In this paper we introduce a mean field method for simulating complex molecular systems like liquids and solutions. Using well-established theoretical principles and models, we obtained a relatively simple approach which seems to provide a reliable description of the bulk molecular behavior of liquid waler. Moreover, we have applied this approach to study simple solutes in solution, like sodium and chloride ions and acetone. Comparison with standard simulations, performed with periodic boundary conditions, shows that such a mean field method can reproduce the same structural and thermodynamical properties at low computational costs and represents a valid alternative for sirnulating solute-solvent systems, like solutions of large biomolecule...
One of the major problems in computer simulations of solvated macromolecules, like proteins in an a...
A method is presented to enhance the efficiency of simulations of lipid vesicles. The method increas...
Historically, reliable data for the thermophysical properties of fluids could only be obtained from ...
In this paper we introduce a mean field method for simulating complex molecular systems like liquids...
Molecular simulations have become a mainstream tool of the physical sciences. In spite of their succ...
A comprehensive view of the current methods for modeling solvent environments with contributions fro...
Molecular dynamics simulations are used to construct a new water model, to investigate the effects o...
Molecular dynamics (MD) simulations are an important tool for studying various interesting phenomena...
The simulation of open molecular systems requires explicit or implicit reservoirs of energy and part...
Abstract: Two approaches are followed to understand how molecular interactions influence the macrosc...
Water activity and related thermodynamic properties are calculated for several aqueous solutions usi...
This thesis is concerned with theoretical studies of aqueous solutions and biomolecular systems. Par...
The solvent environment of molecules plays a very important role in their structure and function. In...
The force fields used in computer simulations play an important role in describing a particular syst...
We present an integrated computational tool, rooted in density functional theory, the polarizable co...
One of the major problems in computer simulations of solvated macromolecules, like proteins in an a...
A method is presented to enhance the efficiency of simulations of lipid vesicles. The method increas...
Historically, reliable data for the thermophysical properties of fluids could only be obtained from ...
In this paper we introduce a mean field method for simulating complex molecular systems like liquids...
Molecular simulations have become a mainstream tool of the physical sciences. In spite of their succ...
A comprehensive view of the current methods for modeling solvent environments with contributions fro...
Molecular dynamics simulations are used to construct a new water model, to investigate the effects o...
Molecular dynamics (MD) simulations are an important tool for studying various interesting phenomena...
The simulation of open molecular systems requires explicit or implicit reservoirs of energy and part...
Abstract: Two approaches are followed to understand how molecular interactions influence the macrosc...
Water activity and related thermodynamic properties are calculated for several aqueous solutions usi...
This thesis is concerned with theoretical studies of aqueous solutions and biomolecular systems. Par...
The solvent environment of molecules plays a very important role in their structure and function. In...
The force fields used in computer simulations play an important role in describing a particular syst...
We present an integrated computational tool, rooted in density functional theory, the polarizable co...
One of the major problems in computer simulations of solvated macromolecules, like proteins in an a...
A method is presented to enhance the efficiency of simulations of lipid vesicles. The method increas...
Historically, reliable data for the thermophysical properties of fluids could only be obtained from ...