Atomistic biomolecular simulations predominantly utilize additive force fields (FF), where the electrostatic potential is modeled by fixed point charges. Among other consequences, the lack of polarizability in these models undermines the balance of hydrophilic/hydrophobic nonbonded interactions. Simulations of water/alkane systems using the TIP3P water model and CHARMM36 parameters reveal a 1 kcal/mol overestimate of the experimental transfer free energy of water to hexadecane; more recent optimized water models (SPC/E, TIP4P/2005, TIP4P-Ew, TIP3P-FB, TIP4P-FB, OPC, TIP4P-D) overestimate this transfer free energy by approximately 2 kcal/mol. In contrast, the polarizable SWM4-NDP and SWM6 water models reproduce experimental values to within ...
We discuss potential-of-mean force convergence issues involving the methods for generating starting ...
Bromomethane (CH<sub>3</sub>Br) is an acutely toxic environmental pollutant that contributes to ozon...
Accurate modeling of highly concentrated aqueous solutions, such as water-in-salt (WiS) electrolytes...
Molecular simulations of water using classical, molecular mechanic potential energy functions have e...
Driven by the constant increase in computational resources and power, modeling of biomolecular syste...
We report here a new force field for water based solely on quantum mechanics (QM) calculations with ...
This thesis describes the application of computer simulations and fundamental theoretical strategies...
A new polarizable water model is developed for molecular dynamics (MD) simulations of the proton tra...
Coarse-grained (CG) simulations have become an essential tool to study a large variety of biomolecul...
A polarizable intermolecular potential model with short-range directional hydrogen-bonding interacti...
The all-atom optimized potentials for liquid simulations (OPLS-AA) force field is a popular force fi...
As an integrated step toward a coherent polarizable force field for biomolecular modeling, we analyz...
The authors propose a new classical model for the water molecule. The geometry of the molecule is bu...
The unique solvent properties of water arise from its capacity to structurally respond to solutes wi...
YesKey to progress in molecular simulation is the development of advanced models that go beyond the ...
We discuss potential-of-mean force convergence issues involving the methods for generating starting ...
Bromomethane (CH<sub>3</sub>Br) is an acutely toxic environmental pollutant that contributes to ozon...
Accurate modeling of highly concentrated aqueous solutions, such as water-in-salt (WiS) electrolytes...
Molecular simulations of water using classical, molecular mechanic potential energy functions have e...
Driven by the constant increase in computational resources and power, modeling of biomolecular syste...
We report here a new force field for water based solely on quantum mechanics (QM) calculations with ...
This thesis describes the application of computer simulations and fundamental theoretical strategies...
A new polarizable water model is developed for molecular dynamics (MD) simulations of the proton tra...
Coarse-grained (CG) simulations have become an essential tool to study a large variety of biomolecul...
A polarizable intermolecular potential model with short-range directional hydrogen-bonding interacti...
The all-atom optimized potentials for liquid simulations (OPLS-AA) force field is a popular force fi...
As an integrated step toward a coherent polarizable force field for biomolecular modeling, we analyz...
The authors propose a new classical model for the water molecule. The geometry of the molecule is bu...
The unique solvent properties of water arise from its capacity to structurally respond to solutes wi...
YesKey to progress in molecular simulation is the development of advanced models that go beyond the ...
We discuss potential-of-mean force convergence issues involving the methods for generating starting ...
Bromomethane (CH<sub>3</sub>Br) is an acutely toxic environmental pollutant that contributes to ozon...
Accurate modeling of highly concentrated aqueous solutions, such as water-in-salt (WiS) electrolytes...