A coarse-grained model comprising short- and long-range effective potentials, parametrized with the iterative Boltzmann inversion (IBI) method, is presented for capturing micelle formation in aqueous solutions of ionic surfactants using as a model system sodium dodecyl sulfate (SDS). In the coarse-grained (CG) model, each SDS molecule is represented as a sequence of four beads while each water molecule is modeled as a single bead. The proposed CG scheme involves ten potential energy functions: four of them describe bonded interactions and control the distribution functions of intramolecular degrees of freedom (bond lengths, valence angles, and dihedrals) along an SDS molecule while the other six account for intermolecular interactions betwe...
Dissipative particle dynamics simulation with novel model is applied to predict aggregation in ionic...
The soft matter field considers a wide class of objects such as liquids, polymers, gels, colloids, l...
The soft matter field considers a wide class of objects such as liquids, polymers, gels, colloids, l...
Molecular simulations have become a mainstream tool of the physical sciences. In spite of their succ...
In a recent contribution, we introduced a new approach for the quantitative prediction of the micell...
We propose a method for parameterization of implicit-solvent models for the simulation of self-assem...
We propose a method for parameterization of implicit-solvent models for the simulation of self-assem...
The structural and functional diversity of surfactant systems has attracted simulation works in atom...
International audienceA systematic approach to develop mesoscopic models for a series of linear anio...
International audienceA systematic approach to develop mesoscopic models for a series of linear anio...
International audienceA systematic approach to develop mesoscopic models for a series of linear anio...
International audienceA systematic approach to develop mesoscopic models for a series of linear anio...
We perform coarse-grained molecular dynamics simulations for sodium dodecyl sulfate (SDS) surfactant...
International audienceA systematic approach to develop mesoscopic models for a series of linear anio...
We use dissipative particle dynamics (DPD) to study micelle formation in alkyl sulfate surfactants, ...
Dissipative particle dynamics simulation with novel model is applied to predict aggregation in ionic...
The soft matter field considers a wide class of objects such as liquids, polymers, gels, colloids, l...
The soft matter field considers a wide class of objects such as liquids, polymers, gels, colloids, l...
Molecular simulations have become a mainstream tool of the physical sciences. In spite of their succ...
In a recent contribution, we introduced a new approach for the quantitative prediction of the micell...
We propose a method for parameterization of implicit-solvent models for the simulation of self-assem...
We propose a method for parameterization of implicit-solvent models for the simulation of self-assem...
The structural and functional diversity of surfactant systems has attracted simulation works in atom...
International audienceA systematic approach to develop mesoscopic models for a series of linear anio...
International audienceA systematic approach to develop mesoscopic models for a series of linear anio...
International audienceA systematic approach to develop mesoscopic models for a series of linear anio...
International audienceA systematic approach to develop mesoscopic models for a series of linear anio...
We perform coarse-grained molecular dynamics simulations for sodium dodecyl sulfate (SDS) surfactant...
International audienceA systematic approach to develop mesoscopic models for a series of linear anio...
We use dissipative particle dynamics (DPD) to study micelle formation in alkyl sulfate surfactants, ...
Dissipative particle dynamics simulation with novel model is applied to predict aggregation in ionic...
The soft matter field considers a wide class of objects such as liquids, polymers, gels, colloids, l...
The soft matter field considers a wide class of objects such as liquids, polymers, gels, colloids, l...