Ionic Structure and Decay Length in Highly-Concentrated Confined Electrolytes
Nasim Anousheh, Francisco J. Solis, Vikram Jadhao

TL;DR
This study uses molecular dynamics simulations to explore ionic structures and decay lengths in highly-concentrated confined electrolytes, revealing two distinct screening regimes and the effects of ion correlations.
Contribution
The paper introduces a variational approach that aligns with simulation results, elucidating the impact of steric correlations on screening behavior in concentrated electrolytes.
Findings
Identification of two screening regimes at different concentrations.
Decay length increases with concentration in high-concentration regime.
Charge inversion and layered ion structures near interfaces.
Abstract
We use molecular dynamics simulations of the primitive model of electrolytes to study the ionic structure in aqueous monovalent electrolyte solutions confined by charged planar interfaces over a wide range of electrolyte concentration, interfacial separation, surface charge density, and ion size. The investigations are inspired by recent experiments that have directly measured the increase in the decay length for highly-concentrated electrolytes with increase in concentration. The behavior of ions in the nanoconfinement created by the interfaces is probed by evaluating the ionic density profiles, net charge densities, screening factors, and decay length associated with the screening of the charged interface. Results show the presence of two distinct regimes of screening behavior as the concentration is changed from 0.1 M to 2.5 M for a wide range of electrolyte systems generated by…
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