ACS Applied Materials & Interfaces · 2013 · 170 citations · 33 references
Organic Charge-transfer CompoundWhite OledElectrical EngineeringExciplex Triplet ExcitonsEngineeringOrganic ElectronicsOptical PropertiesNanoelectronicsExternal Quantum EfficiencyApplied PhysicsEfficient Exciplexes FormationOrganic SemiconductorExcitation Energy TransferChemistryCharge Carrier TransportThermally Activated Delayed FluorescenceOptoelectronicsOrganic Materials
A simple three-layer interfacial-type yellow emission exciplex device with an external quantum efficiency as high as 7.7% has been successfully achieved by combining conformation compatible C3-symmetric hole-transporting TCTA and electron-transporting 3P-T2T. The excellent and balanced charge-transporting properties of TCTA and 3P-T2T and the large energy-levels offset (0.8 eV) of TCTA/3P-T2T interface play important roles for the efficient exciplexes formation, which are effectively confined around the interfacial region due to the high triplet energies (2.85 eV) of TCTA and 3P-T2T. The high-performance OLED was believed to be from the effective harvest of exciplex triplet excitons via reverse intersystem crossing process.
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Organic electroluminescent diodes
Chak Wah Tang, S. A. VanSlyke · Applied Physics Letters · 1987 · 14.1K citations
Highly efficient organic light-emitting diodes from delayed fluorescence
H. Uoyama, Kenichi Goushi, Katsuyuki Shizu et al. · Nature · 2012 · 7.8K citations