We present results from molecular dynamics simulations performed on reverse micelles immersed in cyclohexane. Three different inner polar phases are considered: water (W), formamide (FM), and an equimolar mixture of the two solvents. In all cases, the surfactant was sodium bis(2-ethylhexyl) sulfosuccinate (usually known as AOT). The initial radii of the micelles were R∼15 Å, while the corresponding polar solvent-to-surfactant molar ratios were intermediate between w0 =4.3 for FM and w0 =7 for W. The resulting overall shapes of the micelles resemble distorted ellipsoids, with average eccentricities of the order of ∼0.75. Moreover, the pattern of the surfactant layer separating the inner pool from the non-polar phase looks highly irregular, w...
The structure of a sodium octanoate micelle, consisting of 15 monomers in aqueous solution, has been...
We use atomistic molecular dynamics simulations to probe the effects of added sodium chloride (NaCl)...
The dynamics of water molecules and ions near an aqueous micellar interface is a subject of intense ...
We present results from molecular dynamics simulations performed on reverse micelles immersed in cyc...
We present the results of a molecular dynamics (MD) simulation study of the effects of counterion ty...
We report results obtained from molecular dynamics (MD) experiments of benzylhexadecyldimethylammoni...
Aqueous reverse micelles, which are surfactant aggregates in nonpolar solvents that enclose packets ...
Molecular dynamics simulations of sodium octanoate and sodium dodecylsulfate surfactant systems have...
The bis(2-ethylhexyl)sulfosuccinate (AOT) reverse micelle is a nanometer-sized quasispherical aggreg...
Using a 5 ns explicit atom molecular dynamics simulation of a 60 monomer sodium dodecyl sulfate mice...
We report results obtained from molecular dynamics (MD) experiments of benzylhexadecyldimethylammoni...
We present a study of the microscopic dynamics of water trapped in reverse non-ionic micelles by mea...
In this work, we have investigated the behavior of 4-aminophthalimide (4-AP) in solvent mixtures of ...
The sorbitan monooleate (Span 80)/poly(oxyethylene) sorbitan monooleate (Tween 80) reverse micelles...
We present molecular dynamics simulation results for solvation dynamics of a simple diatomic solute ...
The structure of a sodium octanoate micelle, consisting of 15 monomers in aqueous solution, has been...
We use atomistic molecular dynamics simulations to probe the effects of added sodium chloride (NaCl)...
The dynamics of water molecules and ions near an aqueous micellar interface is a subject of intense ...
We present results from molecular dynamics simulations performed on reverse micelles immersed in cyc...
We present the results of a molecular dynamics (MD) simulation study of the effects of counterion ty...
We report results obtained from molecular dynamics (MD) experiments of benzylhexadecyldimethylammoni...
Aqueous reverse micelles, which are surfactant aggregates in nonpolar solvents that enclose packets ...
Molecular dynamics simulations of sodium octanoate and sodium dodecylsulfate surfactant systems have...
The bis(2-ethylhexyl)sulfosuccinate (AOT) reverse micelle is a nanometer-sized quasispherical aggreg...
Using a 5 ns explicit atom molecular dynamics simulation of a 60 monomer sodium dodecyl sulfate mice...
We report results obtained from molecular dynamics (MD) experiments of benzylhexadecyldimethylammoni...
We present a study of the microscopic dynamics of water trapped in reverse non-ionic micelles by mea...
In this work, we have investigated the behavior of 4-aminophthalimide (4-AP) in solvent mixtures of ...
The sorbitan monooleate (Span 80)/poly(oxyethylene) sorbitan monooleate (Tween 80) reverse micelles...
We present molecular dynamics simulation results for solvation dynamics of a simple diatomic solute ...
The structure of a sodium octanoate micelle, consisting of 15 monomers in aqueous solution, has been...
We use atomistic molecular dynamics simulations to probe the effects of added sodium chloride (NaCl)...
The dynamics of water molecules and ions near an aqueous micellar interface is a subject of intense ...