density functional theory calculations were carried out to investigate the effect of hydrogen atom chemisorption on the reactivity and catalytic properties of inert silver clusters. Our results affirm that the hydrogen atom chemisorption leads to enhancement in the binding energy of the adsorbed O2 molecule on the inert silver clusters. The increase in the binding energy is also characterized by the decrease in the Ag-O and increase in the O-O bond lengths in the case of the AgnH silver clusters. Pertinent to the increase in the O-O bond length, a significant red shift in the O-O stretching frequency is also noted in the case of the AgnH silver clusters. Moreover, the hydrogen atom chemisorbed silver clusters show low reaction barriers and high heat of formation of the final products for the environmentally important CO oxidation reaction as compared to the parent catalytically inactive clusters. The obtained results were compared with those of the corresponding gold and hydrogen atom chemisorbed gold clusters obtained at the same level of theory. It is expected the current computational study will provide key insights for future advances in the design of efficient nanosilver-based catalysts through the adsorption of a small atom or a ligand.

摘要

由于银的金属簇在不同催化应用中的潜力以及低成本,近期吸引了研究人员的关注。然而,由于银原子的d轨道完全充满且第一电离能非常高,银基催化剂与反应分子的相互作用非常弱。在当前工作中,进行了密度泛函理论计算,以研究氢原子化学吸附对惰性银簇的反应性和催化性能的影响。我们的结果证实,氢原子化学吸附导致吸附在惰性银簇上的O₂分子的结合能增强。对于AgnH银簇,结合能的增加还表现为Ag - O键长减小和O - O键长增加。与O - O键长增加相关的是,在AgnH银簇的情况下,O - O伸缩频率也有显著的红移。此外,与母体催化惰性簇相比,氢原子化学吸附的银簇对于环境重要的CO氧化反应显示出低反应势垒和最终产物的高生成热。将所得结果与在相同理论水平下获得的相应金簇以及氢原子化学吸附的金簇的结果进行了比较。预计当前的计算研究将为通过吸附小原子或配体设计高效纳米银基催化剂的未来进展提供关键见解。

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