Abstract: We present an overview of procedures that have been developed to compute several energetic quantities associated with noncovalent interactions. These formulations involve numerical integration over appropriate electronic densities. Our focus is upon the electrostatic interaction between two unperturbed molecules, the effect of the polarization of each charge distribution by the other, and the total energy of interaction. The expression for the latter is based upon the Hellmann-Feynman theorem. Applications to a number of systems are discussed; among them are dimers of uracil and interacting pairs of molecules in the crystal lattice of the energetic compound RDX
An expression is derived for the total energy of a system of interacting atoms based on an ansatz fo...
An expression is derived for the total energy of a system of interacting atoms based on an ansatz fo...
Non-covalent interactions play a primordial role in chemistry. Beyond their quantification, the deta...
Abstract: We present an overview of procedures that have been developed to compute several energetic...
Noncovalent intermolecular interactions, widely found in molecular clusters and bio-molecules, play ...
Non-covalent interactions dictate how molecules interact with their surroundings. Enhancing their kn...
Noncovalent interactions are of central importance to biochemical phenomena. This dissertation inclu...
Abstract: Accurate and fast evaluation of electrostatic interactions in molecular systems is still o...
Chemists often classify chemical interactions as being dominated by some sort of interaction; among ...
Energy decomposition analysis (EDA) based on absolutely localized molecular orbitals (ALMOs) decompo...
Energy decomposition analysis (EDA) based on absolutely localized molecular orbitals (ALMOs) decompo...
International audienceWe review two essential features of the intermolecular interaction energies (Δ...
Electrostatic interaction is often an important part of the total interaction between molecules. It ...
Abstract: The intermolecular electrostatic interactions of Cl-containing molecules (such as HCl and ...
Molecular orbital and valence bond methods for obtaining approximate electronic wavefunctions are de...
An expression is derived for the total energy of a system of interacting atoms based on an ansatz fo...
An expression is derived for the total energy of a system of interacting atoms based on an ansatz fo...
Non-covalent interactions play a primordial role in chemistry. Beyond their quantification, the deta...
Abstract: We present an overview of procedures that have been developed to compute several energetic...
Noncovalent intermolecular interactions, widely found in molecular clusters and bio-molecules, play ...
Non-covalent interactions dictate how molecules interact with their surroundings. Enhancing their kn...
Noncovalent interactions are of central importance to biochemical phenomena. This dissertation inclu...
Abstract: Accurate and fast evaluation of electrostatic interactions in molecular systems is still o...
Chemists often classify chemical interactions as being dominated by some sort of interaction; among ...
Energy decomposition analysis (EDA) based on absolutely localized molecular orbitals (ALMOs) decompo...
Energy decomposition analysis (EDA) based on absolutely localized molecular orbitals (ALMOs) decompo...
International audienceWe review two essential features of the intermolecular interaction energies (Δ...
Electrostatic interaction is often an important part of the total interaction between molecules. It ...
Abstract: The intermolecular electrostatic interactions of Cl-containing molecules (such as HCl and ...
Molecular orbital and valence bond methods for obtaining approximate electronic wavefunctions are de...
An expression is derived for the total energy of a system of interacting atoms based on an ansatz fo...
An expression is derived for the total energy of a system of interacting atoms based on an ansatz fo...
Non-covalent interactions play a primordial role in chemistry. Beyond their quantification, the deta...