Metal-free dual singlettriplet organic light-emitting diode (OLED) emitters can provide direct insight into spin statistics, spin correlations and spin relaxation phenomena, through a comparison of fluorescence to phosphorescence intensity. Remarkably, such materials can also function at room temperature, exhibiting phosphorescence lifetimes of several milliseconds. Using electroluminescence, quantum chemistry, and electron paramagnetic resonance spectroscopy, we investigate the effect of the conjugation pathway on radiative and nonradiative relaxation of the triplet state in phenazine-based compounds and demonstrate that the contribution of the phenazine n pi* excited state is crucial to enabling phosphorescence
Molecular organic fluorophores are currently used in organic light-emitting diodes, though non-emiss...
In contrast to the traditional view that the small organic molecules emit fluorescence, more and mor...
The molecular design of metal-free organic phosphors is essential for realizing persistent room-temp...
Utilization of triplets is important for preparing organic light-emitting diodes with high efficienc...
We demonstrate that a simple phenazine derivative can serve as a dual emitter for organic light-emit...
In most organic molecules, phosphorescence has its origin in transitions from triplet exited states ...
At low temperatures and high magnetic fields, electron and hole spins in an organic light-emitting d...
Understanding the local triplet (3LE), charge transfer triplet (3CT), and charge transfer singlet (1...
Purely aromatic hydrocarbon materials with ultralong room-temperature phosphorescence (RTP) were rep...
At low temperatures and high magnetic fields, electron and hole spins in an organic light-emitting d...
The radiative rate (<i>k</i><sub>p</sub>) of the lowest triplet excited state (T<sub>1</sub>) and th...
The ultimate efficiency of polymer light-emitting diodes is limited by the fraction of charges recom...
Organic light emitting diodes (OLEDs) based on thermally activated delayed fluorescence (TADF) utili...
We have measured the ratio, r=sS/sT of the formation cross section, s of singlet and triplet exciton...
Persistent luminescence from triplet excitons in organic molecules is rare, as fast non-radiative de...
Molecular organic fluorophores are currently used in organic light-emitting diodes, though non-emiss...
In contrast to the traditional view that the small organic molecules emit fluorescence, more and mor...
The molecular design of metal-free organic phosphors is essential for realizing persistent room-temp...
Utilization of triplets is important for preparing organic light-emitting diodes with high efficienc...
We demonstrate that a simple phenazine derivative can serve as a dual emitter for organic light-emit...
In most organic molecules, phosphorescence has its origin in transitions from triplet exited states ...
At low temperatures and high magnetic fields, electron and hole spins in an organic light-emitting d...
Understanding the local triplet (3LE), charge transfer triplet (3CT), and charge transfer singlet (1...
Purely aromatic hydrocarbon materials with ultralong room-temperature phosphorescence (RTP) were rep...
At low temperatures and high magnetic fields, electron and hole spins in an organic light-emitting d...
The radiative rate (<i>k</i><sub>p</sub>) of the lowest triplet excited state (T<sub>1</sub>) and th...
The ultimate efficiency of polymer light-emitting diodes is limited by the fraction of charges recom...
Organic light emitting diodes (OLEDs) based on thermally activated delayed fluorescence (TADF) utili...
We have measured the ratio, r=sS/sT of the formation cross section, s of singlet and triplet exciton...
Persistent luminescence from triplet excitons in organic molecules is rare, as fast non-radiative de...
Molecular organic fluorophores are currently used in organic light-emitting diodes, though non-emiss...
In contrast to the traditional view that the small organic molecules emit fluorescence, more and mor...
The molecular design of metal-free organic phosphors is essential for realizing persistent room-temp...