We present a new approach for predicting solvation free energies in non-aqueous solvents. Utilizing the corresponding states principle, we estimate solvent Lennard-Jones parameters directly from their critical points. Combined with atomic solutes and pressure corrected three-dimensional reference interaction site model (3D-RISM/PC+), the model gives accurate predictions for a wide range of non-polar solvents, including olive oil. The results, obtained without electrostatic interactions and with a very coarse-grained solvent provide an interesting alternative to widely used and heavily parametrized models
The solvation free energy is an essential quantity in force field development and in numerous applic...
�� 2019 The Authors. Published by the Royal Society of Chemistry. This is an open access article ava...
Due to the importance of the Gibbs free energy of solvation in understanding many physicochemical ph...
We present a new approach for predicting solvation free energies in non-aqueous solvents. Utilizing ...
We present a new approach for predicting solvation free energies in non-aqueous solvents. Utilizing ...
The potential to predict Solvation Free Energies (SFEs) in any solvent using a machine learning (ML)...
The potential to predict Solvation Free Energies (SFEs) in any solvent using a machine learning (ML)...
The potential to predict Solvation Free Energies (SFEs) in any solvent using a machine learning (ML)...
The Gibbs free energy of solvation for a given solute in a solvent, usually considered at infinite d...
We report a method to predict the absolute solvation free energy (SFE) of small organic and druglike...
We report a method to predict the absolute solvation free energy (SFE) of small organic and druglike...
We report a method to predict the absolute solvation free energy (SFE) of small organic and druglike...
We propose an efficient and accurate non-iterative method, dubbed uESE, for calculating solvation fr...
We have developed a fast procedure to predict solvation free energies for both organic and biologica...
The solvation free energy is an essential quantity in force field development and in numerous applic...
The solvation free energy is an essential quantity in force field development and in numerous applic...
�� 2019 The Authors. Published by the Royal Society of Chemistry. This is an open access article ava...
Due to the importance of the Gibbs free energy of solvation in understanding many physicochemical ph...
We present a new approach for predicting solvation free energies in non-aqueous solvents. Utilizing ...
We present a new approach for predicting solvation free energies in non-aqueous solvents. Utilizing ...
The potential to predict Solvation Free Energies (SFEs) in any solvent using a machine learning (ML)...
The potential to predict Solvation Free Energies (SFEs) in any solvent using a machine learning (ML)...
The potential to predict Solvation Free Energies (SFEs) in any solvent using a machine learning (ML)...
The Gibbs free energy of solvation for a given solute in a solvent, usually considered at infinite d...
We report a method to predict the absolute solvation free energy (SFE) of small organic and druglike...
We report a method to predict the absolute solvation free energy (SFE) of small organic and druglike...
We report a method to predict the absolute solvation free energy (SFE) of small organic and druglike...
We propose an efficient and accurate non-iterative method, dubbed uESE, for calculating solvation fr...
We have developed a fast procedure to predict solvation free energies for both organic and biologica...
The solvation free energy is an essential quantity in force field development and in numerous applic...
The solvation free energy is an essential quantity in force field development and in numerous applic...
�� 2019 The Authors. Published by the Royal Society of Chemistry. This is an open access article ava...
Due to the importance of the Gibbs free energy of solvation in understanding many physicochemical ph...