The understanding of the excited-state properties of electron donors, acceptors and their interfaces in organic optoelectronic devices is a fundamental issue for their performance optimization. In order to obtain a balanced description of the different excitation types for electron-donor-acceptor systems, including the singlet charge transfer (CT), local excitations, and triplet excited states, several ab initio and density functional theory (DFT) methods for excited-state calculations were evaluated based upon the selected model system of benzene-tetracyanoethylene (B-TCNE) complexes. On the basis of benchmark calculations of the equation-of-motion coupled-cluster with single and double excitations method, the arithmetic mean of the absolu...
Different ways to extract properties of excited states from time-dependent density functional theory...
The present research involves the study of donor-acceptor (D/A) dyad complexes from a charge transfe...
The accurate prediction of singlet and triplet excitation energies is an area of intense research of...
The understanding of the excited-state properties of electron donors, acceptors and their interfaces...
International audienceWe study within the perturbative many-body $GW$ and Bethe-Salpeter approach th...
The excited states of a donor-bridge-acceptor (DBA) model system have been investigated using time-d...
Criteria to assess charge-transfer (CT) and CT-like character of electronic excitations are examined...
Growing interest in characterizing charge-transfer (CT) processes inherent in many chemical interact...
Organic Donor-Acceptor complexes form the main component of the organic photovoltaic devices (OPVs)....
The present research involves the study of donor-acceptor (D/A) dyad complexes from a charge transfe...
We present an analysis on the behavior of the TD-DFT approach in the determination of excited-state ...
The present research involves the study of donor-acceptor (D/A) dyad complexes from a charge transfe...
We present an analysis on the behavior of the TD-DFT approach in the determination of excited-state ...
We present an analysis on the behavior of the TD-DFT approach in the determination of excited-state ...
Different ways to extract properties of excited states from time-dependent density functional theory...
Different ways to extract properties of excited states from time-dependent density functional theory...
The present research involves the study of donor-acceptor (D/A) dyad complexes from a charge transfe...
The accurate prediction of singlet and triplet excitation energies is an area of intense research of...
The understanding of the excited-state properties of electron donors, acceptors and their interfaces...
International audienceWe study within the perturbative many-body $GW$ and Bethe-Salpeter approach th...
The excited states of a donor-bridge-acceptor (DBA) model system have been investigated using time-d...
Criteria to assess charge-transfer (CT) and CT-like character of electronic excitations are examined...
Growing interest in characterizing charge-transfer (CT) processes inherent in many chemical interact...
Organic Donor-Acceptor complexes form the main component of the organic photovoltaic devices (OPVs)....
The present research involves the study of donor-acceptor (D/A) dyad complexes from a charge transfe...
We present an analysis on the behavior of the TD-DFT approach in the determination of excited-state ...
The present research involves the study of donor-acceptor (D/A) dyad complexes from a charge transfe...
We present an analysis on the behavior of the TD-DFT approach in the determination of excited-state ...
We present an analysis on the behavior of the TD-DFT approach in the determination of excited-state ...
Different ways to extract properties of excited states from time-dependent density functional theory...
Different ways to extract properties of excited states from time-dependent density functional theory...
The present research involves the study of donor-acceptor (D/A) dyad complexes from a charge transfe...
The accurate prediction of singlet and triplet excitation energies is an area of intense research of...