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A Polarizable Cationic Dummy Metal Ion Model.

Ali RahnamounKurt A O'HearnMehmet Cagri KaymakZhen LiKenneth M MerzHasan Metin Aktulga
Published in: The journal of physical chemistry letters (2022)
A novel locally polarizable multisite model based on the original cation dummy atom (CDA) model is described for molecular dynamics simulations of ions in condensed phases. Polarization effects are introduced by the electronegativity equalization model (EEM) method where charges on the metal ion and its dummy atoms can fluctuate to respond to the environment. This model includes explicit polarization and ion-induced interactions and can be coupled with nonpolarizable or polarizable water models, making it more transferable to simpler force fields. This approach allows us to enhance the original fixed charge CDA model where the charge distribution cannot adapt to the local solvent structure. To illustrate the new CDA pol model, we examined properties of the Zn 2+ , Al 3+ , and Zr 4+ ions in aqueous solution. The polarizable model and Lennard-Jones parameters were refined for octahedrally coordinated Zn 2+ , Al 3+ , and Zr 4+ CDAs to reproduce thermodynamic and geometrical properties. Using this locally polarizable model, we were able to obtain the experimental hydration free energy, ion-oxygen distance, and coordination number coupled with the standard 12-6 Lennard-Jones model. This model can be used in myriad additional applications where local polarization and charge transfer is important.
Keyphrases
  • molecular dynamics simulations
  • computed tomography
  • risk assessment
  • high resolution
  • quantum dots
  • molecular dynamics