We present an implicit solvation approach where the interface between the quantum-mechanical solute and the surrounding environment is described by a fully continuous permittivity built up with atomic-centered “soft” spheres. This approach combines many of the advantages of the self-consistent continuum solvation model in handling solutes and surfaces in contact with complex dielectric environments or electrolytes in electronic-structure calculations. In addition it is able to describe accurately both neutral and charged systems. The continuous function, describing the variation of the permittivity, allows to compute analytically the nonelectrostatic contributions to the solvation free energy that are described in terms of the quantum surfa...
We present the implementation of a hybrid continuum-atomistic model for including the effects of a s...
We present an integrated QM/classical approach to treat solvation at diffuse solvent surfaces and in...
Physically accurate continuum solvent models that can calculate solvation energies are crucial to ex...
The following article has been accepted by The Journal of Chemical Physics. After it is published, i...
The following article has been accepted by The Journal of Chemical Physics. After it is published, i...
We present a new continuum solvation model based on the quantum mechanical charge density of a solut...
We present a new continuum solvation model based on the quantum mechanical charge density of a solut...
Continuum models of solvation are widespread tools for the prediction of solvation free energies of ...
We discuss grand canonical simulations based on density-functional theory to study the thermodynamic...
Continuum models to handle solvent and electrolyte effects in an effective way have a long tradition...
We present the implementation of an implicit solvation model in the CRYSTAL code. The solvation ener...
[[abstract]]We propose a new method to compute solvation free energies by combining quantum mechanic...
Continuum models to handle solvent and electrolyte effects in an effective way have a long tradition...
Continuum solvation methods can provide an accurate and inexpensive embedding of quantum simulations...
Physically accurate continuum solvent models that can calculate solvation energies are crucial to ex...
We present the implementation of a hybrid continuum-atomistic model for including the effects of a s...
We present an integrated QM/classical approach to treat solvation at diffuse solvent surfaces and in...
Physically accurate continuum solvent models that can calculate solvation energies are crucial to ex...
The following article has been accepted by The Journal of Chemical Physics. After it is published, i...
The following article has been accepted by The Journal of Chemical Physics. After it is published, i...
We present a new continuum solvation model based on the quantum mechanical charge density of a solut...
We present a new continuum solvation model based on the quantum mechanical charge density of a solut...
Continuum models of solvation are widespread tools for the prediction of solvation free energies of ...
We discuss grand canonical simulations based on density-functional theory to study the thermodynamic...
Continuum models to handle solvent and electrolyte effects in an effective way have a long tradition...
We present the implementation of an implicit solvation model in the CRYSTAL code. The solvation ener...
[[abstract]]We propose a new method to compute solvation free energies by combining quantum mechanic...
Continuum models to handle solvent and electrolyte effects in an effective way have a long tradition...
Continuum solvation methods can provide an accurate and inexpensive embedding of quantum simulations...
Physically accurate continuum solvent models that can calculate solvation energies are crucial to ex...
We present the implementation of a hybrid continuum-atomistic model for including the effects of a s...
We present an integrated QM/classical approach to treat solvation at diffuse solvent surfaces and in...
Physically accurate continuum solvent models that can calculate solvation energies are crucial to ex...