Wang Yuanyuan, Yang Dawei, Zhang Heng
State Key Laboratory of Featured Metal Materials and Life-Cycle Safety for Composite Structures, School of Resources, Environments and Materials, Guangxi University, Nanning 530004, China.
ACS Appl Mater Interfaces. 2024 Oct 30;16(43):59606-59613. doi: 10.1021/acsami.4c13899. Epub 2024 Oct 17.
Although high-performance quantum-dot light-emitting diodes (QLEDs) have been achieved, their stability is still limited due to the use of unstable PEDOT:PSS as the hole injection layer (HIL). Here, we developed a PEDOT:PSS-free QLED by using a binary PTAA:F4-TCNQ HIL. Because the PTAA, with a highest occupied molecular orbital (HOMO) level of ∼5.20 eV, can facilitate hole injection from ITO to the hole transport layer, and the F4-TCNQ can act as the electron acceptor dopant to improve the hole density and hole mobility of PTAA, the PTAA:F4-TCNQ HIL can exhibit excellent hole injection capability. As a result, the PEDOT:PSS-free QLED can exhibit a high EQE of 24.19% and an impressive brightness of 367,200 cd/m, which are significantly higher than those of conventional QLEDs. Moreover, due to the improvement of device performance and the removal of PEDOT:PSS, the PEDOT:PSS-free QLED can also exhibit a high operational lifetime of 4206 h at 1000 cd/m and an excellent shelf lifetime of 207.41 h at 136400 cd/m, which are about 1.6- and 3.3-fold those of conventional QLEDs, respectively. We believe that the demonstrated PEDOT:PSS-free QLED, with higher performance and stability, will promote the practical application of QLEDs in displays.
尽管已经实现了高性能量子点发光二极管(QLED),但由于使用不稳定的聚(3,4-乙撑二氧噻吩):聚苯乙烯磺酸盐(PEDOT:PSS)作为空穴注入层(HIL),其稳定性仍然有限。在此,我们通过使用二元聚(对苯二胺):四氟-四氰基喹啉二甲烷(PTAA:F4-TCNQ)HIL开发了一种无PEDOT:PSS的QLED。由于PTAA的最高占据分子轨道(HOMO)能级约为5.20 eV,可促进从氧化铟锡(ITO)到空穴传输层的空穴注入,并且F4-TCNQ可作为电子受体掺杂剂来提高PTAA的空穴密度和空穴迁移率,因此PTAA:F4-TCNQ HIL可表现出优异的空穴注入能力。结果,无PEDOT:PSS的QLED可表现出24.19%的高外量子效率(EQE)和367200 cd/m的令人印象深刻的亮度,这显著高于传统QLED。此外,由于器件性能的提高和PEDOT:PSS的去除,无PEDOT:PSS的QLED在1000 cd/m时还可表现出4206 h的高工作寿命以及在136400 cd/m时207.41 h的优异储存寿命,分别约为传统QLED的1.6倍和3.3倍。我们相信,所展示的具有更高性能和稳定性的无PEDOT:PSS的QLED将推动QLED在显示器中的实际应用。