Response to “Comment on ‘The nonmonotonic concentration dependence of the mean activity coefficient of electrolytes is a result of a balance between solvation and ion–ion correlations’” [J. Chem. Phys. 134, 157101 (2011)]
Author:
Publisher
AIP Publishing
Subject
Physical and Theoretical Chemistry,General Physics and Astronomy
Link
http://aip.scitation.org/doi/pdf/10.1063/1.3575602
Reference17 articles.
1. Comment on “The nonmonotonic concentration dependence of the mean activity coefficient of electrolytes is a result of a balance between solvation and ion–ion correlations” [J. Chem. Phys. 133, 154507 (2010)]
2. The nonmonotonic concentration dependence of the mean activity coefficient of electrolytes is a result of a balance between solvation and ion-ion correlations
3. Simplified electrostatic model for the thermodynamic excess potentials of binary strong electrolyte solutions with size-dissimilar ions
4. Monoprotic Mineral Acids Analyzed by the Smaller-Ion Shell Model of Strong Electrolyte Solutions
5. Dielectric Relaxation of Aqueous NaCl Solutions
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1. Resurrection of Hückel’s idea: Decoupling ion–ion and ion–water terms in activity coefficients via the state-dependent dielectric constant;Fluid Phase Equilibria;2023-09
2. Calculations of individual ionic activity coefficients of chloride salt in aqueous solutions;Journal of Molecular Liquids;2022-03
3. A Review of Electrolyte Equations of State with Emphasis on Those Based on Cubic and Cubic-Plus-Association (CPA) Models;International Journal of Thermophysics;2022-02-03
4. Analysis of Some Electrolyte Models Including Their Ability to Predict the Activity Coefficients of Individual Ions;Industrial & Engineering Chemistry Research;2020-05-26
5. Atomistic simulations of cation hydration in sodium and calcium montmorillonite nanopores;The Journal of Chemical Physics;2017-08-28
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