Electric charges and electrostatic interactions are ubiquitous in soft-matter and biological systems. Soft materials are typically composed of macromolecules such as polymers, colloids and proteins which often acquire surface charges when dissolved in a polar solvent like water. Charged macromolecule, called macro-ions, such as micelles, DNA, dendrimers and other nanoparticles are important in Gens therapy, drug delivery, and other applications in biotechnology. In our study the effect of salt concentration on the electrostatic interaction in asymmetric electrolyte is investigated using Poisson-Boltzmann (PB) model. From our study we conclude that by increasing salt concentration, the surface electric potential of the macroion and the debey...
AbstractIn this paper, we present results of computer simulations for a primitive model of asymmetri...
Protein aggregation via liquid–liquid phase separation (LLPS) is ubiquitous in nature and is intimat...
We present a soft-potential-enhanced Poisson–Boltzmann (SPB) theory to efficiently capture ion distr...
In this talk, I discuss two electrostatic effects that have profound effects in macromol. and interf...
The results of variable dielectric coefficient Poisson-Boltzmann calculations of the counter-ion con...
We present a soft-potential-enhanced Poisson-Boltzmann (SPB) theory to efficiently capture ion distr...
We study electrostatic mechanisms of the destabilization of highly asymmetric electrolytes. For this...
We present a model for calculating the net and effective electrical charge of globular macromolecule...
The salt dependence of the binding free energy of five protein-protein hetero-dimers and two homo-di...
The interaction between charged objects in an electrolyte solution is a fundamental question in soft...
Attractive interactions between identical like-charged macroions in aqueous multivalent salt solutio...
Hypothesis A detailed understanding of the influence of electrolytes on the conformation of polyele...
AbstractThe salt dependence of the binding free energy of five protein-protein hetero-dimers and two...
In this paper, we develop a simple theory to study the effects of ionic size on ionic distributions ...
The electrical double layer is examined using a generalized Poisson-Boltzmann equation that takes in...
AbstractIn this paper, we present results of computer simulations for a primitive model of asymmetri...
Protein aggregation via liquid–liquid phase separation (LLPS) is ubiquitous in nature and is intimat...
We present a soft-potential-enhanced Poisson–Boltzmann (SPB) theory to efficiently capture ion distr...
In this talk, I discuss two electrostatic effects that have profound effects in macromol. and interf...
The results of variable dielectric coefficient Poisson-Boltzmann calculations of the counter-ion con...
We present a soft-potential-enhanced Poisson-Boltzmann (SPB) theory to efficiently capture ion distr...
We study electrostatic mechanisms of the destabilization of highly asymmetric electrolytes. For this...
We present a model for calculating the net and effective electrical charge of globular macromolecule...
The salt dependence of the binding free energy of five protein-protein hetero-dimers and two homo-di...
The interaction between charged objects in an electrolyte solution is a fundamental question in soft...
Attractive interactions between identical like-charged macroions in aqueous multivalent salt solutio...
Hypothesis A detailed understanding of the influence of electrolytes on the conformation of polyele...
AbstractThe salt dependence of the binding free energy of five protein-protein hetero-dimers and two...
In this paper, we develop a simple theory to study the effects of ionic size on ionic distributions ...
The electrical double layer is examined using a generalized Poisson-Boltzmann equation that takes in...
AbstractIn this paper, we present results of computer simulations for a primitive model of asymmetri...
Protein aggregation via liquid–liquid phase separation (LLPS) is ubiquitous in nature and is intimat...
We present a soft-potential-enhanced Poisson–Boltzmann (SPB) theory to efficiently capture ion distr...