Construction of free energy landscapes at Quantum mechanics (QM) level is computationally demanding. As shown in previous studies, by employing an indirect scheme (i.e. constructing a thermodynamic cycle connecting QM states via an alchemical pathway), simulations are converged with much less computational burden. The indirect scheme makes QM/ molecular mechanics (MM) free energy simulation orders of magnitude faster than the direct QM/MM schemes. However, the indirect QM/MM simulations were mostly equilibrium sampling based and the nonequilibrium methods were merely exploited in one-dimensional alchemical QM/MM end-state correction at two end states. In this work, we represent a multi-dimensional nonequilibrium pulling scheme for indirect ...
Calculating binding free energies with quan-tum-mechanical (QM) methods is notoriously time-consum-i...
Molecular dynamics simulations are able to predict structural, dynamical and energetic properties of...
We have compared two approaches to calculate relative binding free energies employing molecular dyna...
Carrying out free energy simulations (FES) using quantum mechanical (QM) Hamiltonians remains an att...
The computation of free energy is pivotal to understanding the fundamental nature of chemical phenom...
We have developed a dual-topology/dual-coordinate free-energy simulation method for use with a QM/MM...
We present an accurate adaptive multiscale molecular dynamics method that will enable the detailed s...
We present an accurate adaptive multiscale molecular dynamics method that will enable the detailed s...
For exploration of chemical and biological systems, the combined quantum mechanics and molecular mec...
In the context of advanced hit-to-lead drug design based on atomistic Molecular Dynamics simulations...
We have devised a new efficient approach to compute combined quantum mechanical (QM) and molecular m...
We present a method which uses DFT (quantum, QM) calculations to improve free energies of binding co...
Author Institution: Gaussian, Inc., Wallingford, CT 06492, USAIn recent years, the applicability of ...
We developed a quantum mechanical/molecular mechanical (QM/MM) free energy geometry optimization met...
The dual Hamiltonian free energy perturbation (DH-FEP) method is designed for accurate and efficient...
Calculating binding free energies with quan-tum-mechanical (QM) methods is notoriously time-consum-i...
Molecular dynamics simulations are able to predict structural, dynamical and energetic properties of...
We have compared two approaches to calculate relative binding free energies employing molecular dyna...
Carrying out free energy simulations (FES) using quantum mechanical (QM) Hamiltonians remains an att...
The computation of free energy is pivotal to understanding the fundamental nature of chemical phenom...
We have developed a dual-topology/dual-coordinate free-energy simulation method for use with a QM/MM...
We present an accurate adaptive multiscale molecular dynamics method that will enable the detailed s...
We present an accurate adaptive multiscale molecular dynamics method that will enable the detailed s...
For exploration of chemical and biological systems, the combined quantum mechanics and molecular mec...
In the context of advanced hit-to-lead drug design based on atomistic Molecular Dynamics simulations...
We have devised a new efficient approach to compute combined quantum mechanical (QM) and molecular m...
We present a method which uses DFT (quantum, QM) calculations to improve free energies of binding co...
Author Institution: Gaussian, Inc., Wallingford, CT 06492, USAIn recent years, the applicability of ...
We developed a quantum mechanical/molecular mechanical (QM/MM) free energy geometry optimization met...
The dual Hamiltonian free energy perturbation (DH-FEP) method is designed for accurate and efficient...
Calculating binding free energies with quan-tum-mechanical (QM) methods is notoriously time-consum-i...
Molecular dynamics simulations are able to predict structural, dynamical and energetic properties of...
We have compared two approaches to calculate relative binding free energies employing molecular dyna...