Litcius/Paper detail

Molecular Insights into the Influence of Ions on the Water Structure. I. Alkali Metal Ions in Solution

Roya Savoj, Henry Agnew, Ruihan Zhou, Francesco Paesani

2024The Journal of Physical Chemistry B36 citationsDOI

Abstract

In this study, we explore the impact of alkali metal ions (Li +, Na +, K +, Rb +, and Cs + ) on the hydration structure of water using molecular dynamics simulations carried out with MB-nrg potential energy functions (PEFs). Our analyses include radial distribution functions, coordination numbers, dipole moments, and infrared spectra of water molecules, calculated as a function of solvation shells. The results collectively indicate a highly local influence of all of the alkali metal ions on the hydrogen-bond network established by the surrounding water molecules, with the smallest and most densely charged Li + ion exerting the most pronounced effect. Remarkably, the MB-nrg PEFs demonstrate excellent agreement with available experimental data for the position and size of the first solvation shells, underscoring their potential as predictive models for realistic simulations of ionic aqueous solutions across various thermodynamic conditions and environments.

Topics & Concepts

SolvationAlkali metalIonMoleculeIonic bondingAqueous solutionMolecular dynamicsMetal ions in aqueous solutionHydrogen bondChemistryChemical physicsDipoleRadial distribution functionSolvation shellPotential of mean forceComputational chemistryInorganic chemistryPhysical chemistryOrganic chemistrySpectroscopy and Quantum Chemical StudiesChemical and Physical Properties in Aqueous SolutionsThermodynamic properties of mixtures