Highly efficient, conventional and flexible deep-red phosphorescent OLEDs using ambipolar thiophene/selenophene-phenylquinoline ligand-based Ir(III) complexes
Author:
Funder
National Research Foundation
NRF
Ministry of Science, ICT & Future Planning
Publisher
Elsevier BV
Subject
Process Chemistry and Technology,General Chemical Engineering
Reference36 articles.
1. A facile route to efficient, low-cost flexible organic light-emitting diodes: utilizing the high refractive index and built-in scattering properties of industrial-grade PEN substrates;Kim;Adv Mater,2015
2. Flexible bottom-emitting white organic light emitting diodes with semitransparent Ni/Ag/Ni anode;Koo;Opt Express,2013
3. Flexible light-emitting diodes based on vertical nitride nanowires;Dai;Nano Lett,2015
4. Ultra-thin and smooth transparent electrode for flexible and leakage-free organic light-emitting diodes;Ok;Sci Rep,2015
5. Flexible transparent conducting composite films using a monolithically embedded AgNW electrode with robust performance stability;Im;Nanoscale,2014
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3. Unsymmetric Phosphorescent Ir(III) Complexes with Ambipolar Features and Investigation for Both Aggregation-Induced Phosphorescent Emission and Electroluminescent Properties;Chinese Journal of Organic Chemistry;2024
4. 2,3-Diarylquinoline -Based Iridium (III) Complexes: Synthesis, Photophysical Properties and DFT studies;Journal of Photochemistry and Photobiology A: Chemistry;2023-11
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