We have developed a method of calculating the solvation energy of a surface based on an implicit solvent model. This new model called COSMIC, is an extension of the established COSMO solvation approach and allows the technique to be applied to systems of any periodicity from finite molecules, through polymers and surfaces, to cavities of water within a bulk unit cell. As well as extending the scope of the COSMO technique, it also improves the numerical stability through removal of anumber of discontinuities in the potential energy surface. The COSMIC model has been applied to barium sulfate, where it was found to produce similar surface energies and configurations to the much more computationally expensive explicit molecular dynamics simul...
We present a new approach to combine λ dynamics with metadynamics (named λ-metadynamics) to compute ...
ABSTRACT Apparent surface charge, reaction-field solvation models often em-ploy overlapping atomic s...
We propose an efficient and accurate non-iterative method, dubbed uESE, for calculating solvation fr...
The morphology of small molecule crystals provides a model for evaluating surface solvation energies...
ABSTRACT: Atomic surface tensions are parameterized for use with solvation models in which the elect...
The solvent environment of molecules plays a very important role in their structure and function. In...
This article is the first of a series of papers dealing with domain decomposition algo-rithms for im...
In this project, we propose to utilize the novel concept of computational hierarchy for the predicti...
The goals of the research presented in this dissertation were to create algorithms that produce imag...
Due to environmental and economic pressures, society has an ever-increasing need for renewable fuels...
International audienceThe computation of solvation energies has many uses in several fields, such as...
We present an implementation of the conductor-like screening model (COSMO) within the framework of C...
We have developed a general predictive method for vapor pressures and enthalpies of vaporization bas...
The morphometric approach (MA) is a powerful tool for calculating a solvation free energy (SFE) and ...
We present the implementation of an implicit solvation model in the CRYSTAL code. The solvation ener...
We present a new approach to combine λ dynamics with metadynamics (named λ-metadynamics) to compute ...
ABSTRACT Apparent surface charge, reaction-field solvation models often em-ploy overlapping atomic s...
We propose an efficient and accurate non-iterative method, dubbed uESE, for calculating solvation fr...
The morphology of small molecule crystals provides a model for evaluating surface solvation energies...
ABSTRACT: Atomic surface tensions are parameterized for use with solvation models in which the elect...
The solvent environment of molecules plays a very important role in their structure and function. In...
This article is the first of a series of papers dealing with domain decomposition algo-rithms for im...
In this project, we propose to utilize the novel concept of computational hierarchy for the predicti...
The goals of the research presented in this dissertation were to create algorithms that produce imag...
Due to environmental and economic pressures, society has an ever-increasing need for renewable fuels...
International audienceThe computation of solvation energies has many uses in several fields, such as...
We present an implementation of the conductor-like screening model (COSMO) within the framework of C...
We have developed a general predictive method for vapor pressures and enthalpies of vaporization bas...
The morphometric approach (MA) is a powerful tool for calculating a solvation free energy (SFE) and ...
We present the implementation of an implicit solvation model in the CRYSTAL code. The solvation ener...
We present a new approach to combine λ dynamics with metadynamics (named λ-metadynamics) to compute ...
ABSTRACT Apparent surface charge, reaction-field solvation models often em-ploy overlapping atomic s...
We propose an efficient and accurate non-iterative method, dubbed uESE, for calculating solvation fr...