Molecular modeling at the atomic level has been applied in a wide range of biological systems. The widely adopted additive force fields typically use fixed atom-centered partial charges to model electrostatic interactions. However, the additive force fields cannot accurately model polarization effects, leading to unrealistic simulations in polarization-sensitive processes. Numerous efforts have been invested in developing induced dipole-based polarizable force fields. Whether additive atomic charge models or polarizable induced dipole models are used, proper parameterization of the electrostatic term plays a key role in the force field developments. In this work, we present a Python program called PyRESP for performing atomic multipole para...
We present an improved electronic linear response model to incorporate polarization and charge-trans...
This dissertation focuses on electrostatics in the computer modeling of biomacro-molecules. The comm...
Advanced potential energy surfaces are defined as theoretical models that explicitly include many-bo...
Accurate characterization of electrostatic interactions is crucial in molecular simulation. Various ...
Accurate characterization of electrostatic interactions is crucial in molecular simulation. Various ...
Molecular dynamics simulations of biomolecules have been widely adopted in biomedical studies. As cl...
Classical molecular dynamics (MD) simulations based on atomistic models are increasingly used to stu...
The most important requirement of biomolecular modeling is to deal with electrostatic energies. The ...
University of Minnesota Ph.D. dissertation. December 2008. Major: Chemistry. Advisors: Prof. Jiali G...
We present an efficient polarizable electrostatic model based on direct polarization, SMIRNOFF speci...
Abstract: Polarized one-electron potential (POP) optimization is a powerful and practical method to ...
Accuracy and transferability are the two highly desirable properties of molecular mechanical force f...
We develop here a new method to fit the molecular electrostatic potentials obtained in quantum mecha...
Molecular dynamics simulations of biomolecules have been widely adopted in biomedical studies. Effic...
Development of force fields is important for investigating various biological processes by using mol...
We present an improved electronic linear response model to incorporate polarization and charge-trans...
This dissertation focuses on electrostatics in the computer modeling of biomacro-molecules. The comm...
Advanced potential energy surfaces are defined as theoretical models that explicitly include many-bo...
Accurate characterization of electrostatic interactions is crucial in molecular simulation. Various ...
Accurate characterization of electrostatic interactions is crucial in molecular simulation. Various ...
Molecular dynamics simulations of biomolecules have been widely adopted in biomedical studies. As cl...
Classical molecular dynamics (MD) simulations based on atomistic models are increasingly used to stu...
The most important requirement of biomolecular modeling is to deal with electrostatic energies. The ...
University of Minnesota Ph.D. dissertation. December 2008. Major: Chemistry. Advisors: Prof. Jiali G...
We present an efficient polarizable electrostatic model based on direct polarization, SMIRNOFF speci...
Abstract: Polarized one-electron potential (POP) optimization is a powerful and practical method to ...
Accuracy and transferability are the two highly desirable properties of molecular mechanical force f...
We develop here a new method to fit the molecular electrostatic potentials obtained in quantum mecha...
Molecular dynamics simulations of biomolecules have been widely adopted in biomedical studies. Effic...
Development of force fields is important for investigating various biological processes by using mol...
We present an improved electronic linear response model to incorporate polarization and charge-trans...
This dissertation focuses on electrostatics in the computer modeling of biomacro-molecules. The comm...
Advanced potential energy surfaces are defined as theoretical models that explicitly include many-bo...