Properties of Naked Silver Clusters with Up to 100 Atoms as Found with Embedded-Atom and Density-Functional Calculations

Shivangi Garg, Navjot Kaur, Neetu Goel, Mohammad Molayem, Valeri G. Grigoryan, Michael Springborg

Résultats de recherche: Contribution à un journal/une revueArticleRevue par des pairs

Résumé

The structural and energetic properties of small silver clusters Ag (Formula presented.) with n = 2–100 atoms are reported. For n = 2–100 the embedded atom model for the calculation of the total energy of a given structure in combination with the basin-hopping search strategy for an unbiased structure optimization has been used to identify the energies and structures of the three energetically lowest-lying isomers. These optimized structures for n = 2–11 were subsequently studied further through density-functional-theory calculations. These calculations provide additional information on the electronic properties of the clusters that is lacking in the embedded-atom calculations. Thereby, also quantities related to the catalytic performance of the clusters are studied. The calculated properties in comparison to other available theoretical and experimental data show a good agreement. Previously unidentified magic (i.e., particularly stable) clusters have been found for (Formula presented.). In order to obtain a more detailed understanding of the structural properties of the clusters, various descriptors are used. Thereby, the silver clusters are compared to other noble metals and show some similarities to both copper and nickel systems, and also growth patterns have been identified. All vibrational frequencies of all the clusters have been calculated for the first time, and here we focus on the highest and lowest frequencies. Structural effects on the calculated frequencies were considered.

langue originaleAnglais
Numéro d'article3266
journalMolecules
Volume28
Numéro de publication7
Les DOIs
Etat de la publicationPublié - avr. 2023

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