Deep blue exciplex organic light-emitting diodes with enhanced efficiency; P-type or E-type triplet conversion to singlet excitons?
about
The first tandem, all-exciplex-based WOLED.The key role of geminate electron-hole pair recombination in the delayed fluorescence in rhodamine 6G and ATTO-532.Optimizing the Intralayer and Interlayer Compatibility for High-Efficiency Blue Thermally Activated Delayed Fluorescence Diodes.Determining the Origin of Half-bandgap-voltage Electroluminescence in Bifunctional Rubrene/C60 Devices.A fluorescent organic light-emitting diode with 30% external quantum efficiency.Prediction and design of efficient exciplex emitters for high-efficiency, thermally activated delayed-fluorescence organic light-emitting diodes.Generating Light from Upper Excited Triplet States: A Contribution to the Indirect Singlet Yield of a Polymer OLED, Helping to Exceed the 25% Singlet Exciton Limit.The Role of Charge Balance and Excited State Levels on Device Performance of Exciplex-based Phosphorescent Organic Light Emitting Diodes.Synthesis and investigation of intra-molecular charge transfer state properties of novel donor-acceptor-donor pyridine derivatives: the effects of temperature and environment on molecular configurations and the origin of delayed fluorescence.Electric Field Induce Blue Shift and Intensity Enhancement in 2D Exciplex Organic Light Emitting Diodes; Controlling Electron-Hole Separation.Triplet-Polaron-Interaction-Induced Upconversion from Triplet to Singlet: a Possible Way to Obtain Highly Efficient OLEDs.High performance full color OLEDs based on a class of molecules with dual carrier transport channels and small singlet-triplet splitting.Efficient delayed fluorescence via triplet-triplet annihilation for deep-blue electroluminescence.Charge-transfer-featured materials-promising hosts for fabrication of efficient OLEDs through triplet harvesting via triplet fusion.Triplet decay-induced negative temperature dependence of the transient photoluminescence decay of thermally activated delayed fluorescence emitterEmitter Orientation as a Key Parameter in Organic Light-Emitting DiodesBlue-emitting organic electrofluorescence materials: progress and prospectiveAn Exciplex Forming Host for Highly Efficient Blue Organic Light Emitting Diodes with Low Driving Voltage
P2860
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P2860
Deep blue exciplex organic light-emitting diodes with enhanced efficiency; P-type or E-type triplet conversion to singlet excitons?
description
2012 nî lūn-bûn
@nan
2012年の論文
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2012年学术文章
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2012年学术文章
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2012年学术文章
@zh-cn
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@zh-hans
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name
Deep blue exciplex organic lig ...... onversion to singlet excitons?
@en
Deep blue exciplex organic lig ...... onversion to singlet excitons?
@nl
type
label
Deep blue exciplex organic lig ...... onversion to singlet excitons?
@en
Deep blue exciplex organic lig ...... onversion to singlet excitons?
@nl
prefLabel
Deep blue exciplex organic lig ...... onversion to singlet excitons?
@en
Deep blue exciplex organic lig ...... onversion to singlet excitons?
@nl
P2093
P2860
P356
P1433
P1476
Deep blue exciplex organic lig ...... onversion to singlet excitons?
@en
P2093
Andrew P Monkman
Chien-Jung Chiang
Vygintas Jankus
P2860
P304
P356
10.1002/ADMA.201203615
P407
P577
2012-12-27T00:00:00Z