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金属团簇(m + n = 13)稳定性和反应活性的理论研究

Theoretical Investigation of the Stabilities and Reactivities of Metallic Clusters (m+n = 13).

作者信息

Pal Pradeep Kumar, Priyakumar U Deva

机构信息

Center for Computational Natural Sciences and Bioinformatics, International Institute of Information Technology, Hyderabad, India.

出版信息

Chem Asian J. 2025 Aug;20(15):e01926. doi: 10.1002/asia.202401926. Epub 2025 Jun 16.

DOI:10.1002/asia.202401926
PMID:40522704
Abstract

AuCu nanoclusters have widespread application in reactions like activation of , selective oxidation, and cross-coupling reactions. In this study, we investigate the stepwise doping of copper atoms in a pure 13-atom gold cluster, denoted as (m+n = 13). The genetic algorithm based on the artificial bee colony algorithm has been utilized to model various isomers of each composition. The potential energy landscape of these clusters was analyzed by means of the density functional theory method with pure Perdew-Burke-Ernzerhof (PBE) functional. We identify the minimum energy isomer for each cluster composition to evaluate molecular properties like HOMO-LUMO gap, binding energy/atom, second order difference in energy, vertical ionization energy, and vertical electron affinity. Notably, the introduction of copper atoms in these clusters enhances their stability and reactivity. Distinct odd-even oscillations due to close shell electronic configurations are absent, as all cluster compositions have an overall open shell configuration. To assess the catalytic activity of the clusters, we study the adsorption energies of small molecules like and on all available sites on the cluster. This study thereby comprehensively explores the range of copper-doped 13-atom gold cluster compositions and their implications on their structure-property relationships vital for catalysis and nanomaterial applications.

摘要

金铜纳米团簇在诸如 的活化、选择性氧化和交叉偶联反应等反应中具有广泛应用。在本研究中,我们研究了在纯 13 原子金簇(记为 ,m + n = 13)中逐步掺杂铜原子的情况。基于人工蜂群算法的遗传算法已被用于模拟每种组成的各种异构体。这些团簇的势能面通过采用纯 Perdew - Burke - Ernzerhof(PBE)泛函的密度泛函理论方法进行分析。我们确定每个团簇组成的最低能量异构体,以评估诸如最高占据分子轨道 - 最低未占据分子轨道能隙、每个原子的结合能、能量的二阶差分、垂直电离能和垂直电子亲和能等分子性质。值得注意的是,在这些团簇中引入铜原子增强了它们的稳定性和反应活性。由于所有团簇组成都具有整体的开壳层构型,所以不存在因闭壳层电子构型导致的明显奇偶振荡。为了评估团簇的催化活性,我们研究了诸如 和 等小分子在团簇上所有可用位点的吸附能。因此,本研究全面探索了铜掺杂的 13 原子金簇组成的范围及其对催化和纳米材料应用至关重要的结构 - 性质关系的影响。

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