Publication Cover
Molecular Physics
An International Journal at the Interface Between Chemistry and Physics
Volume 91, 1997 - Issue 2
166
Views
39
CrossRef citations to date
0
Altmetric
Original Articles

Dressed ion theory for electric double layer structure and interactions; an exact analysis

Pages 173-188 | Published online: 03 Dec 2010

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (1)

Articles from other publishers (38)

Yuanzhong Zhang, Rundong Huang, Monica Iepure, Stephen Merriman & Younjin Min. (2024) Geocolloidal interactions and relaxation dynamics under nanoconfinement: Effects of salinity and particle concentration. Journal of Colloid and Interface Science 656, pages 200-213.
Crossref
Mariano E. Brito, Gerhard Nägele & Alan R. Denton. (2023) Effective interactions, structure, and pressure in charge-stabilized colloidal suspensions: Critical assessment of charge renormalization methods. The Journal of Chemical Physics 159:20.
Crossref
Martin Trulsson. (2023) Ion and Site Correlations of Charge Regulating Surfaces: A Simple and Accurate Theory. Langmuir 39:22, pages 7642-7647.
Crossref
Gunnar Kloes, Timothy J. D. Bennett, Alma Chapet-Batlle, Ali Behjatian, Andrew J. Turberfield & Madhavi Krishnan. (2022) Far-Field Electrostatic Signatures of Macromolecular 3D Conformation. Nano Letters 22:19, pages 7834-7840.
Crossref
Tiejun Xiao & Yun Zhou. (2021) A nonlocal electrostatics model for ions in concentrated primitive electrolyte solutions. Electrochimica Acta 392, pages 139040.
Crossref
L A Aguirre-Manzo & P González-Mozuelos. (2021) A self-consistent Ornstein–Zernike jellium for highly charged colloids (microgels) in suspensions with added salt. Journal of Physics: Condensed Matter 33:27, pages 275101.
Crossref
L. A. Aguirre-Manzo & P. González-Mozuelos. (2020) Volume transition effects on the correlations and effective interactions among highly charged microgels. Soft Matter 16:21, pages 5081-5093.
Crossref
L. A. Aguirre-Manzo, M. Ledesma-Motolinía, L. F. Rojas-Ochoa, V. Trappe, J. Callejas-Fernández, C. Haro-Pérez & P. González-Mozuelos. (2019) Accounting for effective interactions among charged microgels. Physical Review E 100:3.
Crossref
Maryam Nojabaee, Hsiu-Wei Cheng, Markus Valtiner, Jelena Popovic & Joachim Maier. (2018) Interfacial Layering and Screening Behavior of Glyme-Based Lithium Electrolytes. The Journal of Physical Chemistry Letters 9:3, pages 577-582.
Crossref
Gregor Cevc. 2018. Encyclopedia of Biophysics. Encyclopedia of Biophysics 1 9 .
Matthew A. Gebbie, Alexander M. Smith, Howard A. Dobbs, Alpha A. Lee, Gregory G. Warr, Xavier Banquy, Markus Valtiner, Mark W. Rutland, Jacob N. Israelachvili, Susan Perkin & Rob Atkin. (2017) Long range electrostatic forces in ionic liquids. Chemical Communications 53:7, pages 1214-1224.
Crossref
P. González-Mozuelos. (2016) Effective electrostatic interactions among charged thermo-responsive microgels immersed in a simple electrolyte. The Journal of Chemical Physics 144:5.
Crossref
Roland Kjellander. (2016) Decay behavior of screened electrostatic surface forces in ionic liquids: the vital role of non-local electrostatics. Physical Chemistry Chemical Physics 18:28, pages 18985-19000.
Crossref
Anuj Chaudhri. 2015. Developability of Biotherapeutics. Developability of Biotherapeutics 135 152 .
Tiejun Xiao. (2015) An analytical longitudinal dielectric function of primitive electrolyte solutions and its application in predicting thermodynamic properties. Electrochimica Acta 178, pages 101-107.
Crossref
Matthew A. GebbieHoward A. DobbsMarkus Valtiner & Jacob N. Israelachvili. (2015) Long-range electrostatic screening in ionic liquids. Proceedings of the National Academy of Sciences 112:24, pages 7432-7437.
Crossref
Suman Chakraborty. 2013. Encyclopedia of Microfluidics and Nanofluidics. Encyclopedia of Microfluidics and Nanofluidics 1 11 .
