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Physical Review Letters, ISSN 0031-9007, 07/2010, Volume 105, Issue 4, p. 048303
The electrostatic interaction of charged spherical colloids trapped at an interface between a nonpolar medium and water is analyzed. Complementary experiments... 
PHYSICS, MULTIDISCIPLINARY | CRYSTALS | POISSON-BOLTZMANN EQUATION
Journal Article
Journal of Chemical Theory and Computation, ISSN 1549-9618, 04/2013, Volume 9, Issue 4, pp. 2126 - 2136
Implicit methods for modeling protein electrostatics require dielectric properties of the system to be known, in particular, the value of the dielectric... 
CYTOCHROME-C | PK(A) VALUES | POISSON-BOLTZMANN | STABILITY | PHYSICS, ATOMIC, MOLECULAR & CHEMICAL | CHEMISTRY, PHYSICAL | RELAXATION | FREE-ENERGIES | RESIDUES | SOLVENT | WATER | PREDICTION
Journal Article
Protein Science, ISSN 0961-8368, 01/2018, Volume 27, Issue 1, pp. 112 - 128
The Adaptive Poisson-Boltzmann Solver (APBS) software was developed to solve the equations of continuum electrostatics for large biomolecular assemblages that... 
solvation and electrostatics | Biomedical applications | Poisson-Boltzmann | continuum electrostatics
Journal Article
Journal of Computational Chemistry, ISSN 0192-8651, 08/2008, Volume 29, Issue 11, pp. 1859 - 1865
Journal Article
European Journal of Mechanics / B Fluids, ISSN 0997-7546, 03/2020, Volume 80, pp. 13 - 25
In the present study, electroosmotic and pressure driven Newtonian nanofluid flow in a microchannel with constant temperature boundary condition is studied via... 
Electroosmotic driven | Lattice Poisson Boltzmann method | Nanofluid | Microchannel | Heat transfer
Journal Article
Faraday Discussions, ISSN 1359-6640, 7/2017, Volume 199, pp. 487 - 51
We analyze, theoretically and by means of molecular dynamics (MD) simulations, the generation of mechanical force by a polyelectrolyte (PE) chain grafted to a... 
FRICTION | CHEMISTRY, PHYSICAL | ENERGY-DISSIPATION | POISSON-BOLTZMANN | REGULATED FORCE | BRUSHES
Journal Article
Physics Letters A, ISSN 0375-9601, 12/2019, Volume 383, Issue 36, p. 126030
The free energy of nonideal two-component thermal plasma is calculated using the Poisson-Boltzmann equation. The possibility of the existence of a metastable... 
Nonideal thermal plasma | Metastable state | Poisson-Boltzmann equation | Free energy | PHYSICS, MULTIDISCIPLINARY
Journal Article
Physical Review Letters, ISSN 0031-9007, 07/2018, Volume 121, Issue 5, p. 058001
We study a system composed of like-charged cylinders and dumbbell-like counterions, with the focus laid on the role of the internal structure of counterions,... 
POLYELECTROLYTES | POISSON-BOLTZMANN | POLYAMINES | PHYSICS, MULTIDISCIPLINARY | DNA | ROD | ATTRACTION | MACROIONS
Journal Article
The Journal of Physical Chemistry B, ISSN 1520-6106, 05/2007, Volume 111, Issue 20, pp. 5545 - 5557
Applications of ionic liquids at electrified interfaces to energy-storage systems, electrowetting devices, or nanojunction gating media cannot proceed without... 
INTERFACIAL RELAXATION | MOLTEN-SALTS | CHARGED SYSTEMS | CHEMISTRY, PHYSICAL | COMPUTER-SIMULATION | SPACE-CHARGE | MODEL | DENSITY-FUNCTIONAL THEORY | ELECTRIC DOUBLE-LAYERS | ELECTROLYTES | POISSON-BOLTZMANN EQUATION | Poisson's equation | Usage | Atomic properties | Density functionals | Chemical properties | Ionic solutions | Transport theory
Journal Article
Journal Article
by Jo, S and Kim, T and Iyer, VG and Im, W
JOURNAL OF COMPUTATIONAL CHEMISTRY, ISSN 0192-8651, 08/2008, Volume 29, Issue 11, pp. 1859 - 1865
Journal Article
Advances in Colloid and Interface Science, ISSN 0001-8686, 01/2017, Volume 239, pp. 2 - 16
Oppositely charged polymers can undergo the process of complex coacervation, which refers to a liquid–liquid phase separation driven by electrostatic... 
Polyelectrolytes | Complexation | Coacervation | Electrostatics | Polymer physics | AQUEOUS-SOLUTIONS | BLOCK-COPOLYMERS | OPPOSITELY CHARGED POLYELECTROLYTES | CHEMISTRY, PHYSICAL | INTERFACIAL-TENSION | PHASE-SEPARATION | COUNTERION CONDENSATION | BY-LAYER ASSEMBLIES | THERMAL TRANSITIONS | POISSON-BOLTZMANN | FLEXIBLE POLYELECTROLYTES