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新型多环稠合酰胺衍生物:用于天蓝色电致发光器件的性质及应用

Novel Polycyclic Fused Amide Derivatives: Properties and Applications for Sky-blue Electroluminescent Devices.

作者信息

Yang Guo-Xi, Liu Deng-Hui, Jiang Si-Min, Yang Zhi-Hai, Chen Zi-Jian, Qiu Wei-Dong, Gan Yi-Yang, Liu Kun-Kun, Li De-Li, Su Shi-Jian

机构信息

State Key Laboratory of Luminescent Materials and Devices, Institute of Polymer Optoelectronic Materials and Devices, South China University of Technology, Wushan Road 381, Guangzhou 510640, China.

出版信息

Molecules. 2022 Aug 14;27(16):5181. doi: 10.3390/molecules27165181.

Abstract

Aromatic imide derivatives play a critical role in boosting the electroluminescent (EL) performance of organic light-emitting diodes (OLEDs). However, the majority of aromatic imide-based materials are limited to long wavelength emission OLEDs rather than blue emissions due to their strong electron-withdrawing characteristics. Herein, two novel polycyclic fused amide units were reported as electron acceptor to be combined with either a tetramethylcarbazole or acridine donor via a phenyl linker to generate four conventional fluorescence blue emitters of , , and for the first time. and based on a BSQ unit exhibited higher thermal stability and photoluminescence quantum yields than and based on a BBI unit due to their more planar acceptor structure. The intermolecular interactions that exist in the BSQ series materials effectively inhibit the molecular rotation and configuration relaxation, and thus allow for blue-shifted emissions. Blue OLED devices were constructed with the developed materials as emitters, and the effects of both the structure of the polycyclic fused amide acceptor and the electron donor on the EL performance were clarified. Consequently, a sky-blue OLED device based on was created, with a high maximum external quantum efficiency of 4.94% and a maximum luminance of 7761 cd m.

摘要

芳香酰亚胺衍生物在提高有机发光二极管(OLED)的电致发光(EL)性能方面起着关键作用。然而,由于其强吸电子特性,大多数基于芳香酰亚胺的材料仅限于长波长发射OLED,而非蓝色发射。在此,报道了两种新型多环稠合酰胺单元作为电子受体,通过苯基连接基与四甲基咔唑或吖啶供体结合,首次生成了四种传统荧光蓝色发射体,即 、 、 和 。基于BSQ单元的 和 由于其更平面的受体结构,比基于BBI单元的 和 表现出更高的热稳定性和光致发光量子产率。BSQ系列材料中存在的分子间相互作用有效地抑制了分子旋转和构型弛豫,从而实现了蓝移发射。以所开发的材料作为发射体制备了蓝色OLED器件,并阐明了多环稠合酰胺受体和电子供体的结构对EL性能的影响。因此,制备了基于 的天蓝色OLED器件,其具有4.94%的高最大外量子效率和7761 cd m的最大亮度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7c1d/9414544/066955f14485/molecules-27-05181-sch001.jpg

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