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Molecular Design Strategy of Organic Thermally Activated Delayed Fluorescence Emitters

Chemistry of Materials · 2017 · Vol. 29(5) · pp. 1946–1963
Yirang ImMounggon KimYong Joo ChoJeong‐A SeoKyoung Soo YookJun Yeob Lee

Abstract

Recently, organic thermally activated delayed fluorescence (TADF) emitters have attracted a great deal of attention because they can theoretically realize 100% internal quantum efficiency. Many TADF emitters have been developed since the first demonstration of close to 20% external quantum efficiency in the devices. Recently developed TADF emitters demonstrated close to 37% external quantum efficiency in blue, above 30% external quantum efficiency in green, and close to 18% external quantum efficiency in red devices. Therefore, TADF organic light-emitting diodes could potentially be substituted for high-efficiency phosphorescent organic light-emitting diodes. In this work, we reviewed molecular design strategies of organic-based TADF emitters by classifying them into several categories depending on the material parameters required for the TADF emitters. In addition, we proposed a future development direction of TADF emitters to make them competitive with phosphorescent emitters.

Organic Light-Emitting Diodes ResearchOrganic Electronics and PhotovoltaicsLuminescence and Fluorescent MaterialsPhosphorescenceQuantum efficiencyOLEDOptoelectronicsFluorescenceMaterials scienceDiodePhosphorescent organic light-emitting diodeQuantumNanotechnology

Funding

  • National Research Foundation of Korea
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