Micellization of the ionic surfactant sodium hexyl sulfate has been studied using atomistic explicit-solvent molecular dynamics simulations with and without excess NaCl or CaCl2. Simulations were performed at surfactant loadings near the critical micellization concentration. Equilibrium micelle size distributions and estimates of the critical micellization concentration obtained from the simulations are in agreement with experimental data. In comparison to the sodium dodecyl sulfate surfactant, the shorter alkyl chain of sodium hexyl sulfate results in increased disorder of the micellar core and water exposure of the hydrocarbon tail groups. However, water and ions do not penetrate into the micellar core even for these weakly micellizing su...
Molecular dynamics (MD) simulation is a useful tool for simulating formulations of surfactant mixtur...
Molecular dynamic (MD) simulations of preassembled sodium dodecyl sulfate (SDS) micelles are carried...
The structural and functional diversity of surfactant systems has attracted simulation works in atom...
Micellization of the ionic surfactant sodium hexyl sulfate has been studied using atomistic explicit...
The presence of salt has a profound effect on the size, shape and structure of sodium dodecyl sulfat...
We use atomistic molecular dynamics simulations to probe the effects of added sodium chloride (NaCl)...
The properties of sodium dodecyl sulfate (SDS) aggregates in saline solutions of excess sodium chlor...
Molecular dynamics simulations of sodium octanoate and sodium dodecylsulfate surfactant systems have...
In a recent contribution, we introduced a new approach for the quantitative prediction of the micell...
We use dissipative particle dynamics (DPD) to study micelle formation in alkyl sulfate surfactants, ...
We propose a method for parameterization of implicit-solvent models for the simulation of self-assem...
Many aspects of the behavior of surfactants have not been well understood due to the coupling of man...
The properties of sodium dodecyl sulfate (SDS) aggregates were studied through extensive molecular d...
Using a 5 ns explicit atom molecular dynamics simulation of a 60 monomer sodium dodecyl sulfate mice...
Molecular dynamics (MD) simulation is a useful tool for simulating formulations of surfactant mixtur...
Molecular dynamic (MD) simulations of preassembled sodium dodecyl sulfate (SDS) micelles are carried...
The structural and functional diversity of surfactant systems has attracted simulation works in atom...
Micellization of the ionic surfactant sodium hexyl sulfate has been studied using atomistic explicit...
The presence of salt has a profound effect on the size, shape and structure of sodium dodecyl sulfat...
We use atomistic molecular dynamics simulations to probe the effects of added sodium chloride (NaCl)...
The properties of sodium dodecyl sulfate (SDS) aggregates in saline solutions of excess sodium chlor...
Molecular dynamics simulations of sodium octanoate and sodium dodecylsulfate surfactant systems have...
In a recent contribution, we introduced a new approach for the quantitative prediction of the micell...
We use dissipative particle dynamics (DPD) to study micelle formation in alkyl sulfate surfactants, ...
We propose a method for parameterization of implicit-solvent models for the simulation of self-assem...
Many aspects of the behavior of surfactants have not been well understood due to the coupling of man...
The properties of sodium dodecyl sulfate (SDS) aggregates were studied through extensive molecular d...
Using a 5 ns explicit atom molecular dynamics simulation of a 60 monomer sodium dodecyl sulfate mice...
Molecular dynamics (MD) simulation is a useful tool for simulating formulations of surfactant mixtur...
Molecular dynamic (MD) simulations of preassembled sodium dodecyl sulfate (SDS) micelles are carried...
The structural and functional diversity of surfactant systems has attracted simulation works in atom...