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Towards Highly Efficient TADF Yellow-Red OLEDs Fabricated by Solution Deposition Methods: Critical Influence of the Active Layer Morphology

机译:通过溶液沉积方法制备高效TADF黄红色OLED:有源层形态的关键影响

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摘要

Organic light-emitting diodes (OLEDs) based on thermally activated delayed fluorescence emitters (TADF) in simple device structures fabricated by solution processing are strongly dependent on a suitable host molecular conformation and morphology. Herein, we report the fabrication of highly efficient yellow-red TADF-based OLEDs via solution processing in a simple, two-organic-layer device structure. The devices were fabricated at different weight concentrations of 5%, 8%, and 10% emitter in an n-/p-type mixed host matrix, and their characteristics were studied. The device performance was compared with different thickness parameters for both the emitting layer (EML) and the electron transport layer (ETL) in various solvents, including chlorobenzene, dichlorobenzene, and chloroform. By optimizing the mixed ratio of EML, yellow-red OLEDs of 2-[4 (diphenylamino)phenyl]-10,10-dioxide-9 -thioxanthen-9-one (TXO-TPA) emitter in an n-/p-type host matrix of poly( -vinylcarbazole):1,3-Bis[2-(4-tert-butylphenyl)-1,3,4-oxadiazo-5-yl]benzene (PVK:OXD-7) as a blend for the active layer were fabricated. In the best results, the device exhibited a lower turn-on voltage at around 6 V, with an external quantum efficiency (EQE) of 18.44%, current efficiency of 36.71 cd/A, and power efficiency of 14.74 Lm/W for the 8% emitter concentration. The importance of solvent for improving the electrical properties, together with organic layer thickness and host effect for the charge carrier’s transport and device characteristics are also discussed.
机译:在通过溶液加工制造的简单器件结构中,基于热激活延迟荧光发射器(TADF)的有机发光二极管(OLED)强烈依赖于合适的主体分子构象和形态。在本文中,我们报告了通过简单的两有机层器件结构中的溶液处理制造高效的基于黄红色TADF的OLED。在n / p型混合基质中以不同重量浓度的5%,8%和10%发射极制造器件,并研究了它们的特性。将器件性能与发射层(EML)和电子传输层(ETL)在不同溶剂(包括氯苯,二氯苯和氯仿)中的不同厚度参数进行了比较。通过优化EML的混合比,n- / p型2- [4(二苯氨基)苯基] -10,10-二氧化物-9-噻吨酮-9-一(TXO-TPA)发射体的黄红色OLED聚(-乙烯基咔唑):1,3-双[2-(4-叔丁基苯基)-1,3,4-恶二唑-5-基]苯(PVK:OXD-7)的主体基质有源层被制造。最好的结果是,该器件在8 V时的开通电压较低,约为6 V,外部量子效率(EQE)为18.44%,电流效率为36.71 cd / A,功率效率为14.74 Lm / W。发射极浓度%。还讨论了溶剂对改善电性能的重要性,以及有机层的厚度和基质对电荷载流子的传输和器件特性的影响。

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