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通过PSVA处理减少界面陷阱和平衡载流子来提高天蓝色OLED的性能

The Improvement of the Performance of Sky-Blue OLEDs by Decreasing Interface Traps and Balancing Carriers with PSVA Treatment.

作者信息

Ning Yijun, Zhao Suling, Song Dandan, Qiao Bo, Xu Zheng, Zhou Yuxiang, Chen Junfei, Swelm Wageh, Al-Ghamdi Ahmed

机构信息

Key Laboratory of Luminescence and Optical Information, Beijing Jiaotong University, Ministry of Education, Bejjing 100044, China.

Department of Physics, Faculty of Science, King Abdulaziz University, Jeddah 21589, Saudi Arabia.

出版信息

Polymers (Basel). 2022 Feb 5;14(3):622. doi: 10.3390/polym14030622.

Abstract

The mitigation of interfacial charge accumulation in solution-processed organic light-emitting diodes (s-OLEDs) is an effective method to improve device performance. In this study, the polar solvent vapor annealing (PSVA) method was used to treat two layers in s-OLED, PEDOT:PSS and mCP:DMAC-DPS emitting layers, separately, to optimize the carrier transmission and balance. After the double-layer PSVA treatment, the current efficiency increased, the lifetime of the device is improved, the efficiency roll-off alleviated from 33.3% to 26.6%, and the maximum brightness increased by 31.3%. It is worth mentioning that the work function of the EML interface reduced by 0.36 eV, and the initial injection voltage of the electrons also reduced. Simulating the solubility of the LUMO and HOMO molecule parts of the mCP and DMAC-DPS, it was found that the LUMO parts had stronger polarity and higher solubility in polar solution than the HOMO parts. By comparing the untreated luminescent layer films, it was found that the PSVA treatment improved the uniformity of the film morphology. We may infer that a more ordered molecular arrangement enhances carrier transport as the LUMO parts tend to be close to the surface and the reduced local state traps on the EML surface promote electron injection. According to the experimental results, the injection of holes and electrons is enhanced from both sides of the EML, respectively, and the charge accumulated at the interface of s-OLEDs is significantly reduced due to the improvement of carrier-transported characteristics.

摘要

减轻溶液处理有机发光二极管(s-OLED)中的界面电荷积累是提高器件性能的有效方法。在本研究中,采用极性溶剂蒸汽退火(PSVA)方法分别处理s-OLED中的两层,即PEDOT:PSS和mCP:DMAC-DPS发光层,以优化载流子传输和平衡。经过双层PSVA处理后,电流效率提高,器件寿命得到改善,效率滚降从33.3%减轻到26.6%,最大亮度提高了31.3%。值得一提的是,EML界面的功函数降低了0.36 eV,电子的初始注入电压也降低了。模拟mCP和DMAC-DPS的LUMO和HOMO分子部分的溶解度,发现LUMO部分在极性溶液中的极性比HOMO部分更强,溶解度更高。通过比较未处理的发光层薄膜,发现PSVA处理改善了薄膜形态的均匀性。我们可以推断,更有序的分子排列增强了载流子传输,因为LUMO部分倾向于靠近表面,并且EML表面上减少的局部态陷阱促进了电子注入。根据实验结果,从EML的两侧分别增强了空穴和电子的注入,并且由于载流子传输特性的改善,s-OLED界面处积累的电荷显著减少。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b4df/8838679/26c5a6985cc5/polymers-14-00622-g001.jpg

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