The properties of sodium dodecyl sulfate (SDS) aggregates were studied through extensive molecular dynamics simulations with explicit solvent. First, we provide a parametrization of the model within Gromacs. Then, we probe the kinetics of aggregation by starting from a random solution of SDS molecules and letting the system explore its kinetic pathway during the aggregation of multiple units. We observe a structural transition for the surfactant aggregates brought upon by a change in temperature. Specifically, at low temperatures, the surfactants form crystalline aggregates, whereas at elevated temperatures, they form micelles. We also investigate the dependence of aggregation kinetics on surfactant concentration and report on the molecular...
Adsorption of surfactants at the water/vapor interface depends upon their chemical potential at the ...
In a recent contribution, we introduced a new approach for the quantitative prediction of the micell...
Molecular dynamics (MD) simulations were conducted for systems in vacuo consisting of n AOT anions (...
The properties of sodium dodecyl sulfate (SDS) aggregates were studied through extensive molecular d...
The properties of sodium dodecyl sulfate (SDS) aggregates in saline solutions of excess sodium chlor...
Experimental investigations using mass spectrometry have established that surfactant molecules are a...
Experimental investigations using mass spectrometry have established that surfactant molecules are a...
Micellization of the ionic surfactant sodium hexyl sulfate has been studied using atomistic explicit...
The dynamical and aggregation behaviors of sodium dodecyl sulfate (SDS) in 1-ethyl-3-methylimidazol...
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...
Many aspects of the behavior of surfactants have not been well understood due to the coupling of man...
Using an atom based force field, molecular dynamics (MD) simulations of 54 dodecylphosphocholine (DP...
Using an atom based force field, molecular dynamics (MD) simulations of 54 dodecylphosphocholine (DP...
Adsorption of surfactants at the water/vapor interface depends upon their chemical potential at the ...
In a recent contribution, we introduced a new approach for the quantitative prediction of the micell...
Molecular dynamics (MD) simulations were conducted for systems in vacuo consisting of n AOT anions (...
The properties of sodium dodecyl sulfate (SDS) aggregates were studied through extensive molecular d...
The properties of sodium dodecyl sulfate (SDS) aggregates in saline solutions of excess sodium chlor...
Experimental investigations using mass spectrometry have established that surfactant molecules are a...
Experimental investigations using mass spectrometry have established that surfactant molecules are a...
Micellization of the ionic surfactant sodium hexyl sulfate has been studied using atomistic explicit...
The dynamical and aggregation behaviors of sodium dodecyl sulfate (SDS) in 1-ethyl-3-methylimidazol...
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...
Many aspects of the behavior of surfactants have not been well understood due to the coupling of man...
Using an atom based force field, molecular dynamics (MD) simulations of 54 dodecylphosphocholine (DP...
Using an atom based force field, molecular dynamics (MD) simulations of 54 dodecylphosphocholine (DP...
Adsorption of surfactants at the water/vapor interface depends upon their chemical potential at the ...
In a recent contribution, we introduced a new approach for the quantitative prediction of the micell...
Molecular dynamics (MD) simulations were conducted for systems in vacuo consisting of n AOT anions (...