The partitioning of the energy in ab initio quantum mechanical calculations into its chemical origins (e.g., electrostatics, exchange-repulsion, polarization, and charge transfer) is a relatively recent development; such concepts of isolating chemically meaningful energy components from the interaction energy have been demonstrated by variational and perturbation based energy decomposition analysis approaches. The variational methods are typically derived from the early energy decomposition analysis of Morokuma [Morokuma, J. Chem. Phys., 1971, 55, 1236], and the perturbation approaches from the popular symmetry-adapted perturbation theory scheme [Jeziorski et al., Methods and Techniques in Computational Chemistry: METECC-94, 1993, ch. 13, p...
An energy decomposition analysis (EDA) of intermolecular interactions is proposed for second-order M...
Protein–protein interactions are very important in the function of a cell. Computational studies of ...
QM/MM methods have been developed as a computationally feasible solution to QM simulation of chemica...
Kohn-Sham density functional theory (DFT) is an extraordinarily powerful and versatile tool for calc...
First-principles quantum mechanical calculations with methods such as density functional theory (DFT...
The computational study of drug/protein interactions is fundamental to understand the mode of action...
We report the development and implementation of an energy decomposition analysis (EDA) scheme in the...
This thesis is concerned with the decomposition of intermolecular interaction energies computed by H...
An energy decomposition analysis method is implemented for the analysis of both covalent bonds and i...
Protein–protein interactions are very important in the function of a cell. Computational studies of ...
An energy decomposition analysis (EDA) scheme is developed for understanding the intermolecular inte...
We employed an explicit expression for the dispersion (D) energy in conjunction with Kohn-Sham (KS) ...
The breakdown of interaction energy has always been a very important means to understand chemical bo...
Quantum chemistry in the form of density functional theory (DFT) calculations is a powerful numerica...
We have designed an energy decomposition analysis (EDA) to gain a deeper understanding of single che...
An energy decomposition analysis (EDA) of intermolecular interactions is proposed for second-order M...
Protein–protein interactions are very important in the function of a cell. Computational studies of ...
QM/MM methods have been developed as a computationally feasible solution to QM simulation of chemica...
Kohn-Sham density functional theory (DFT) is an extraordinarily powerful and versatile tool for calc...
First-principles quantum mechanical calculations with methods such as density functional theory (DFT...
The computational study of drug/protein interactions is fundamental to understand the mode of action...
We report the development and implementation of an energy decomposition analysis (EDA) scheme in the...
This thesis is concerned with the decomposition of intermolecular interaction energies computed by H...
An energy decomposition analysis method is implemented for the analysis of both covalent bonds and i...
Protein–protein interactions are very important in the function of a cell. Computational studies of ...
An energy decomposition analysis (EDA) scheme is developed for understanding the intermolecular inte...
We employed an explicit expression for the dispersion (D) energy in conjunction with Kohn-Sham (KS) ...
The breakdown of interaction energy has always been a very important means to understand chemical bo...
Quantum chemistry in the form of density functional theory (DFT) calculations is a powerful numerica...
We have designed an energy decomposition analysis (EDA) to gain a deeper understanding of single che...
An energy decomposition analysis (EDA) of intermolecular interactions is proposed for second-order M...
Protein–protein interactions are very important in the function of a cell. Computational studies of ...
QM/MM methods have been developed as a computationally feasible solution to QM simulation of chemica...