An Atomic Insight into the Chemical Origin and Variation of the Dielectric Constant in Liquid Electrolytes
Атомистическое понимание химического происхождения и вариаций диэлектрической проницаемости жидких электролитов
2021-07-06
SCID: 54.1/2xhcmdx6
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dielectric constantliquid electrolytesmolecular dynamics simulationssalt concentrationsolvation structures
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Abstract (AI)
The dielectric constant is a crucial physicochemical property of liquids in tuning solute-solvent interactions and solvation microstructures. Herein the dielectric constant variation of liquid electrolytes regarding to temperatures and electrolyte compositions is probed by molecular dynamics simulations. Dielectric constants of solvents reduce as temperatures increase due to accelerated mobility of molecules. For solvent mixtures with different mixing ratios, their dielectric constants either follow a linear superposition rule or satisfy a polynomial function, depending on weak or strong intermolecular interactions. Dielectric constants of electrolytes exhibit a volcano trend with increasing salt concentrations, which can be attributed to dielectric contributions from salts and formation of solvation structures. This work affords an atomic insight into the dielectric constant variation and its chemical origin, which can deepen the fundamental understanding of solution chemistry.
Key Findings
1
Dielectric constants of solvent mixtures follow either linear superposition or polynomial behavior, depending on the strength of intermolecular interactions.
2
Electrolyte dielectric constants show a volcano-shaped dependence on salt concentration, arising from salt dielectric contributions and solvation-structure formation.
3
Molecular dynamics simulations probe how temperature and electrolyte composition control dielectric constants in liquid electrolytes.
4
Solvent dielectric constants decrease with increasing temperature because molecular mobility becomes faster.
5
The study provides an atomic-level explanation for dielectric-constant variation and its chemical origin in electrolyte solutions.
Research Object
Liquid electrolytes and their solvent mixtures with varying temperatures, compositions, and salt concentrations
Research Subject
Temperature- and composition-dependent variation of the dielectric constant and its molecular origins in intermolecular interactions and solvation-structure formation
Publication Details
Publication Date
2021-07-06
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