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First-principles insights into interaction of CO, NO, and HCN with Ag_8

机译:关于CO,NO和HCN与Ag_8相互作用的第一手见解

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We use static as well as time-dependent first-principles computations to study interaction of the CO, NO, and HCN molecules with the Ag_8 nanocluster. The many-body based GW correction is applied for accurate description of the highest occupied (HOMO) and the lowest unoccupied (LUMO) molecular orbital levels. It is argued that the adsorption of these molecules changes the stable structure of Ag_8 from Td to the more chemically active D_(2d) symmetry. We discuss that the CO, NO, and HCN molecules prefer to adsorb on the atom of the cluster with significant contribution to both HOMO and LUMO, for the accomplishment of the required charge transfers in the systems. The charge back donation is found to leave an excess energy of about 110 meV on the NO molecular bond, evidencing potential application of silver clusters for NO reduction. It is argued that CO and specially NO exhibit strong physical interaction with the silver cluster and hence significantly modify the electronic and optical properties of the system, while HCN makes very week physical bonds with the cluster. The optical absorption spectra of the Ag_8 cluster before and after molecule adsorption are computed and a nontrivial red shift is observed in the NO and HCN adsorbed clusters.
机译:我们使用静态以及与时间有关的第一性原理计算来研究CO,NO和HCN分子与Ag_8纳米簇的相互作用。基于多体的GW校正用于准确描述最高占用(HOMO)和最低未占用(LUMO)分子轨道水平。有人认为,这些分子的吸附将Ag_8的稳定结构从Td改变为更具化学活性的D_(2d)对称性。我们讨论了为了实现系统中所需的电荷转移,CO,NO和HCN分子更喜欢吸附在对HOMO和LUMO都有重要贡献的簇原子上。发现电荷返还给NO分子键留下了约110 meV的多余能量,这证明了银簇可能用于减少NO。有人认为,CO和特别是NO与银团簇之间表现出很强的物理相互作用,因此显着改变了系统的电子和光学性质,而HCN与银团簇形成了非常一周的物理键。计算了Ag_8团簇吸附前后的光吸收光谱,并观察到了NO和HCN团簇的平凡红移。

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