Next-generation blue OLED emitters: efficiency, color purity, and the road to BT.2020

有机发光二极管 材料科学 光电子学 二极管 全彩 蓝光 光学 发光二极管 按需 聚合物
作者
Tejas Dhanalaxmi Raju,Meghana Tirupati,Nahyun Kim,Muruganantham Subramanian,Pavan Kumar Odugu,Arul Varman Kesavan,Jang Hyuk Kwon,Tae Geun Kim
出处
期刊:Materials horizons [Royal Society of Chemistry]
标识
DOI:10.1039/d5mh02390d
摘要

Next-generation ultrahigh-definition (UHD) displays demand blue organic light-emitting diodes (OLEDs) that can achieve high efficiency, long operational stability, and the stringent color purity required by the BT.2020 standard. Although thermally activated delayed fluorescence (TADF) and phosphorescent emitters enable full exciton utilization, conventional donor-acceptor TADF systems typically exhibit broad emission spectra arising from long-range charge-transfer character, ultimately limiting their color purity. Multiple-resonance (MR) TADF materials deliver intrinsically narrowband emission through short-range charge-transfer transitions induced by orthogonally arranged resonance atoms. In this comprehensive material review, we describe molecular design strategies for high-performance blue MR-TADF emitters, emphasizing boron-nitrogen-, carbonyl-nitrogen-, and indolocarbazole-based molecular frameworks. We discuss how structural engineering such as π-extension, peripheral shielding, spiro-locking, carbonyl incorporation, and heteroatom modulation assists in precisely controlling HOMO-LUMO distributions, suppressing vibronic coupling, and enhancing reverse intersystem crossing to achieve narrow emission bandwidths (<20 nm) with high photoluminescence quantum yields. In addition, key device-engineering approaches, including phosphorescence-sensitized fluorescence and TADF-sensitized fluorescence, further mitigate exciton loss, efficiency roll-off, and aggregation-induced quenching in practical devices. By integrating molecular and device design perspectives, this review highlights the current progress, remaining challenges, and future opportunities in realizing efficient, stable, and spectrally pure blue MR-TADF OLEDs suitable for next-generation display applications.
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