The methods to compute the excess entropy and the entropy of solvation using liquid water as a test system were studied. The accuracy and convergence behavior of five methods based on thermodynamic integration and perturbation techniques was evaluated. Through the thermodynamic integration accurate entropy differences were obtained in which many copies of a solute were desolvated. Only two methods yield useful results, the calculation of solute-solvent entropy through thermodynamic integration and the calculation of solvation entropy through the temperature derivative of the corresponding free-energy difference, when one solute molecule is involved
Presented here is the two-phase thermodynamic (2PT) model for the calculation of energy and entropy ...
While much is known about the properties of small organic molecules in aqueous solution, one quantit...
Solvation free energies can now be calculated precisely from molecular simulations, providing a valu...
While the determination of free-energy differences by MD simulation has become a standard procedure ...
*S Supporting Information ABSTRACT: A statistical-mechanical framework for estima-tion of solvation ...
The aim of this thesis is to develop improved methods for calculating the free energy, entropy and e...
The entropies of molecules in solution are often calculated using gas phase formulas. It is assumed ...
Abstract: Because of its fundamental importance to molecular biology, great interest has continued t...
A high level polarizable force field is used to study the temperature dependence of hydrophobic hydr...
A high level polarizable force field is used to study the temperature dependence of hydrophobic hydr...
A high level polarizable force field is used to study the temperature dependence of hydrophobic hydr...
We explore different schemes for improved accuracy of entropy calculations in aqueous liquid mixture...
Presented here is the two-phase thermodynamic (2PT) model for the calculation of energy and entropy ...
Presented here is the two-phase thermodynamic (2PT) model for the calculation of energy and entropy ...
A method based on molecular dynamics simulations which employ two distinct levels of theory is propo...
Presented here is the two-phase thermodynamic (2PT) model for the calculation of energy and entropy ...
While much is known about the properties of small organic molecules in aqueous solution, one quantit...
Solvation free energies can now be calculated precisely from molecular simulations, providing a valu...
While the determination of free-energy differences by MD simulation has become a standard procedure ...
*S Supporting Information ABSTRACT: A statistical-mechanical framework for estima-tion of solvation ...
The aim of this thesis is to develop improved methods for calculating the free energy, entropy and e...
The entropies of molecules in solution are often calculated using gas phase formulas. It is assumed ...
Abstract: Because of its fundamental importance to molecular biology, great interest has continued t...
A high level polarizable force field is used to study the temperature dependence of hydrophobic hydr...
A high level polarizable force field is used to study the temperature dependence of hydrophobic hydr...
A high level polarizable force field is used to study the temperature dependence of hydrophobic hydr...
We explore different schemes for improved accuracy of entropy calculations in aqueous liquid mixture...
Presented here is the two-phase thermodynamic (2PT) model for the calculation of energy and entropy ...
Presented here is the two-phase thermodynamic (2PT) model for the calculation of energy and entropy ...
A method based on molecular dynamics simulations which employ two distinct levels of theory is propo...
Presented here is the two-phase thermodynamic (2PT) model for the calculation of energy and entropy ...
While much is known about the properties of small organic molecules in aqueous solution, one quantit...
Solvation free energies can now be calculated precisely from molecular simulations, providing a valu...