Electronic coupling matrix elements are important to the theoretical description of electron transfer processes. However, they are notoriously difficult to obtain accurately from time-dependent density functional theory (TDDFT). Here, we use the HAB11 benchmark dataset of coupling matrix elements to assess whether TDDFT using optimally tuned range-separated hybrid functionals, already known to be successful for the description of charge transfer excitation energies, also allows for an improved accuracy in the prediction of coupling matrix elements. We find that this approach outperforms all previous TDDFT calculations, based on semi-local, hybrid or non-tuned range-separated hybrid functionals, with a remaining average deviation as low as ∼...
Criteria to assess charge-transfer (CT) and CT-like character of electronic excitations are examined...
Our work reveals a high dependence on charge-transfer (CT) amounts for the optimal Hartree–Fock perc...
ABSTRACT: The correct description of charge transfer in ground and excited states is very important ...
Computation of charge-transfer coupling energy with a nonempirically tuned range-separated density f...
Abstract: Time-dependent density functional theory (TDDFT) is a powerful tool allowing for accurate ...
Recently developed optimally tuned range-separated hybrid (OT-RHS) functionals within time-dependent...
In this article, four methods to calculate charge transfer integrals in the context of bridge-mediat...
The hyperpolarizabilities of five prototypical and four recently synthesized long-range charge-trans...
[[sponsorship]]化學研究所[[note]]出版中(accepted);[SCI];有審查制度;具代表性[[note]]http://gateway.isiknowledge.com/ga...
We present a critical analysis of the popular fragment-orbital density-functional theory (FO-DFT) sc...
A density functional theory-based Green's function pathway model is developed enabling further advan...
We obtain the exchange parameter of hybrid functionals by imposing the fundamental condition of a pi...
In this work I develop and apply a theoretical method for calculating effective electronic couplings...
Reliable Prediction of Charge Transfer Excitations in Molecular Complexes Using Time-Dependent Densi...
We present an analysis of the magnitude of density functional theory (DFT)-calculated intermolecular...
Criteria to assess charge-transfer (CT) and CT-like character of electronic excitations are examined...
Our work reveals a high dependence on charge-transfer (CT) amounts for the optimal Hartree–Fock perc...
ABSTRACT: The correct description of charge transfer in ground and excited states is very important ...
Computation of charge-transfer coupling energy with a nonempirically tuned range-separated density f...
Abstract: Time-dependent density functional theory (TDDFT) is a powerful tool allowing for accurate ...
Recently developed optimally tuned range-separated hybrid (OT-RHS) functionals within time-dependent...
In this article, four methods to calculate charge transfer integrals in the context of bridge-mediat...
The hyperpolarizabilities of five prototypical and four recently synthesized long-range charge-trans...
[[sponsorship]]化學研究所[[note]]出版中(accepted);[SCI];有審查制度;具代表性[[note]]http://gateway.isiknowledge.com/ga...
We present a critical analysis of the popular fragment-orbital density-functional theory (FO-DFT) sc...
A density functional theory-based Green's function pathway model is developed enabling further advan...
We obtain the exchange parameter of hybrid functionals by imposing the fundamental condition of a pi...
In this work I develop and apply a theoretical method for calculating effective electronic couplings...
Reliable Prediction of Charge Transfer Excitations in Molecular Complexes Using Time-Dependent Densi...
We present an analysis of the magnitude of density functional theory (DFT)-calculated intermolecular...
Criteria to assess charge-transfer (CT) and CT-like character of electronic excitations are examined...
Our work reveals a high dependence on charge-transfer (CT) amounts for the optimal Hartree–Fock perc...
ABSTRACT: The correct description of charge transfer in ground and excited states is very important ...