The aggregation behavior of asphaltene in aqueous solution is systematically investigated based on a classical molecular dynamics study. In this work, a novel approach is adopted in order to investigate the structural and dynamical properties of the asphaltene nanoaggregates using different water models. The end-to-end distance of the asphaltene molecule is probed in order to understand the aggregation behavior in aqueous solution. The accuracy of different water models, that is, simple point charge, TIP4P-D, and TIP5P, is thoroughly investigated. In order to probe the dynamical properties of the asphaltene nanoaggregates, the transport coefficients, namely, diffusion coefficient and shear viscosity, are computed. The obtained results highl...
We have performed a molecular-simulation-based study to explore some of the underlying mechanisms of...
The scaling and modeling of the viscosity of suspensions of asphaltene nanoaggregates is carried out...
The aggregation and structure of polar molecules in nonpolar media may have a profound effect on bul...
It is well known that asphaltene molecules play a significant role in stabilizing emulsions of water...
It is well known that asphaltene molecules play a significant role in stabilizing emulsions of water...
International audienceThis paper addresses molecular dynamic simulations to correlate the aggregatio...
In order to investigate the aggregation mechanisms of asphaltenes in toluene, a series of molecular ...
A series of molecular dynamics simulations were performed to investigate the effect of aliphatic sid...
The aggregation behavior of model molecules of asphaltene subfractions A1 and A2 dissolved in heptan...
International audienceIn this paper the aggregation of asphaltenes is studied for two asphaltene mol...
We report classical atomistic molecular dynamics simulations of four structurally diverse model asph...
We have investigated the interfacial behavior of asphaltene molecules at the oil–water interface usi...
Asphaltenes are known as the cholesterol of crude oil. They form nanoaggregates, precipitate, adhe...
The aggregation behavior of asphaltene in the toluene-hexane mixture is systematically investigated ...
Asphaltenes are known as the 'cholesterol' of crude oil. They form nano-aggregates, precipitate, adh...
We have performed a molecular-simulation-based study to explore some of the underlying mechanisms of...
The scaling and modeling of the viscosity of suspensions of asphaltene nanoaggregates is carried out...
The aggregation and structure of polar molecules in nonpolar media may have a profound effect on bul...
It is well known that asphaltene molecules play a significant role in stabilizing emulsions of water...
It is well known that asphaltene molecules play a significant role in stabilizing emulsions of water...
International audienceThis paper addresses molecular dynamic simulations to correlate the aggregatio...
In order to investigate the aggregation mechanisms of asphaltenes in toluene, a series of molecular ...
A series of molecular dynamics simulations were performed to investigate the effect of aliphatic sid...
The aggregation behavior of model molecules of asphaltene subfractions A1 and A2 dissolved in heptan...
International audienceIn this paper the aggregation of asphaltenes is studied for two asphaltene mol...
We report classical atomistic molecular dynamics simulations of four structurally diverse model asph...
We have investigated the interfacial behavior of asphaltene molecules at the oil–water interface usi...
Asphaltenes are known as the cholesterol of crude oil. They form nanoaggregates, precipitate, adhe...
The aggregation behavior of asphaltene in the toluene-hexane mixture is systematically investigated ...
Asphaltenes are known as the 'cholesterol' of crude oil. They form nano-aggregates, precipitate, adh...
We have performed a molecular-simulation-based study to explore some of the underlying mechanisms of...
The scaling and modeling of the viscosity of suspensions of asphaltene nanoaggregates is carried out...
The aggregation and structure of polar molecules in nonpolar media may have a profound effect on bul...