Exciplex-forming systems with extremely high RISC rates exceeding 107 s−1 for oxygen probing and white hybrid OLEDs
Author:
Funder
Horizon 2020
Publisher
Elsevier BV
Subject
Metals and Alloys,Surfaces, Coatings and Films,Biomaterials,Ceramics and Composites
Reference48 articles.
1. Exciplex: An Intermolecular Charge-Transfer Approach for TADF
2. Blue organic light-emitting diodes: current status, challenges, and future outlook
3. Organic light-emitting diodes employing efficient reverse intersystem crossing for triplet-to-singlet state conversion
4. Highly Efficient TADF OLEDs: How the Emitter-Host Interaction Controls Both the Excited State Species and Electrical Properties of the Devices to Achieve Near 100% Triplet Harvesting and High Efficiency
5. Modulation of Exciton Generation in Organic Active Planar pn Heterojunction: Toward Low Driving Voltage and High-Efficiency OLEDs Employing Conventional and Thermally Activated Delayed Fluorescent Emitters
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