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February 28, 2026Physical Chemistry Chemical Physics1 citations

Conductivity of electrolyte solutions: self-consistent Debye–Hückel–Onsager theory

YBYury A. BudkovNKNikolai N. Kalikin

Key Points

  • The research aims to enhance the understanding of ionic conductivity in electrolyte solutions using a self-consistent theoretical model.
  • Introduced a self-consistent Debye–Hückel–Onsager theory
  • Utilized Slater-type form factors to model charge distribution
  • Applied the model to various electrolyte solutions
  • The proposed theory provides a more accurate depiction of ionic conductivity
  • Demonstrated improved predictions compared to previous models
  • Successfully modeled non-local charge distribution of ions

Abstract

This study introduces a self-consistent Debye–Hückel–Onsager theory that models the non-local charge distribution of ions using Slater-type form factors, providing a more accurate description of ionic conductivity in electrolyte solutions.

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Cite This Study

Budkov et al. (2026) studied this question.

synapsesocial.com/papers/69a287570a974eb0d3c03078https://doi.org/10.1039/d5cp04521e
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