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The Journal of Chemical Physics|December 24, 2008
On the origin of the electrostatic potential difference at a liquid-vacuum interfaceEdward Harder, Benoît RouxJournal of the American Chemical Society|February 10, 2009
Many-body polarization effects and the membrane dipole potentialEdward Harder, Alexander D Mackerell, Benoît RouxThe Journal of Physical Chemistry. B|February 28, 2008
Understanding the dielectric properties of liquid amides from a polarizable force fieldEdward Harder, Victor M Anisimov, Troy Whitfield, et al.The Journal of Physical Chemistry. B|July 10, 2009
Molecular dynamics study of a polymeric reverse osmosis membraneEdward Harder, D Eric Walters, Yaroslav D Bodnar, et al.Journal of Chemical Information and Modeling|April 7, 2018
Polarizable Force Field for Molecular Ions Based on the Classical Drude OscillatorFang-Yu Lin, Pedro E M Lopes, Edward Harder, et al.Journal of Chemical Theory and Computation|July 26, 2011
A theoretical study of aqueous solvation of K comparing ab initio, polarizable, and fixed-charge modelsTroy W Whitfield, Sameer Varma, Edward Harder, et al.The Journal of Physical Chemistry. B|July 12, 2013
A polarizable force field of dipalmitoylphosphatidylcholine based on the classical Drude model for molecular dynamics simulations of lipidsJanamejaya Chowdhary, Edward Harder, Pedro E M Lopes, et al.Journal of Chemical Theory and Computation|March 20, 2010
Simulating Monovalent and Divalent Ions in Aqueous Solution Using a Drude Polarizable Force FieldHaibo Yu, Troy W Whitfield, Edward Harder, et al.Annual Review of Biophysics and Biomolecular Structure|May 5, 2005
Ion conduction and selectivity in K(+) channelsBenoît RouxThe Journal of Physical Chemistry. B|July 23, 2020
Continuum Electrostatic Behavior of a 3D-RISM TheoryBenoît RouxPageof 33