P. González-Mozuelos, G. I. Guerrero-García & M. Olvera de la Cruz. (2013) An exact method to obtain effective electrostatic interactions from computer simulations: The case of effective charge amplification. The Journal of Chemical Physics 139:6.
Crossref
Jan Forsman. (2009) Density functional theories of surface interactions in salt solutions. The Journal of Chemical Physics 130:6.
Crossref
Erik Wernersson & Roland Kjellander. (2008) Ion correlation forces between uncharged dielectric walls. The Journal of Chemical Physics 129:14.
Crossref
A. Ciach, W. T. Góźdź & G. Stell. (2007) Field theory for size- and charge-asymmetric primitive model of ionic systems: Mean-field stability analysis and pretransitional effects. Physical Review E 75:5.
Crossref
Jan Forsman. (2007) Simple Correlation-Corrected Theory of Systems Described by Screened Coulomb Interactions. Langmuir 23:10, pages 5515-5521.
Crossref
R. Kjellander. (2007) Fundamental aspects of electrostatic interactions and charge renormalization in electrolyte systems. Colloid Journal 69:1, pages 20-28.
Crossref
A Ciach, W T Góźdź & G Stell. (2006) Mesoscopic theory for size- and charge-asymmetric ionic systems: I. The case of extreme asymmetry. Journal of Physics: Condensed Matter 18:5, pages 1629-1648.
Crossref
P. González-Mozuelos, M. S. Yeom & M Olvera de la Cruz. (2005) Molecular multivalent electrolytes: microstructure and screening lengths. The European Physical Journal E 16:2, pages 167-178.
Crossref
Jan Forsman. (2004) A Simple Correlation-Corrected Poisson−Boltzmann Theory. The Journal of Physical Chemistry B 108:26, pages 9236-9245.
Crossref
Rosa Ramirez & Roland Kjellander. (2003) Dressed molecule theory for liquids and solutions: An exact charge renormalization formalism for molecules with arbitrary charge distributions. The Journal of Chemical Physics 119:21, pages 11380-11395.
Crossref
Daniel Léger & Dominique Levesque. (2002) Monte Carlo simulations of charged platelet systems. The Journal of Chemical Physics 116:5, pages 2251-2260.
Crossref
. 2002. Modern Electrochemistry 2A. Modern Electrochemistry 2A 771 1033 .
Johan Ulander, Hans Greberg & Roland Kjellander. (2001) Primary and secondary effective charges for electrical double layer systems with asymmetric electrolytes. The Journal of Chemical Physics 115:15, pages 7144-7160.
Crossref
Emmanuel Trizac. (2001) Electrostatically Swollen Lamellar Stacks and Adiabatic Pair Potential of Highly Charged Platelike Colloids in an Electrolyte. Langmuir 17:16, pages 4793-4798.
Crossref
Johan Ulander & Roland Kjellander. (2001) The decay of pair correlation functions in ionic fluids: A dressed ion theory analysis of Monte Carlo simulations. The Journal of Chemical Physics 114:11, pages 4893-4904.
Crossref
David G. Grier & Sven H. Behrens. 2001. Electrostatic Effects in Soft Matter and Biophysics. Electrostatic Effects in Soft Matter and Biophysics 87 116 .
Roland Kjellander. 2001. Electrostatic Effects in Soft Matter and Biophysics. Electrostatic Effects in Soft Matter and Biophysics 317 366 .
Jean-Pierre HansenHartmut Löwen. (2000) Effective Interactions Between Electric Double Layers. Annual Review of Physical Chemistry 51:1, pages 209-242.
Crossref
Patrick B. Warren. (2000) A theory of void formation in charge-stabilized colloidal suspensions at low ionic strength. The Journal of Chemical Physics 112:10, pages 4683-4698.
Crossref
David G Grier. (2000) When like charges attract: interactions and dynamics in charge-stabilized colloidal suspensions. Journal of Physics: Condensed Matter 12:8A, pages A85-A94.
Crossref
Hans Greberg & Roland Kjellander. (1998) Charge inversion in electric double layers and effects of different sizes for counterions and coions. The Journal of Chemical Physics 108:7, pages 2940-2953.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.