Efficient blue organic light-emitting diodes employing thermally activated delayed fluorescence
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- Type
- article
- Published
- 2014-03-02
- Cited by
- 2,080
- References
- 46
- OpenAlex
- https://openalex.org/W1965207322
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:120783369
Keywords
OLED, Phosphorescence, Materials science, Optoelectronics, Quantum efficiency
References
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- Highly efficient OLEDs with phosphorescent materials
- Efficient up-conversion of triplet excitons into a singlet state and its application for organic light emitting diodes
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- Quantum efficiency roll-off at high brightness in fluorescent and phosphorescent organic light emitting diodes
- A possible mechanism for enhanced electrofluorescence emission through triplet-triplet annihilation in organic electroluminescent devices
- Organic Materials for Deep Blue Phosphorescent Organic Light‐Emitting Diodes
- Activating efficient phosphorescence from purely organic materials by crystal design.
- Photophysical properties of highly luminescent copper(I) halide complexes chelated with 1,2-bis(diphenylphosphino)benzene.
- Organic light-emitting diodes employing efficient reverse intersystem crossing for triplet-to-singlet state conversion
- Bidirectional "ping-pong" energy transfer and 3000-fold lifetime enhancement in a Re(I) charge transfer complex.
- External Quantum Efficiency Above 20% in Deep Blue Phosphorescent Organic Light‐Emitting Diodes
- E-type delayed fluorescence of a phosphine-supported Cu2(mu-NAr2)2 diamond core: harvesting singlet and triplet excitons in OLEDs.
- The triplet state of organo-transition metal compounds. Triplet harvesting and singlet harvesting for efficient OLEDs
- High-efficiency organic light-emitting diodes utilizing thermally activated delayed fluorescence from triazine-based donor–acceptor hybrid molecules
- Triplet Exciton Confinement in Green Organic Light‐Emitting Diodes Containing Luminescent Charge‐Transfer Cu(I) Complexes
- Triplet annihilation exceeding spin statistical limit in highly efficient fluorescent organic light-emitting diodes
- Highly Efficient Electroluminescence from Green‐Light‐Emitting Electrochemical Cells Based on CuI Complexes
- Highly efficient green organic light-emitting diodes containing luminescent three-coordinate copper(I) complexes.
Cited by
- Operational lifetimes of organic light-emitting diodes dominated by Förster resonance energy transfer
- An Alternative Host Material for Long‐Lifespan Blue Organic Light‐Emitting Diodes Using Thermally Activated Delayed Fluorescence
- Stable Enantiomers Displaying Thermally Activated Delayed Fluorescence: Efficient OLEDs with Circularly Polarized Electroluminescence.
- Extremely condensing triplet states of DPEPO-type hosts through constitutional isomerization for high-efficiency deep-blue thermally activated delayed fluorescence diodes
- Highly Efficient Thermally Activated Delayed Fluorescence Emitter Developed by Replacing Carbazole With 1,3,6,8-Tetramethyl-Carbazole
- Simple structured hybrid WOLEDs based on incomplete energy transfer mechanism: from blue exciplex to orange dopant
- Photophysical characterizations of OLED relevant Cu(I) complexes exhibiting thermally activated delayed fluorescence (TADF)
- Tuning the energy gap and charge balance property of bipolar host by molecular modification: Efficient blue electrophosphorescence devices based on solution-process
- Highly efficient and stable organic light-emitting diodes with a greatly reduced amount of phosphorescent emitter
- Highly efficient and color stable single-emitting-layer fluorescent WOLEDs with delayed fluorescent host
- Efficient exciplex emission from intramolecular charge transfer material
- New fluorescent emitter for efficient deep-blue electroluminescence with unusual roll-up character
- Thermally activated delayed fluorescence sensitized phosphorescence: a strategy to break the trade-off between efficiency and efficiency roll-off.
- Reliable Prediction with Tuned Range-Separated Functionals of the Singlet-Triplet Gap in Organic Emitters for Thermally Activated Delayed Fluorescence.
- Fluorescence and physical properties of the organic salt 2-chloro-4-nitrobenzoate–3-ammonium-phenol
- Ideal combination of the host and dopant materials showing thermally activated delayed fluorescent behavior
- High efficiency and low driving voltage blue/white electrophosphorescence enabled by the synergistic combination of singlet and triplet energy of bicarbazole derivatives
- Rapid fabrication of Al2O3 encapsulations for organic electronic devices
- In-plane electroluminescence from microcavity organic light-emitting transistors
- Aggregation-Induced Emission from Fluorophore-Quencher Dyads with Long-Lived Luminescence.
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