While the transferable potentials for phase equilibria–united atom (TraPPE–UA) force field has generally been successful at providing parameters that are highly transferable between different molecules, the polarity and polarizability of a given functional group can be significantly perturbed in small cyclic structures, which limits the transferability of parameters obtained for linear molecules. This has motivated us to develop a version of the TraPPE–UA force field specifically for five- and six-membered cyclic alkanes and ethers. The Lennard-Jones parameters for the methylene group obtained from cyclic alkanes are transferred to the ethers for each ring size, and those for the oxygen atom are common to all compounds for a given ring size...
A new transferable force field parametrization for n-alkanes and n-olefins is proposed in this work....
Driven by the constant increase in computational resources and power, modeling of biomolecular syste...
A polarizable force-field (FF) model for short- and long-alkane chains and amide derivatives was con...
While the transferable potentials for phase equilibria–united atom (TraPPE–UA) force field has gener...
A new set of united-atom Lennard-Jones interaction parameters for n-alkanes is proposed from fitting...
The Transferable Potentials for Phase Equilibria-United Atom (TraPPE-UA) force field for hydrocarbon...
A transferable united-atom (UA) force field based on Mie potentials is presented for branched alkane...
A transferable united-atom (UA) force field based on Mie potentials is presented for branched alkane...
A transferable united-atom (UA) force field based on Mie potentials is presented for branched alkane...
The explicit-hydrogen version of the transferable potentials for phase equilibria (TraPPE-EH) force ...
An extension of the transferable potentials for phase equilibria united-atom (TraPPE-UA) force field...
Transferable united-atom force fields based on Mie potentials are presented for alkenes. Monte Carlo...
This study proposes a Polarizable Transferable Anisotropic Mie (P-TAMie) force field for ethers and ...
The level of accuracy that can be achieved by a force field is influenced by choices made in the int...
The accuracy of force fields is a key to the successful prediction of the thermodynamic properties o...
A new transferable force field parametrization for n-alkanes and n-olefins is proposed in this work....
Driven by the constant increase in computational resources and power, modeling of biomolecular syste...
A polarizable force-field (FF) model for short- and long-alkane chains and amide derivatives was con...
While the transferable potentials for phase equilibria–united atom (TraPPE–UA) force field has gener...
A new set of united-atom Lennard-Jones interaction parameters for n-alkanes is proposed from fitting...
The Transferable Potentials for Phase Equilibria-United Atom (TraPPE-UA) force field for hydrocarbon...
A transferable united-atom (UA) force field based on Mie potentials is presented for branched alkane...
A transferable united-atom (UA) force field based on Mie potentials is presented for branched alkane...
A transferable united-atom (UA) force field based on Mie potentials is presented for branched alkane...
The explicit-hydrogen version of the transferable potentials for phase equilibria (TraPPE-EH) force ...
An extension of the transferable potentials for phase equilibria united-atom (TraPPE-UA) force field...
Transferable united-atom force fields based on Mie potentials are presented for alkenes. Monte Carlo...
This study proposes a Polarizable Transferable Anisotropic Mie (P-TAMie) force field for ethers and ...
The level of accuracy that can be achieved by a force field is influenced by choices made in the int...
The accuracy of force fields is a key to the successful prediction of the thermodynamic properties o...
A new transferable force field parametrization for n-alkanes and n-olefins is proposed in this work....
Driven by the constant increase in computational resources and power, modeling of biomolecular syste...
A polarizable force-field (FF) model for short- and long-alkane chains and amide derivatives was con...