Adaptive quantum mechanical (QM)/molec- ular mechanical (MM) methods enable efficient molecular simulations of chemistry in solution. Reactive subregions are modeled with an accurate QM potential energy expression while the rest of the system is described in a more approximate manner (MM). As solvent molecules diffuse in and out of the reactive region, they are gradually included into (and excluded from) the QM expression. It would be desirable to model such a system with a single adaptive Hamiltonian, but thus far this has resulted in distorted structures at the boundary between the two regions. Solving this long outstanding problem will allow microcanonical adaptive QM/MM simulations that can be used to obtain vibrational spectra and dyna...
The incorporation of quantum chemical effects of solvation into molecular dynamics simulation has be...
For condensed systems, the incorporation of quantum chemical solvent effects into molecular dynamics...
For condensed systems, the incorporation of quantum chemical solvent effects into molecular dynamics...
Adaptive quantum mechanical (QM)/molec- ular mechanical (MM) methods enable efficient molecular simu...
Adaptive quantum mechanical (QM)/molec- ular mechanical (MM) methods enable efficient molecular simu...
Adaptive quantum mechanical (QM)/molec- ular mechanical (MM) methods enable efficient molecular simu...
Adaptive quantum mechanical (QM)/molecular mechanical (MM) methods enable efficient molecular simula...
Adaptive quantum mechanical (QM)/molecular mechanical (MM) methods enable efficient molecular simula...
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...
In combined quantum-mechanical/molecular-mechanical (QM/MM) dynamics simulations, the adaptive-parti...
In combined quantum-mechanical/molecular-mechanical (QM/MM) dynamics simulations, the adaptive-parti...
The QM/MM method, which couples a quantum mechanical (QM) description of bonding in a localized regi...
The simulation of complex chemical systems often requires a multi-level description, in which a regi...
The simulation of complex chemical systems often requires a multi-level description, in which a regi...
The incorporation of quantum chemical effects of solvation into molecular dynamics simulation has be...
For condensed systems, the incorporation of quantum chemical solvent effects into molecular dynamics...
For condensed systems, the incorporation of quantum chemical solvent effects into molecular dynamics...
Adaptive quantum mechanical (QM)/molec- ular mechanical (MM) methods enable efficient molecular simu...
Adaptive quantum mechanical (QM)/molec- ular mechanical (MM) methods enable efficient molecular simu...
Adaptive quantum mechanical (QM)/molec- ular mechanical (MM) methods enable efficient molecular simu...
Adaptive quantum mechanical (QM)/molecular mechanical (MM) methods enable efficient molecular simula...
Adaptive quantum mechanical (QM)/molecular mechanical (MM) methods enable efficient molecular simula...
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...
In combined quantum-mechanical/molecular-mechanical (QM/MM) dynamics simulations, the adaptive-parti...
In combined quantum-mechanical/molecular-mechanical (QM/MM) dynamics simulations, the adaptive-parti...
The QM/MM method, which couples a quantum mechanical (QM) description of bonding in a localized regi...
The simulation of complex chemical systems often requires a multi-level description, in which a regi...
The simulation of complex chemical systems often requires a multi-level description, in which a regi...
The incorporation of quantum chemical effects of solvation into molecular dynamics simulation has be...
For condensed systems, the incorporation of quantum chemical solvent effects into molecular dynamics...
For condensed systems, the incorporation of quantum chemical solvent effects into molecular dynamics...