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通过静电相互作用诱导水平偶极取向实现外量子效率超过35%的溶液处理蓝色窄带有机发光二极管器件

Solution-Processed Blue Narrowband OLED Devices with External Quantum Efficiency Beyond 35 % through Horizontal Dipole Orientation Induced by Electrostatic Interaction.

作者信息

Zhang Kaiyuan, Wang Xingdong, Wang Mengyu, Wang Shumeng, Wang Lixiang

机构信息

State Key Laboratory of Polymer Physics and Chemistry, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, Changchun, 130022, P. R. China.

University of Science and Technology of China, Hefei, 230026, P. R. China.

出版信息

Angew Chem Int Ed Engl. 2025 Mar 24;64(13):e202423812. doi: 10.1002/anie.202423812. Epub 2025 Jan 21.

Abstract

The multiple resonance thermally activated delayed fluorescence (MR-TADF) device has drawn great attention due to their outstanding efficiency and color purity. However, the efficiency of solution-processed MR-TADF devices is still far behind their vacuum-deposited counterparts, due to the uncontrollable horizontal emitting dipole orientation for emitters during solution process, resulting in low light out-coupling efficiency. Here, we proposed a new strategy namely electrostatic interaction between a dendritic host with high positive electrostatic potential (ESP) and dendritic emitter with multiple negative ESP sites, which could induce high horizontal dipole ratio (Θ) up to 83.0 % in solution-processed films. For this couple, the largest plane of dendritic host tends to anchor on the substrate, and thus the strong positive electrostatic site mainly lies at the exposed tetraphenylsilicon, which could electrostatically attract the multiple negative electrostatic sites of the dendritic emitter, realizing horizontal dipole orientation. Moreover, the highly twisted structure of dendritic host and dendron encapsulation of emitter could effectively suppress aggregation, leading a high photoluminescence quantum yield of 98.6 %. As a result, the solution-processed blue MR-TADF devices exhibit a record-break external quantum efficiency of 35.3 %, as well as narrow bandwidth of 17 nm and pure blue color with CIE coordinates of (0.137, 0.176).

摘要

多重共振热激活延迟荧光(MR-TADF)器件因其出色的效率和色纯度而备受关注。然而,溶液处理的MR-TADF器件的效率仍远远落后于真空沉积的同类器件,这是由于在溶液处理过程中发射体的水平发射偶极子取向不可控,导致光出耦合效率较低。在此,我们提出了一种新策略,即具有高正静电势(ESP)的树枝状主体与具有多个负ESP位点的树枝状发射体之间的静电相互作用,这可以在溶液处理的薄膜中诱导高达83.0%的高水 平偶极子比率(Θ)。对于这一对,树枝状主体的最大平面倾向于锚定在基底上,因此强正静电位点主要位于暴露的四苯基硅处,其可以静电吸引树枝状发射体的多个负静电位点,实现水平偶极子取向。此外,树枝状主体的高度扭曲结构和发射体的树枝状封装可以有效抑制聚集,导致98.6%的高光致发光量子产率。结果,溶液处理的蓝色MR-TADF器件表现出创纪录的35.3%的外量子效率,以及17 nm的窄带宽和CIE坐标为(0.137, 0.176)的纯蓝色。

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