A simple, non-iterative method to estimate hydration free energies of neutral molecules, ESE, is developed. It requires only atomic charges computed for isolated species. To obtain the solvation free energy, the COSMO electrostatic term is supplemented by an extra correction that describes the cavitation energy, van der Waals and specific interactions. This term depends on atomic parameters that are adjusted using a reference dataset. Despite its simplicity, the ESE method provides accurate hydration energies with a mean absolute error below 1 kcal mol-1, superseding most accurate existing polarization continuum methods. We show that the proposed scheme can be directly extended to non-aqueous solutions. © 2019 the Owner Societies
<div>Computer simulations of bio-molecular systems often use force fields, which are combinations of...
Chemistry Department, Burdwan University, Burdwan-713 104 Manuscript received 17 April 1982, revise...
The hydration free energy (HFE) is a critical property for predicting and understanding chemical and...
We present an efficient method with adjustable parameters for calculating the hydration free energy ...
We propose an efficient and accurate non-iterative method, dubbed uESE, for calculating solvation fr...
Abstract: Absolute free energies of hydration (¢Ghyd) for more than 500 neutral and charged compound...
Solvation free energies can now be calculated precisely from molecular simulations, providing a valu...
We present a theoretical/computational framework for accurate calculation of hydration free energies...
We present a theoretical/computational framework for accurate calculation of hydration free energies...
We report a simple universal method to systematically improve the accuracy of hydration free energie...
The hydration free energy (HFE) is a critical property for predicting and understanding chemical and...
The hydration free energy (HFE) is a critical property for predicting and understanding chemical and...
The hydration free energy (HFE) is a critical property for predicting and understanding chemical and...
The hydration free energy (HFE) is a critical property for predicting and understanding chemical and...
In this work, we present simulation-based predictions of the absolute hydration energy for several s...
<div>Computer simulations of bio-molecular systems often use force fields, which are combinations of...
Chemistry Department, Burdwan University, Burdwan-713 104 Manuscript received 17 April 1982, revise...
The hydration free energy (HFE) is a critical property for predicting and understanding chemical and...
We present an efficient method with adjustable parameters for calculating the hydration free energy ...
We propose an efficient and accurate non-iterative method, dubbed uESE, for calculating solvation fr...
Abstract: Absolute free energies of hydration (¢Ghyd) for more than 500 neutral and charged compound...
Solvation free energies can now be calculated precisely from molecular simulations, providing a valu...
We present a theoretical/computational framework for accurate calculation of hydration free energies...
We present a theoretical/computational framework for accurate calculation of hydration free energies...
We report a simple universal method to systematically improve the accuracy of hydration free energie...
The hydration free energy (HFE) is a critical property for predicting and understanding chemical and...
The hydration free energy (HFE) is a critical property for predicting and understanding chemical and...
The hydration free energy (HFE) is a critical property for predicting and understanding chemical and...
The hydration free energy (HFE) is a critical property for predicting and understanding chemical and...
In this work, we present simulation-based predictions of the absolute hydration energy for several s...
<div>Computer simulations of bio-molecular systems often use force fields, which are combinations of...
Chemistry Department, Burdwan University, Burdwan-713 104 Manuscript received 17 April 1982, revise...
The hydration free energy (HFE) is a critical property for predicting and understanding chemical and...