AbstractThe prediction of the charge mobility in conjugated organic systems is of great interest in order to evaluate their potential use as active materials in a wide class of devices. In this field, one of the most used approaches for modeling this process is the Marcus theory, where one of the key parameters to be calculated is the intermolecular transfer integral, J. Different methods have been developed for J calculations, based initially on the Hartree-Fock Hamiltonian and more recently on the density functional ones. However, in literature only few works were focused on the reliability of the values of the intermolecular transfer integrals obtained with density functional calculations. Here, by using the energy-splitting-in-dimer app...
The local-density approximation of density functional theory (DFT) is remarkably accurate, for insta...
The most important result of a quantum chemical calculation is the total energy of the molecular sys...
The emergence of a family of computational methods, known under the label ‘density functional theory...
AbstractThe prediction of the charge mobility in conjugated organic systems is of great interest in ...
\u3cp\u3eTheoretical studies of charge transport in organic conducting systems pose a unique challen...
We present an analysis of the magnitude of density functional theory (DFT)-calculated intermolecular...
There are several approaches to evaluation of an electron-transfer (ET) matrix element. Among them, ...
The work in this thesis is aimed, broadly speaking, at developing methods of applying quantum mechan...
Computation of charge-transfer coupling energy with a nonempirically tuned range-separated density f...
Kohn-Sham Density Functional Theory (DFT) provides a method for electronic structure calculations ap...
We investigate the effect of structural fluctuations on charge transfer integrals, overlap integrals...
Conventional density-functional theory (DFT) has the potential to overbind radical−molecule complex...
Marcus theory of electron transfer is the quintessential example of a successful theory in physical ...
Conventional density-functional theory (DFT) has the potential to overbind radical-molecule complexe...
ABSTRACT: The correct description of charge transfer in ground and excited states is very important ...
The local-density approximation of density functional theory (DFT) is remarkably accurate, for insta...
The most important result of a quantum chemical calculation is the total energy of the molecular sys...
The emergence of a family of computational methods, known under the label ‘density functional theory...
AbstractThe prediction of the charge mobility in conjugated organic systems is of great interest in ...
\u3cp\u3eTheoretical studies of charge transport in organic conducting systems pose a unique challen...
We present an analysis of the magnitude of density functional theory (DFT)-calculated intermolecular...
There are several approaches to evaluation of an electron-transfer (ET) matrix element. Among them, ...
The work in this thesis is aimed, broadly speaking, at developing methods of applying quantum mechan...
Computation of charge-transfer coupling energy with a nonempirically tuned range-separated density f...
Kohn-Sham Density Functional Theory (DFT) provides a method for electronic structure calculations ap...
We investigate the effect of structural fluctuations on charge transfer integrals, overlap integrals...
Conventional density-functional theory (DFT) has the potential to overbind radical−molecule complex...
Marcus theory of electron transfer is the quintessential example of a successful theory in physical ...
Conventional density-functional theory (DFT) has the potential to overbind radical-molecule complexe...
ABSTRACT: The correct description of charge transfer in ground and excited states is very important ...
The local-density approximation of density functional theory (DFT) is remarkably accurate, for insta...
The most important result of a quantum chemical calculation is the total energy of the molecular sys...
The emergence of a family of computational methods, known under the label ‘density functional theory...