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用于高效多共振发射器的螺环结构的空间调制

Steric Modulation of Spiro Structure for Highly Efficient Multiple Resonance Emitters.

作者信息

Qu Yang-Kun, Zhou Dong-Ying, Kong Fan-Cheng, Zheng Qi, Tang Xun, Zhu Yuan-Hao, Huang Chen-Chao, Feng Zi-Qi, Fan Jian, Adachi Chihaya, Liao Liang-Sheng, Jiang Zuo-Quan

机构信息

Institute of Functional Nano & Soft Materials, Jiangsu Key Laboratory for Carbon-Based Functional Materials & Devices, Joint International Research Laboratory of Carbon-Based Functional Materials and Devices, Soochow University, 199 Ren'ai Road, Suzhou, 215123, Jiangsu, P. R. China.

College of Energy, Soochow Institute for Energy and Materials InnovationS (SIEMIS), Key Laboratory of Advanced Carbon Materials and Wearable Energy Technologies of Jiangsu Province, Soochow University, Suzhou, 215006, Jiangsu, P. R. China.

出版信息

Angew Chem Int Ed Engl. 2022 May 23;61(22):e202201886. doi: 10.1002/anie.202201886. Epub 2022 Mar 30.

Abstract

A multiple resonance thermally activated delayed fluorescence (MR-TADF) molecule with a fused, planar architecture tends to aggregate at high doping ratios, resulting in broad full width at half maximum (FWHM), redshifting electroluminescence peaks, and low device efficiency. Herein, we propose a mono-substituted design strategy by introducing spiro-9,9'-bifluorene (SBF) units with different substituted sites into the MR-TADF system for the first time. As a classic steric group, SBF can hinder interchromophore interactions, leading to high device efficiency (32.2-35.9 %) and narrow-band emission (≈27 nm). Particularly, the shield-like molecule, SF1BN, seldom exhibits a broadened FWHM as the doping ratio rises, which differs from the C3-substituted isomer and unhindered parent emitter. These results manifest an effective method for constructing highly efficient MR-TADF emitters through a spiro strategy and elucidate the feasibility for steric modulation of the spiro structure in π-framework.

摘要

具有稠合平面结构的多重共振热激活延迟荧光(MR-TADF)分子在高掺杂比例下容易聚集,导致半高宽(FWHM)变宽、电致发光峰红移以及器件效率低下。在此,我们首次提出一种单取代设计策略,即将具有不同取代位点的螺-9,9'-联芴(SBF)单元引入MR-TADF体系。作为一种经典的空间位阻基团,SBF能够阻碍发色团间的相互作用,从而实现高器件效率(32.2-35.9%)和窄带发射(≈27 nm)。特别地,屏蔽型分子SF1BN在掺杂比例升高时很少出现FWHM变宽的情况,这与C3取代异构体和无位阻的母体发光体不同。这些结果表明了一种通过螺环策略构建高效MR-TADF发光体的有效方法,并阐明了在π框架中对螺环结构进行空间位阻调制的可行性。

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