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RSC Advances|May 6, 2022
Size and charge correlations in spherical electric double layers: a case study with fully asymmetric mixed electrolytes within the solvent primitive modelChandra N PatraThe Journal of Chemical Physics|August 12, 2004
Structure of inhomogeneous polymer solutions: a density functional approachChandra N PatraThe Journal of Chemical Physics|November 17, 2014
Structure of spherical electric double layers with fully asymmetric electrolytes: a systematic study by Monte Carlo simulations and density functional theoryChandra N PatraThe Journal of Chemical Physics|March 3, 2007
Effect of attractions on the structure of polymer solutions confined between surfaces: a density functional approachChandra N PatraThe Journal of Physical Chemistry. B|August 13, 2010
Structure of spherical electric double layers containing mixed electrolytes: a systematic study by Monte Carlo simulations and density functional theoryChandra N PatraThe Journal of Physical Chemistry. B|September 26, 2009
Molecular solvent model of spherical electric double layers: a systematic study by Monte Carlo simulations and density functional theoryChandra N PatraThe Journal of Chemical Physics|September 15, 2014
Structure of fluid mixtures near a solute: a density functional approachChandra N PatraThe Journal of Chemical Physics|July 28, 2007
Structure of spherical electric double layers: a density functional approachTeena Goel, Chandra N PatraPhysical Review. E, Statistical, Nonlinear, and Soft Matter Physics|September 21, 2002
Simple weighted density functional approach to the structure of polymers at interfacesChandra N Patra, Swapan K GhoshThe Journal of Chemical Physics|December 3, 2008
Structure of cylindrical electric double layers: a systematic study by Monte Carlo simulations and density functional theoryTeena Goel, Chandra N Patra, Swapan K Ghosh, et al.Pageof 2