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Force fields for metallic clusters and nanoparticles
Authors:Legenski Nicole  Zhou Chenggang  Zhang Qingfan  Han Bo  Wu Jinping  Chen Liang  Cheng Hansong  Forrey Robert C
Institution:Department of Physics, Penn State University, Berks Campus, Reading, Pennsylvania 19610-6009, USA.
Abstract:Atomic force fields for simulating copper, silver, and gold clusters and nanoparticles are developed. Potential energy functions are obtained for both monatomic and binary metallic systems using an embedded atom method. Many cluster configurations of varying size and shape are used to constrain the parametrization for each system. Binding energies for these training clusters were computed using density functional theory (DFT) with the Perdew-Wang exchange-correlation functional in the generalized gradients approximation. Extensive testing shows that the many-body potentials are able to reproduce the DFT energies for most of the structures that were included in the training set. The force fields were used to calculate surface energies, bulk structures, and thermodynamic properties. The results are in good agreement with the DFT values and consistent with the available experimental data.
Keywords:potential energy function  force field  clusters  nanoparticles
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