We present the first study of dipole and quadrupole moments of liquid water calculated using coupled cluster/molecular mechanics (COMM) methods. CUMM methods are used to calculate the total dipole moment of the water dimer and the results are compared to the corresponding ab initio quantum mechanical calculations. For liquid water we find that the introduction of polarization effects are very important for an accurate determination of dipole and quadrupole moments. Furthermore, we find that neglecting the correlation effects in the quantum mechanical part of the system leads to an overestimation of the interaction between the two sub-systems
I report on the derivation, development and computer implementation of methods for computing the ene...
A new classical empirical potential is proposed for water. The model uses a polarizable atomic multi...
© 2020 The Authors. Published by Wiley-VCH Verlag GmbH & Co. KGaA. Intermolecular interactions in bu...
The average dipole moment of a water molecule in the condensed phase is enhanced by around 40 percen...
The dipole moment of the gas phase water monomer is 1.85 D. When solvated in bulk water, the dipole ...
We study, from first principles, structural, electronic, and bonding properties of liquid water. Our...
A valence-only (V) dipole moment surface (DMS) has been computed for water at the internally contrac...
We study with ab initio molecular dynamics the change that the electric dipole moment of water molec...
The dipole moment of a single water molecule in liquid water has been a critical concept for underst...
The dipole moment of a single water molecule in liquid water has been a critical concept for underst...
The dipole moment of the gas phase water monomer is 1.85 D. When solvated in bulk water, the dipole ...
A Car–Parrinello molecular dynamics simulation was performed to investigate the local tetrahedral or...
A Car–Parrinello molecular dynamics simulation was performed to investigate the local tetrahedral or...
We report a linear combination of atomic dipole (LCAD) method for calculating the bond dipole moment...
I report on the derivation, development and computer implementation of methods for computing the ene...
I report on the derivation, development and computer implementation of methods for computing the ene...
A new classical empirical potential is proposed for water. The model uses a polarizable atomic multi...
© 2020 The Authors. Published by Wiley-VCH Verlag GmbH & Co. KGaA. Intermolecular interactions in bu...
The average dipole moment of a water molecule in the condensed phase is enhanced by around 40 percen...
The dipole moment of the gas phase water monomer is 1.85 D. When solvated in bulk water, the dipole ...
We study, from first principles, structural, electronic, and bonding properties of liquid water. Our...
A valence-only (V) dipole moment surface (DMS) has been computed for water at the internally contrac...
We study with ab initio molecular dynamics the change that the electric dipole moment of water molec...
The dipole moment of a single water molecule in liquid water has been a critical concept for underst...
The dipole moment of a single water molecule in liquid water has been a critical concept for underst...
The dipole moment of the gas phase water monomer is 1.85 D. When solvated in bulk water, the dipole ...
A Car–Parrinello molecular dynamics simulation was performed to investigate the local tetrahedral or...
A Car–Parrinello molecular dynamics simulation was performed to investigate the local tetrahedral or...
We report a linear combination of atomic dipole (LCAD) method for calculating the bond dipole moment...
I report on the derivation, development and computer implementation of methods for computing the ene...
I report on the derivation, development and computer implementation of methods for computing the ene...
A new classical empirical potential is proposed for water. The model uses a polarizable atomic multi...
© 2020 The Authors. Published by Wiley-VCH Verlag GmbH & Co. KGaA. Intermolecular interactions in bu...