Quantum-mechanical methods that are both computationally fast and accurate are not yet available for electronic excitations having charge transfer character. In this work, we present a significant step forward towards this goal for those charge transfer excitations that take place between non-covalently bound molecules. In particular, we present a method that scales linearly with the number of non-covalently bound molecules in the system and is based on a two-pronged approach: The molecular electronic structure of broken-symmetry charge-localized states is obtained with the frozen density embedding formulation of subsystem density-functional theory; subsequently, in a post-SCF calculation, the full-electron Hamiltonian and overlap matrix el...
Computation of charge-transfer coupling energy with a nonempirically tuned range-separated density f...
Conventional density-functional theory (DFT) has the potential to overbind radical-molecule complexe...
A simplified approach for computing the electronic coupling of nonradiative excitation-energy transf...
Separation of the energetic contribution of charge transfer to interaction energy in noncovalent com...
Density-functional embedding theory provides a general way to perform multi-physics quantum mechanic...
Density-functional embedding theory provides a general way to perform multi-physics quantum mechanic...
Density-functional embedding theory provides a general way to perform multi-physics quantum mechanic...
Density functional theory (DFT) is the most widely used quantum chemistry method. This dissertation ...
Charge-transfer (CT) is an important binding force in the formation of intermolecular complexes, and...
Charge-transfer (CT) is an important binding force in the formation of intermolecular complexes, and...
Charge-transfer (CT) is an important binding force in the formation of intermolecular complexes, and...
Recently, a general framework suitable for general frozen-density embedding (FDE) methods was publis...
Energy decomposition analysis (EDA) based on absolutely localized molecular orbitals (ALMOs) decompo...
In this work I develop and apply a theoretical method for calculating effective electronic couplings...
Energy decomposition analysis (EDA) based on absolutely localized molecular orbitals (ALMOs) decompo...
Computation of charge-transfer coupling energy with a nonempirically tuned range-separated density f...
Conventional density-functional theory (DFT) has the potential to overbind radical-molecule complexe...
A simplified approach for computing the electronic coupling of nonradiative excitation-energy transf...
Separation of the energetic contribution of charge transfer to interaction energy in noncovalent com...
Density-functional embedding theory provides a general way to perform multi-physics quantum mechanic...
Density-functional embedding theory provides a general way to perform multi-physics quantum mechanic...
Density-functional embedding theory provides a general way to perform multi-physics quantum mechanic...
Density functional theory (DFT) is the most widely used quantum chemistry method. This dissertation ...
Charge-transfer (CT) is an important binding force in the formation of intermolecular complexes, and...
Charge-transfer (CT) is an important binding force in the formation of intermolecular complexes, and...
Charge-transfer (CT) is an important binding force in the formation of intermolecular complexes, and...
Recently, a general framework suitable for general frozen-density embedding (FDE) methods was publis...
Energy decomposition analysis (EDA) based on absolutely localized molecular orbitals (ALMOs) decompo...
In this work I develop and apply a theoretical method for calculating effective electronic couplings...
Energy decomposition analysis (EDA) based on absolutely localized molecular orbitals (ALMOs) decompo...
Computation of charge-transfer coupling energy with a nonempirically tuned range-separated density f...
Conventional density-functional theory (DFT) has the potential to overbind radical-molecule complexe...
A simplified approach for computing the electronic coupling of nonradiative excitation-energy transf...