Energy decomposition analysis (EDA) is a useful tool for obtaining chemically meaningful insights into molecular interactions. The extended transition-state method with natural orbitals for chemical valence (ETS-NOCV) and the absolutely localized molecular orbital-based method with complementary occupied-virtual pairs (ALMO-COVP) are two successful EDA schemes. Working within ground-state generalized Kohn-Sham density functional theory (DFT), we extend these methods to perform EDA between any two electronic states that can be connected by a unitary transformation of density matrices. A direct proof that the NOCV eigenvalues are symmetric pairs is given, and we also prove that the charge and energy difference defined by ALMO are invariant un...
This work provides novel physical insight into the nature of a chemical bond by exploring qualitativ...
We report the development and implementation of an energy decomposition analysis (EDA) scheme in the...
In this dissertation, we will investigate two different areas of electronic structure theory.In the ...
An energy decomposition analysis (EDA) separates a calculated interaction energy into as many interp...
Energy decomposition analysis (EDA) based on absolutely localized molecular orbitals (ALMOs) decompo...
This thesis is concerned with the decomposition of intermolecular interaction energies computed by H...
Quantum chemistry in the form of density functional theory (DFT) calculations is a powerful numerica...
Understanding excited states is vital to photochemistry and spectroscopy, yet the study of excited s...
Interaction energies computed with density functional theory can be divided into physically meaningf...
An energy decomposition analysis (EDA) for single chemical bonds is presented within the framework o...
Non-covalent interactions play a primordial role in chemistry. Beyond their quantification, the deta...
An energy decomposition analysis (EDA) scheme is developed for understanding the intermolecular inte...
We present a method for performing density-functional theory (DFT) calculations in which one or more...
The most important result of a quantum chemical calculation is the total energy of the molecular sys...
An energy decomposition analysis (EDA) of intermolecular interactions is proposed for second-order M...
This work provides novel physical insight into the nature of a chemical bond by exploring qualitativ...
We report the development and implementation of an energy decomposition analysis (EDA) scheme in the...
In this dissertation, we will investigate two different areas of electronic structure theory.In the ...
An energy decomposition analysis (EDA) separates a calculated interaction energy into as many interp...
Energy decomposition analysis (EDA) based on absolutely localized molecular orbitals (ALMOs) decompo...
This thesis is concerned with the decomposition of intermolecular interaction energies computed by H...
Quantum chemistry in the form of density functional theory (DFT) calculations is a powerful numerica...
Understanding excited states is vital to photochemistry and spectroscopy, yet the study of excited s...
Interaction energies computed with density functional theory can be divided into physically meaningf...
An energy decomposition analysis (EDA) for single chemical bonds is presented within the framework o...
Non-covalent interactions play a primordial role in chemistry. Beyond their quantification, the deta...
An energy decomposition analysis (EDA) scheme is developed for understanding the intermolecular inte...
We present a method for performing density-functional theory (DFT) calculations in which one or more...
The most important result of a quantum chemical calculation is the total energy of the molecular sys...
An energy decomposition analysis (EDA) of intermolecular interactions is proposed for second-order M...
This work provides novel physical insight into the nature of a chemical bond by exploring qualitativ...
We report the development and implementation of an energy decomposition analysis (EDA) scheme in the...
In this dissertation, we will investigate two different areas of electronic structure theory.In the ...