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阶梯状能量中继激基复合物可使基于热激活延迟荧光的白色二极管在单一发射层中实现100%的内量子效率。

Ladder-like energy-relaying exciplex enables 100% internal quantum efficiency of white TADF-based diodes in a single emissive layer.

作者信息

Han Chunmiao, Du Ruiming, Xu Hui, Han Sanyang, Ma Peng, Bian Jinkun, Duan Chunbo, Wei Ying, Sun Mingzhi, Liu Xiaogang, Huang Wei

机构信息

Key Laboratory of Functional Inorganic Material Chemistry (Ministry of Education) & School of Chemistry and Material Science, Heilongjiang University, Harbin, PR China.

Department of Chemistry, National University of Singapore, Singapore, Singapore.

出版信息

Nat Commun. 2021 Jun 15;12(1):3640. doi: 10.1038/s41467-021-23941-z.

Abstract

Development of white organic light-emitting diodes based on purely thermally activated delayed fluorescence with a single-emissive-layer configuration has been a formidable challenge. Here, we report the rational design of a donor-acceptor energy-relaying exciplex and its utility in fabricating single-emissive-layer, thermally activated delayed fluorescence-based white organic light-emitting diodes that exhibit 100% internal quantum efficiency, 108.2 lm W power efficiency, and 32.7% external quantum efficiency. This strategy enables thin-film fabrication of an 8 cm × 8 cm thermally activated delayed fluorescence white organic light-emitting diodes (10 inch) prototype with 82.7 lm W power efficiency and 25.0% external quantum efficiency. Introduction of a phosphine oxide-based acceptor with a steric group to the exciplex limits donor-acceptor triplet coupling, providing dual levels of high-lying and low-lying triplet energy. Transient spectroscopic characterizations confirm that a ladder-like energy relaying occurs from the high-lying triplet level of the exciplex to a blue emitter, then to the low-lying triplet level of the phosphine oxide acceptor, and ultimately to the yellow emitter. Our results demonstrate the broad applicability of energy relaying in multicomponent systems for exciton harvesting, providing opportunities for the development of third-generation white organic light-emitting diode light sources.

摘要

基于单发射层结构的纯热激活延迟荧光来开发白色有机发光二极管一直是一项艰巨的挑战。在此,我们报告了一种供体 - 受体能量中继激基复合物的合理设计及其在制造单发射层、基于热激活延迟荧光的白色有机发光二极管中的应用,该二极管展现出100%的内量子效率、108.2 lm W的功率效率以及32.7%的外量子效率。这种策略能够制造出8厘米×8厘米(10英寸)的热激活延迟荧光白色有机发光二极管原型薄膜,其功率效率为82.7 lm W,外量子效率为25.0%。在激基复合物中引入带有空间位阻基团的氧化膦基受体限制了供体 - 受体三重态耦合,提供了高能级和低能级三重态能量的双重能级。瞬态光谱表征证实了从激基复合物的高能级三重态能级到蓝色发射体、再到氧化膦受体的低能级三重态能级、最终到黄色发射体发生了阶梯状能量中继。我们的结果证明了能量中继在多组分系统中用于激子收集的广泛适用性,为第三代白色有机发光二极管光源的发展提供了机会。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2165/8206214/7aafe7df8207/41467_2021_23941_Fig1_HTML.jpg

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