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Molecular Physics
An International Journal at the Interface Between Chemistry and Physics
Volume 87, 1996 - Issue 5
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Original Articles

A modified Poisson-Boltzmann analysis of the solvent primitive model electrical double layer

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Pages 1049-1061 | Received 24 Apr 1995, Accepted 19 Oct 1995, Published online: 23 Aug 2006

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Read on this site (4)

Monika Płuciennik, Christopher W. Outhwaite & Stanisław Lamperski. (2014) Influence of size of solvent molecules on structural and thermodynamic properties of the electrode/electrolyte interface. Molecular Physics 112:2, pages 165-172.
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Anna Oleksy & Jean-Pierre Hansen. (2006) Towards a microscopic theory of wetting by ionic solutions. I. Surface properties of the semi-primitive model. Molecular Physics 104:18, pages 2871-2883.
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L. B. Bhuiyan, V. Vlachy & C. W. Outhwaite. (2002) Understanding polyelectrolyte solutions: Macroion condensation with emphasis on the presence of neutral co-solutes. International Reviews in Physical Chemistry 21:1, pages 1-36.
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Articles from other publishers (16)

Samuel Stenberg & Jan Forsman. (2021) Overcharging and Free Energy Barriers for Equally Charged Surfaces Immersed in Salt Solutions. Langmuir 37:49, pages 14360-14368.
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Enrique González-Tovar & Marcelo Lozada-Cassou. (2019) Long-range forces and charge inversions in model charged colloidal dispersions at finite concentration. Advances in Colloid and Interface Science 270, pages 54-72.
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Luis Fernando Hernández-Martínez, Moisés Alfonso Chávez-Navarro, Enrique González-Tovar & Martín Chávez-Páez. (2018) A Monte Carlo study of the electrical double layer of a shape-asymmetric electrolyte around a spherical colloid. The Journal of Chemical Physics 149:16.
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Yu Gao, Yuwen Liu & Shengli Chen. (2016) A theoretical consideration of ion size effects on the electric double layer and voltammetry of nanometer-sized disk electrodes. Faraday Discussions 193, pages 251-263.
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Jonathan W. Lee, Ali Mani & Jeremy A. Templeton. (2015) Atomistic and Molecular Effects in Electric Double Layers at High Surface Charges. Langmuir 31:27, pages 7496-7502.
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Stanisław Lamperski, Monika Płuciennik & Christopher W. Outhwaite. (2015) The planar electric double layer capacitance for the solvent primitive model electrolyte. Physical Chemistry Chemical Physics 17:2, pages 928-932.
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Jonathan W. Lee, Jeremy A. Templeton, Kranthi K. Mandadapu & Jonathan A. Zimmerman. (2013) Comparison of Molecular and Primitive Solvent Models for Electrical Double Layers in Nanochannels. Journal of Chemical Theory and Computation 9:7, pages 3051-3061.
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Jonathan W. Lee, Robert H. Nilson, Jeremy A. Templeton, Stewart K. Griffiths, Andy Kung & Bryan M. Wong. (2012) Comparison of Molecular Dynamics with Classical Density Functional and Poisson–Boltzmann Theories of the Electric Double Layer in Nanochannels. Journal of Chemical Theory and Computation 8:6, pages 2012-2022.
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Jianzhong Wu, Tao Jiang, De-en Jiang, Zhehui Jin & Douglas Henderson. (2011) A classical density functional theory for interfacial layering of ionic liquids. Soft Matter 7:23, pages 11222.
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C. W. OuthwaiteL. B. Bhuiyan, V. Vlachy & B. Hribar-Lee. (2010) Activity Coefficients of an Electrolyte in a Mixture with a High Density Neutral Component. Journal of Chemical & Engineering Data 55:10, pages 4248-4254.
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S. Lamperski & A. Zydor. (2007) Monte Carlo study of the electrode|solvent primitive model electrolyte interface. Electrochimica Acta 52:7, pages 2429-2436.
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Jan Forsman. (2004) A Simple Correlation-Corrected Poisson−Boltzmann Theory. The Journal of Physical Chemistry B 108:26, pages 9236-9245.
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S. Lamperski & C.W. Outhwaite. (2004) Differential capacitance of the solvent primitive model diffuse layer using the inhomogeneous Poisson–Boltzmann theory with an exclusion volume term. Journal of Electroanalytical Chemistry 567:2, pages 263-267.
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I. Borukhov, D. Andelman & H. Orland. (2000) Adsorption of large ions from an electrolyte solution: a modified Poisson–Boltzmann equation. Electrochimica Acta 46:2-3, pages 221-229.
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Sergei Gavryushov & Piotr Zielenkiewicz. (1997) Electrostatic Potential and Free Energy of Proteins:  A Comparison of the Poisson−Boltzmann and the Bogolyubov−Born−Green−Yvon Equations. The Journal of Physical Chemistry B 101:50, pages 10903-10909.
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Stanislaw Lamperski. (1997) Molecular model for anion adsorption from electrolyte of constant ionic strength. Journal of Electroanalytical Chemistry 437:1-2, pages 225-231.
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