Abstract: Because of its fundamental importance to molecular biology, great interest has continued to persist in developing novel techniques to efficiently characterize the thermo-dynamic and structural features of liquid water. A particularly fruitful approach, first applied to liquid water by Lazaridis and Karplus, is to use molecular dynamics or Monte Carlo simulations to collect the required statistics to integrate the inhomogeneous solvation theory equations for the solvation enthalpy and entropy. We here suggest several technical improvements to this approach, which may facilitate faster convergence and greater accuracy. In particular, we devise a nonparametric kth nearest-neighbors (NN)-based approach to estimate the water-water corr...
Presented here is the two-phase thermodynamic (2PT) model for the calculation of energy and entropy ...
We present the absolute enthalpy, entropy, heat capacity, and free energy of liquid water at ambient...
We present the absolute enthalpy, entropy, heat capacity, and free energy of liquid water at ambient...
*S Supporting Information ABSTRACT: A statistical-mechanical framework for estima-tion of solvation ...
The methods to compute the excess entropy and the entropy of solvation using liquid water as a test ...
Water is one of the simplest molecules in existence, but also one of the most important in biologica...
A high level polarizable force field is used to study the temperature dependence of hydrophobic hydr...
Inhomogeneous fluid solvation theory (IFST) and free energy perturbation (FEP) calculations were per...
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...
Abstract: We use molecular dynamics to compute the pair distribution function of liquid TIP4P water ...
While the determination of free-energy differences by MD simulation has become a standard procedure ...
Water molecules play a vital role in biological and engineered systems by controlling intermolecular...
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 ...
Presented here is the two-phase thermodynamic (2PT) model for the calculation of energy and entropy ...
We present the absolute enthalpy, entropy, heat capacity, and free energy of liquid water at ambient...
We present the absolute enthalpy, entropy, heat capacity, and free energy of liquid water at ambient...
*S Supporting Information ABSTRACT: A statistical-mechanical framework for estima-tion of solvation ...
The methods to compute the excess entropy and the entropy of solvation using liquid water as a test ...
Water is one of the simplest molecules in existence, but also one of the most important in biologica...
A high level polarizable force field is used to study the temperature dependence of hydrophobic hydr...
Inhomogeneous fluid solvation theory (IFST) and free energy perturbation (FEP) calculations were per...
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...
Abstract: We use molecular dynamics to compute the pair distribution function of liquid TIP4P water ...
While the determination of free-energy differences by MD simulation has become a standard procedure ...
Water molecules play a vital role in biological and engineered systems by controlling intermolecular...
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 ...
Presented here is the two-phase thermodynamic (2PT) model for the calculation of energy and entropy ...
We present the absolute enthalpy, entropy, heat capacity, and free energy of liquid water at ambient...
We present the absolute enthalpy, entropy, heat capacity, and free energy of liquid water at ambient...