A highly potent donor-acceptor biaryl thermally activated delayed fluorescence (TADF) dye is accessible by a concise two-step sequence employing two-fold Ullmann arylation and a sequentially Pd-catalyzed Masuda borylation-Suzuki arylation (MBSA). Photophysical investigations show efficient TADF at ambient temperature due to the sterical hindrance between the donor and acceptor moieties. The photoluminescence quantum yield amounts to Phi(PL) = 80% in toluene and 90% in PMMA arising from prompt and delayed fluorescence with decay times of 21 ns and 30 mu s, respectively. From an Arrhenius plot, the energy gap Delta E(S-1 - T-1) between the lowest excited singlet S(1 )and triplet T-1 state was determined to be 980 cm(-1) (120 meV). A new proce...
Quantitative understanding of the photophysical processes is essential for developing novel thermall...
We present the synthesis, optoelectronic characterization, and a detailed theoretical study of DMAC-...
Understanding the excited-state dynamics and conformational relaxation in thermally activated delaye...
A highly potent donor-acceptor biaryl TADF dye is accessible by a concise two-step sequence, employ...
We introduce a simple quantum-mechanical model for thermally activated delayed fluorescence (TADF). ...
The development of efficient blue donor–acceptor thermally activated delayed fluorescence (TADF) emi...
The design and engineering of delayed fluorescent dyes that are able to convert non-emissive triplet...
Harnessing the near-infrared (NIR) region of the electromagnetic spectrum is exceedingly important f...
In this work we successfully developed a strategy for positively influencing the conformation of the...
A series of candidates of thermally activated delayed fluorescence (TADF) materials, which have impo...
Three multichromophore thermally activated delayed fluorescence (TADF) molecules, p-di2CzPN, m-di2Cz...
Molecules that exhibit multiple resonance (MR) type thermally activated delayed fluorescence (TADF) ...
Understanding the excited-state dynamics and conformational relaxation in thermallyactivated delayed...
Emitters showing thermally activated delayed fluorescence (TADF) in electroluminescent devices rely ...
For electroluminescence with delayed fluorescence, the azasiline unit has been introduced for the fi...
Quantitative understanding of the photophysical processes is essential for developing novel thermall...
We present the synthesis, optoelectronic characterization, and a detailed theoretical study of DMAC-...
Understanding the excited-state dynamics and conformational relaxation in thermally activated delaye...
A highly potent donor-acceptor biaryl TADF dye is accessible by a concise two-step sequence, employ...
We introduce a simple quantum-mechanical model for thermally activated delayed fluorescence (TADF). ...
The development of efficient blue donor–acceptor thermally activated delayed fluorescence (TADF) emi...
The design and engineering of delayed fluorescent dyes that are able to convert non-emissive triplet...
Harnessing the near-infrared (NIR) region of the electromagnetic spectrum is exceedingly important f...
In this work we successfully developed a strategy for positively influencing the conformation of the...
A series of candidates of thermally activated delayed fluorescence (TADF) materials, which have impo...
Three multichromophore thermally activated delayed fluorescence (TADF) molecules, p-di2CzPN, m-di2Cz...
Molecules that exhibit multiple resonance (MR) type thermally activated delayed fluorescence (TADF) ...
Understanding the excited-state dynamics and conformational relaxation in thermallyactivated delayed...
Emitters showing thermally activated delayed fluorescence (TADF) in electroluminescent devices rely ...
For electroluminescence with delayed fluorescence, the azasiline unit has been introduced for the fi...
Quantitative understanding of the photophysical processes is essential for developing novel thermall...
We present the synthesis, optoelectronic characterization, and a detailed theoretical study of DMAC-...
Understanding the excited-state dynamics and conformational relaxation in thermally activated delaye...