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通过吲哚咔唑多共振发射体的线性环化工程克服深蓝色有机发光二极管中的效率-稳定性-色纯度三难困境

Linear Annulation Engineering of Indolocarbazole Multiple Resonance Emitter to Overcome Efficiency-Stability-Color Purity Trilemma in Deep-Blue OLEDs.

作者信息

Wang Qian, Zhang Hai, Zhou Jianping, Dai Hengyi, Mai Minqiang, Huang Tianyu, Wang Lei, Wang Xuewen, Zhang Dongdong, Duan Lian

机构信息

Key Lab of Organic Optoelectronics and Molecular Engineering of Ministry of Education, Department of Chemistry, Tsinghua University, Beijing, 100084, P. R. China.

Laboratory of Flexible Electronics Technology, Tsinghua University, Beijing, 100084, P. R. China.

出版信息

Adv Mater. 2025 Jul;37(29):e2503839. doi: 10.1002/adma.202503839. Epub 2025 May 9.

DOI:10.1002/adma.202503839
PMID:40348598
Abstract

Deep-blue emitters for organic light-emitting diodes (OLEDs) still confront the critical challenge of balancing high efficiency, operational stability, and color purity, particularly for the ones with peak wavelengths (λ) ≤ 460 nm. Here, the study demonstrates deep-blue devices featuring ultrapure emission (λ = 458 nm, full-width at half-maximum = 19 nm), high maximum external quantum efficiency of 34.3% with small roll-off (26.9% at 1 000 cd m ; 20.9% at 5 000 cd m ), and long operational LT80 (time to 80% of the initial luminance) of 101 hours at 1,000 cd m , being one of the longest lifetime among OLEDs with λ ≤ 460 nm and EQE >20%. This breakthrough stems from an indolocarbazole narrowband emitter employing a linear annulation strategy, which not only narrows spectral bandwidth while red-shifting emission peak through multiple resonance framework extension, but also energetically and dynamically enhances device longevity via triplet energy reduction. Furthermore, strategic integration of steric hindrance on the emitting backbone suppresses intermolecular interactions and directs reactivity pathways. This emitter concurrently achieves a λ of 456 nm, FWHM of 15 nm and photoluminescence (PL) quantum yield of 98% in dilute toluene. The work highlights linear annulation engineering as a potential approach to resolve the efficiency-stability-color purity trilemma in deep-blue OLEDs.

摘要

用于有机发光二极管(OLED)的深蓝色发光体仍面临着平衡高效率、运行稳定性和色纯度的关键挑战,特别是对于峰值波长(λ)≤460nm的发光体而言。在此,该研究展示了具有超纯发射(λ = 458nm,半高宽 = 19nm)、高最大外量子效率34.3%且滚降小(在1000cd/m²时为26.9%;在5000cd/m²时为20.9%)以及在1000cd/m²下具有101小时的长运行LT80(达到初始亮度80%的时间)的深蓝色器件,这是λ≤460nm且EQE>20%的OLED中寿命最长的之一。这一突破源于采用线性环化策略的吲哚并咔唑窄带发光体,该策略不仅通过多个共振框架扩展在使发射峰红移的同时缩小光谱带宽,还通过降低三重态能量在能量和动力学上提高器件寿命。此外,在发射主链上进行空间位阻的策略性整合抑制了分子间相互作用并引导反应路径。该发光体在稀甲苯中同时实现了456nm的λ、15nm的半高宽和98%的光致发光(PL)量子产率。这项工作突出了线性环化工程作为解决深蓝色OLED中效率 - 稳定性 - 色纯度三元难题的一种潜在方法。

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