International audienceA fully polarizable implementation of the hybrid Quantum Mechanics/Molecular Mechanics approach is presented, where the classical environment is described through the AMOEBA polarizable force field. A variational formalism, offering a self-consistent 1 relaxation of both the MM induced dipoles and the QM electronic density is used for ground state energies and extended to electronic excitations in the framework of Time-Dependent Density Functional Theory combined with a state specific response of the classical part. An application to the calculation of the solvatochromism of the pyridinium N-phenolate betaine dye used to define the solvent ET30 scale is presented. The results show that the QM/AMOEBA model not only prop...
We present the implementation of excited state Born-Oppenheimer molecular dynamics (BOMD) using a po...
We present a novel quantum mechanical/molecular mechanics (QM/MM) approach in which a quantum subsys...
We present the implementation of excited state Born-Oppenheimer molecular dynamics (BOMD) using a po...
A fully polarizable implementation of the hybrid quantum mechanics/molecular mechanics approach is p...
A fully polarizable implementation of the hybrid quantum mechanics/molecular mechanics approach is p...
A fully polarizable implementation of the hybrid quantum mechanics/molecular mechanics approach is p...
We present the implementation of a Born-Oppenheimer (BO) hybrid quantum mechanics/molecular mechanic...
International audienceIn this work, we present a general route to hybrid quantum mechanics/molecular...
In this work, we present a general route to hybrid Quantum Mechanics/Molecular Mechanics (QM/MM) Mol...
In this work, we present a general route to hybrid Quantum Mechanics/Molecular Mechanics (QM/MM) Mol...
In this work, we present a general route to hybrid Quantum Mechanics/Molecular Mechanics (QM/MM) Mol...
The importance of incorporating solvent polarization effects into the modeling of solvation processe...
We present the implementation of a Born–Oppenheimer (BO) hybrid quantum mechanics/molecular mechanic...
We present a novel quantum mechanical/molecular mechanics (QM/MM) approach in which a quantum subsys...
We present a novel quantum mechanical/molecular mechanics (QM/MM) approach in which a quantum subsys...
We present the implementation of excited state Born-Oppenheimer molecular dynamics (BOMD) using a po...
We present a novel quantum mechanical/molecular mechanics (QM/MM) approach in which a quantum subsys...
We present the implementation of excited state Born-Oppenheimer molecular dynamics (BOMD) using a po...
A fully polarizable implementation of the hybrid quantum mechanics/molecular mechanics approach is p...
A fully polarizable implementation of the hybrid quantum mechanics/molecular mechanics approach is p...
A fully polarizable implementation of the hybrid quantum mechanics/molecular mechanics approach is p...
We present the implementation of a Born-Oppenheimer (BO) hybrid quantum mechanics/molecular mechanic...
International audienceIn this work, we present a general route to hybrid quantum mechanics/molecular...
In this work, we present a general route to hybrid Quantum Mechanics/Molecular Mechanics (QM/MM) Mol...
In this work, we present a general route to hybrid Quantum Mechanics/Molecular Mechanics (QM/MM) Mol...
In this work, we present a general route to hybrid Quantum Mechanics/Molecular Mechanics (QM/MM) Mol...
The importance of incorporating solvent polarization effects into the modeling of solvation processe...
We present the implementation of a Born–Oppenheimer (BO) hybrid quantum mechanics/molecular mechanic...
We present a novel quantum mechanical/molecular mechanics (QM/MM) approach in which a quantum subsys...
We present a novel quantum mechanical/molecular mechanics (QM/MM) approach in which a quantum subsys...
We present the implementation of excited state Born-Oppenheimer molecular dynamics (BOMD) using a po...
We present a novel quantum mechanical/molecular mechanics (QM/MM) approach in which a quantum subsys...
We present the implementation of excited state Born-Oppenheimer molecular dynamics (BOMD) using a po...