We assess the accuracy of force field (FF) electrostatics at several levels of approximation from the standard model using fixed partial charges to conformational specific multipole fits including up to quadrupole moments. Potential-derived point charges and multipoles are calculated using least-squares methods for a total of ∼1000 different conformations of the 20 natural amino acids. Opposed to standard charge fitting schemes the procedure presented in the current work employs fitting points placed on a single isodensity surface, since the electrostatic potential (ESP) on such a surface determines the ESP at all points outside this surface. We find that the effect of multipoles beyond partial atomic charges is of the same magnitude as the...
The exact atomic electrostatic potential (AEP) and atomic multipole moments are calculated using the...
Localized multipole moments up to the fifth moment as well as localized dipole polarizabilities are ...
An electrostatic model based on charge density is proposed as a model for future force fields. The m...
Currently, all standard force fields for biomolecular simulations use point charges to model intermo...
We analyze the conformational dependence of atomic charges and molecular dipole moments for a select...
Accuracy and transferability are the two highly desirable properties of molecular mechanical force f...
The description of molecular systems using multipolar electrostatics calls for automated methods to ...
In conventional force fields, the electrostatic potential is represented by atom-centred point charg...
We develop here a new method to fit the molecular electrostatic potentials obtained in quantum mecha...
Specific intermolecular interactions are largely guided by electrostatics. However, the most common ...
Permanent multipoles (MTPs) embody a natural extension to common point-charge (PC) representations i...
In conventional force fields, the electrostatic potential is represented by atom-centred point charg...
The accurate description of electrostatic interactions remains a challenging problem for classical p...
The exact atomic electrostatic potential (AEP) and atomic multipole moments are calculated using the...
The exact atomic electrostatic potential (AEP) and atomic multipole moments are calculated using the...
The exact atomic electrostatic potential (AEP) and atomic multipole moments are calculated using the...
Localized multipole moments up to the fifth moment as well as localized dipole polarizabilities are ...
An electrostatic model based on charge density is proposed as a model for future force fields. The m...
Currently, all standard force fields for biomolecular simulations use point charges to model intermo...
We analyze the conformational dependence of atomic charges and molecular dipole moments for a select...
Accuracy and transferability are the two highly desirable properties of molecular mechanical force f...
The description of molecular systems using multipolar electrostatics calls for automated methods to ...
In conventional force fields, the electrostatic potential is represented by atom-centred point charg...
We develop here a new method to fit the molecular electrostatic potentials obtained in quantum mecha...
Specific intermolecular interactions are largely guided by electrostatics. However, the most common ...
Permanent multipoles (MTPs) embody a natural extension to common point-charge (PC) representations i...
In conventional force fields, the electrostatic potential is represented by atom-centred point charg...
The accurate description of electrostatic interactions remains a challenging problem for classical p...
The exact atomic electrostatic potential (AEP) and atomic multipole moments are calculated using the...
The exact atomic electrostatic potential (AEP) and atomic multipole moments are calculated using the...
The exact atomic electrostatic potential (AEP) and atomic multipole moments are calculated using the...
Localized multipole moments up to the fifth moment as well as localized dipole polarizabilities are ...
An electrostatic model based on charge density is proposed as a model for future force fields. The m...